EP1680630A1 - Diesel fired compact and accessible potable water heater - Google Patents
Diesel fired compact and accessible potable water heaterInfo
- Publication number
- EP1680630A1 EP1680630A1 EP04761818A EP04761818A EP1680630A1 EP 1680630 A1 EP1680630 A1 EP 1680630A1 EP 04761818 A EP04761818 A EP 04761818A EP 04761818 A EP04761818 A EP 04761818A EP 1680630 A1 EP1680630 A1 EP 1680630A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- water
- heater
- burner
- exhaust
- hot
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Withdrawn
Links
- 235000012206 bottled water Nutrition 0.000 title claims abstract description 49
- 239000003651 drinking water Substances 0.000 title claims abstract description 49
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 claims abstract description 112
- 238000010438 heat treatment Methods 0.000 claims abstract description 44
- 239000000446 fuel Substances 0.000 claims abstract description 10
- 239000002826 coolant Substances 0.000 claims description 26
- 239000007789 gas Substances 0.000 claims description 14
- 238000002485 combustion reaction Methods 0.000 claims description 11
- 230000002093 peripheral effect Effects 0.000 claims description 11
- 238000000034 method Methods 0.000 claims description 7
- 238000007599 discharging Methods 0.000 claims description 6
- 239000007788 liquid Substances 0.000 claims description 3
- ATUOYWHBWRKTHZ-UHFFFAOYSA-N Propane Chemical compound CCC ATUOYWHBWRKTHZ-UHFFFAOYSA-N 0.000 abstract description 10
- 239000001294 propane Substances 0.000 abstract description 5
- 239000002283 diesel fuel Substances 0.000 abstract description 4
- LYCAIKOWRPUZTN-UHFFFAOYSA-N Ethylene glycol Chemical compound OCCO LYCAIKOWRPUZTN-UHFFFAOYSA-N 0.000 description 8
- WGCNASOHLSPBMP-UHFFFAOYSA-N hydroxyacetaldehyde Natural products OCC=O WGCNASOHLSPBMP-UHFFFAOYSA-N 0.000 description 4
- 239000000203 mixture Substances 0.000 description 3
- 238000009434 installation Methods 0.000 description 2
- 238000010411 cooking Methods 0.000 description 1
- 125000004122 cyclic group Chemical group 0.000 description 1
- 238000004880 explosion Methods 0.000 description 1
Classifications
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24H—FLUID HEATERS, e.g. WATER OR AIR HEATERS, HAVING HEAT-GENERATING MEANS, e.g. HEAT PUMPS, IN GENERAL
- F24H1/00—Water heaters, e.g. boilers, continuous-flow heaters or water-storage heaters
- F24H1/06—Portable or mobile, e.g. collapsible
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F01—MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
- F01P—COOLING OF MACHINES OR ENGINES IN GENERAL; COOLING OF INTERNAL-COMBUSTION ENGINES
- F01P3/00—Liquid cooling
- F01P3/20—Cooling circuits not specific to a single part of engine or machine
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60H—ARRANGEMENTS OF HEATING, COOLING, VENTILATING OR OTHER AIR-TREATING DEVICES SPECIALLY ADAPTED FOR PASSENGER OR GOODS SPACES OF VEHICLES
- B60H1/00—Heating, cooling or ventilating [HVAC] devices
- B60H1/00357—Air-conditioning arrangements specially adapted for particular vehicles
- B60H1/00364—Air-conditioning arrangements specially adapted for particular vehicles for caravans or trailers
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24H—FLUID HEATERS, e.g. WATER OR AIR HEATERS, HAVING HEAT-GENERATING MEANS, e.g. HEAT PUMPS, IN GENERAL
- F24H1/00—Water heaters, e.g. boilers, continuous-flow heaters or water-storage heaters
- F24H1/08—Packaged or self-contained boilers, i.e. water heaters with control devices and pump in a single unit
Definitions
- This invention relates to a improved hot water heater and, more particularly, to an improved hot water heater for marine or vehicle use and which utilises diesel fuel for heating potable water and which heater utilises the exhaust of the burner to improve the efficiency of the heating process .
- Hot water heaters for heating potable water for use in cooking, showers, baths and the like, and which potable wat ⁇ z heaters are nased in recreational vehicles , boats, motor homes and other vehicles are, of course, well known .
- the uel typically used in such heaters is electric power or propane.
- propane is maintained in its liquid state by a pressurized storage vessel.
- the gas being heavier than air, will accumulate in the lower portions of the boat in the event there is a leak.
- the fuel is volatile and if it is ignited, an explosion may occur . More mundane considerations include the fact that propane fuel is not readily available.
- Statutes and local regulations may require that such fuels be stored under stringent conditions and commercial outlets are therefore not always at hand.
- a hot water heating system for heating potablo wa er, said heater being diesel powered and comprising a burner, an exhaust stack carrying hot exhaust emanating from said burner, a water jacket surrounding said burner for carrying potable water and being enclosed by an outer periphery, said exhaust stack running from said burner through said water jacket, said exhaust stack carrying said hot exhaust through said water jacket and discharging said hot exhaust from said outer periphery of said water jacket.
- a hot water heating system with a burner and operating components associated with said burner, said burner and said operating components being located within a housing, said operating components being located at and accessible form one end of said heating system upon removal of a portion of said housing.
- a method of increasing the temperature of potable water used for human consumption comprising conveying said hot ⁇ xhausfc from said burner through said t-jater jacket to said peripheral housing and discharging said hot exhaust from said peripheral housing.
- a hot water heater for heating potable water for human consumption, said heater being diesel powered and comprising a burner, an exhaust stack carrying hot exhaust emanating from said burner, a water jacket surrounding said burner for carrying potable water and being enclosed by an outer periphery and end portions on opposite ends of said burner in contact with said potable water, each of said end portions having a concave inside surface contacting said potable water in said water jacket.
- a hot water heating system for heating potable water, said heater being diesel powered and comprising a burner, an exhaust stack carrying hot exhaust emanating from said burner, a water jacket surrounding said burner for carrying potable water and being enclosed by an outer periphery, said exhaust stack running from said burner through said water jacket, said exhaust stack carrying said hot exhaust through said water jackot and discharging said hot ⁇ xhaust from said outer periphery of said water jacket.
- a water level sensor in a potable water and diesel powered heater, said water level sensor producing a signal when said water within said heater is beneath a predetermined level, said signal being operable to terminate operation of said heater.
- a coolant heater for heating coolant and circulating said heated coolant through a boat, vehicle or other living area, said coolant heater comprising a coolant stack carrying gases from a burner, said coolant stack being located within a coolant jacket and said coolant stack terminating in an exhaust stack releasing said hot gases to the atmosphere, said coolant stack being in a configuration that allows said exhaust stack to exit said water heater at at least two exhaust stack exit locations .
- Figures 1A and IB are diagrammatic side and end views, respectively, of a potable water heater according to the invention
- Figure 2 is a schematic of the circuit used with the water level sensor according to a further aspect of the invention.
- Figure 3 is an isometric and partial cutaway view of one end of the heater according to the invention particularly illustrating the accessibility of the various components for serving and the water inlet and outlets ;
- Figure 4 is a diagrammatic schematic of a zone heater which zone heater is used in operable association with the heater according to the invention.
- FIGS. 5A and 5B are diagrammatic end and side cutaway views of a further embodiment of the invention in which a heater according to the invention may be used in ti-r ⁇ different applications .
- the potable water heating system is generally illustrated at 100 in Figure 1A.
- the exhaust is created by a centrally located burner 101 which is conveniently diesel fuel powered and which burner 101 utilises pressurized air for the nozzle 102 where the diesel fuel and the air combine to provide the combustion flame 122.
- the burner 101 is conveniently a burner utilised in a HURRICANE (Trademark) heating system manufactured by International Thermal Research Ltd. of Richmond, British Columbia, Canada.
- the heating system 100 includes an exhaust jacket 103 surrounding the burner 101 which exhaust jacket 103 conveys hot exhaust to an exhaust manifold 104 and thence to a stack 110 which releases the hot gases to the atmosphere, the direction of flow of the hot exhaust being illustrated by the arrows .
- a potable water jacket 110 surrounds the burner 101 and carries potable water.
- Cold potable water enters the water jacket 110 at cold water inlet 112 ( Figure IB) and, after being heated by the hot gases in the exhaust jacket 103, feho saow boated potable water leaves at water outlet 113.
- An electrical or resistance element 114 is inserted into the water jacket 110 from the end as illustrated in Figure IB.
- the electrical element 114 is a resistance type 120 volt heater and is electrically powered to assist in maintaining the temperature of the potable water when the burner 101 is not operating such as when the vehicle or boat has an independent source of power available.
- the heating system 100 is pressurized; that is, the heating system 100 is a closed system. As such, there are forces acting on the end portions 120, 121 of the water jacket 110.
- the end portions 120, 121 are each generally convex on the outside surface and concave on the inside surfaces 126, 127 which inside surfaces 126, 127 are exposed to the potable water under pressure in the water jacket 110.
- a water level sensor generally illustrated at 130 (Figure IB) is inserted into the potable water heater 100.
- Water level sensor 130 is used to sense the presence of water within the heater 100. In the event the sensor 130 does not sense water within the heater 100, a signal 131 is sent to a control board (not illustrated) which signal results in heater shutdown with the control board terminating operation of the burner 101.
- the heater 100 is conveniently installed in a recreational vehicle (not shown) from the end; that is, it is mounted endwise and, if servicing is required, it is conveniently done by opening access to one end of the heater 100 only so that the heater 100 need not be removed in its entirety for servicing.
- a single removable and peripheral wrap around panel member partially shown at 140 which covers the two sides and the top of the heater 100 is conveniently attached with removable attachments 141 (one of which is shown) such as screws , bolts and the like on opposite sides of the heater 100.
- a further and front panel member 142 is conveniently attached to the front of the heater 100 and is similarly easily removed by removing its attachment screws (not shown) .
- the operating components of the heater 100 are readily visible and manually accessible rom the ⁇ nd ⁇ f feho heater 100 and servicing is possible without the removal of the heater 100 from the recreational vehicle or boat.
- the burner assembly 143, the compressor 144, the aquastats 150 mounted in the water jacket and at the end of the combustion chamber, the combustion fan 151, and the fuel pump 152 are all readily accessible to a user of the heater 100 and may be removed and serviced from the end of the heater 100 without removal of the heater 100 from the vehicle in which it is installed.
- the cold water inlet 153 and the hot water outlet 154 are similarly conveniently located at the end of the heater 100 with a mixing valve 160 also conveniently located at the end of the heater 100 for access .
- the heat from the exhaust gases are used to heat the exhaust manifold 104 which manifold is in contact with the potable water within the heater 100. Additional heat is therefore provided to the potable water through the exhaust manifold 104 which, because of its location within the potable water jacket 110, will enhance the heating of the potable water prior to the exhaust gases being released to the atmosphere and improve the efficiency of the burner.
- a further advantage is that the stack temperature will be reduced because heat in the exhaust gases will be transferred to the potable water before the exhaust gases reach stack 100.
- Access to the operating components associated with the combustion in heater 100 is conveniently provided by the removable side and end panels 140, 142 respectively ( Figure 3) .
- the user or operator may unscrew the attachment screws 141 and remove the side and top panel 140 and likewise remove the end panel 142.
- the burner assembly 143 may then be removed for servicing.
- the other operating components need servicing or replacement such as the compressor 144, the combustion fan 151, the fuel pump 152 or the aquastats 150, their location on one end of the heater 100 conveniently provides access without removal of the heater 100 from the vehicle and without the necessity of removing panels other than those located at one end of the heater 100.
- the mixing valve 160 may easily be adjusted for raising or lowering the temperature of the hot water exiting the water heater 100 from hot water outlet 154.
- Zone heater 161 conveniently includes a fan 162 which blows air over a radiator within the zone heater 161.
- a glycol mixture circulates through the zone heater 161 and a heat exchanger 163 by the use of a pump 164.
- An expansion tank 171 is conveniently provided in the circuit of the zone heater 161.
- a second pump 172 is provided to pump the potable water heated within the potable water heater 100 through the heat exchanger 163 thereby to exchange heat with the glycol mixture circulating through the zone heater 161.
- the pumps 164, 172 are initiated by a thermostat located in the zone serviced by the zone heater 161.
- An aquastat within the zone heater 161 initiates the operation of the fan 162 within the zone heater 161 when the temperature of the glycol mixture reaches a predetermined value, conveniently 120 deg.F.
- FIGS 5A and 5B illustrate an improved efficiency heater similar to the potable water heater 100 of Figures 1A and IB.
- a eo ⁇ laa ⁇ her "ihasa pota le water may be used with the same efficiencies , such a coolant being, for example, glycol.
- a further aspect of the Figure 5 embodiment lies in a configuration which may be adapted for heater use in two (2) installations.
- the first installation as shown in Figure 5B, incorporates a final exhaust stack 180 which extends downwardly within the heater 181 and exits the heater 181 from the bottom.
- This exhaust configuration may conveniently be used for recreational vehicles and other vehicles where the exhaust is routed along the bottom of the vehicle.
- a second final exhaust configuration is shown in broken lines at 182.
- a hole is cut in the top of coolant stack 183 and the final exit or exhaust stack 182 is connected and exits the top of the coolant heater 181.
- Electric elements 190, 191 are conveniently provided to heat the coolant when electric power is available.
- Cold coolant enters the coolant heater at 192 and may conveniently exit the heater 181 at 193 although ingress and egress of the coolant may be similar to that in the Figure 1 embodiment.
- Other operating configurations particularly described in association with the Figure 1 embodiment may likewise be useful in the Figure 5 embod ment.
- the exhaust stack is shown to be in a rectangular configuration as viewed in Figure 1A, the shape could of course change as design circumstances change and while the exhaust stack is shown as traveling down only one side of the water jacket 110, the hot exhaust could also travel within the water jacket or stack 110 in several other configurations on various sides of the burner tube 101 and on each side of the burner tube 101 if desired. And while only one pass of the hot exhaust through the water jacket 114 is described and illustrated, more than one pass for the hot exhaust is readily contemplated.
- the potable water heater according to the invention may conveniently be used in a living environment other than in marine or vehicle use. Such a heater requires initial power to initiate the combustion flame but, following that ignition, the heater could operate on minimal power or the energy generated by the heater could be used to produce the necessary power for continued operation.
Landscapes
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Chemical & Material Sciences (AREA)
- Combustion & Propulsion (AREA)
- General Engineering & Computer Science (AREA)
- Physics & Mathematics (AREA)
- Thermal Sciences (AREA)
- Instantaneous Water Boilers, Portable Hot-Water Supply Apparatuses, And Control Of Portable Hot-Water Supply Apparatuses (AREA)
Abstract
A water heater (100) for heating potable water used in a boat or vehicle. Exhaust heated by the burner (102) of the water heater (100) is discharged from the burner (102) as at (122) and is conveyed through an exhaust duct as at (103) which extends through a water jacket as at (110) surrounding the burner (102). The burner (102) and the hot gasses emanating therefrom heat the potable water. Operating components are accessible from one end of the water heater (100) which may burn diesel fuel, in lieu of the typical dangerous propane fuel or electric heater. Both the inlet and outlet of the water jacket may be located at one end. The exhaust gas duct may have two outlets.
Description
TITLE
Diesel Fired Compact and Accessible Potable Water Heater
INTRODUCTION
This invention relates to a improved hot water heater and, more particularly, to an improved hot water heater for marine or vehicle use and which utilises diesel fuel for heating potable water and which heater utilises the exhaust of the burner to improve the efficiency of the heating process .
BACKGROUND OF THE INVENTION
Hot water heaters for heating potable water for use in cooking, showers, baths and the like, and which potable watβz heaters are nased in recreational vehicles ,
boats, motor homes and other vehicles are, of course, well known . The uel typically used in such heaters is electric power or propane. The disadvantages in using propane are well known since propane is maintained in its liquid state by a pressurized storage vessel. In a boat, the gas, being heavier than air, will accumulate in the lower portions of the boat in the event there is a leak. The fuel is volatile and if it is ignited, an explosion may occur . More mundane considerations include the fact that propane fuel is not readily available. Statutes and local regulations may require that such fuels be stored under stringent conditions and commercial outlets are therefore not always at hand.
Yet a further consideration is the efficiency of the potable water heater itself. In a boat or vehicle, the space available for a water heater is at a premium. It is desirable to have the water heater take up a relatively small volume.
SUMMARY OF THE INVENTION
According to one aspect of the invention, there is provided a hot water heating system for heating potablo wa er, said heater being diesel powered and
comprising a burner, an exhaust stack carrying hot exhaust emanating from said burner, a water jacket surrounding said burner for carrying potable water and being enclosed by an outer periphery, said exhaust stack running from said burner through said water jacket, said exhaust stack carrying said hot exhaust through said water jacket and discharging said hot exhaust from said outer periphery of said water jacket.
According to a further aspect of the invention, there is provided a hot water heating system with a burner and operating components associated with said burner, said burner and said operating components being located within a housing, said operating components being located at and accessible form one end of said heating system upon removal of a portion of said housing.
According to yet a further aspect of the invention, there is provided a method of increasing the temperature of potable water used for human consumption, said potable water being carried in a water jacket surrounding a burner having a peripheral housing and which burner discharges hot exhaust from said peripheral housing, said method comprising conveying said hot ©xhausfc from said burner through said t-jater jacket to
said peripheral housing and discharging said hot exhaust from said peripheral housing.
According to still yet a further aspect of the invention, there is provided a hot water heater for heating potable water for human consumption, said heater being diesel powered and comprising a burner, an exhaust stack carrying hot exhaust emanating from said burner, a water jacket surrounding said burner for carrying potable water and being enclosed by an outer periphery and end portions on opposite ends of said burner in contact with said potable water, each of said end portions having a concave inside surface contacting said potable water in said water jacket.
According to still yet a further aspect of the invention, there is provided a hot water heating system for heating potable water, said heater being diesel powered and comprising a burner, an exhaust stack carrying hot exhaust emanating from said burner, a water jacket surrounding said burner for carrying potable water and being enclosed by an outer periphery, said exhaust stack running from said burner through said water jacket, said exhaust stack carrying said hot exhaust through said water jackot and discharging said hot ©xhaust from said
outer periphery of said water jacket.
According to yet a further aspect of the invention, there is provided a water level sensor in a potable water and diesel powered heater, said water level sensor producing a signal when said water within said heater is beneath a predetermined level, said signal being operable to terminate operation of said heater.
According to a further aspect of the invention, there is provided a coolant heater for heating coolant and circulating said heated coolant through a boat, vehicle or other living area, said coolant heater comprising a coolant stack carrying gases from a burner, said coolant stack being located within a coolant jacket and said coolant stack terminating in an exhaust stack releasing said hot gases to the atmosphere, said coolant stack being in a configuration that allows said exhaust stack to exit said water heater at at least two exhaust stack exit locations .
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWINGS
Specific embodiments of the invention w ll now
be described, by way of example only, with the use of drawings in which:
Figures 1A and IB are diagrammatic side and end views, respectively, of a potable water heater according to the invention;
Figure 2 is a schematic of the circuit used with the water level sensor according to a further aspect of the invention;
Figure 3 is an isometric and partial cutaway view of one end of the heater according to the invention particularly illustrating the accessibility of the various components for serving and the water inlet and outlets ;
Figure 4 is a diagrammatic schematic of a zone heater which zone heater is used in operable association with the heater according to the invention; and
Figures 5A and 5B are diagrammatic end and side cutaway views of a further embodiment of the invention in which a heater according to the invention may be used in ti-rø different applications .
DESCRIPTION OF SPECIFIC EMBODIMENT
Referring now to the drawings, the potable water heating system is generally illustrated at 100 in Figure 1A. The exhaust is created by a centrally located burner 101 which is conveniently diesel fuel powered and which burner 101 utilises pressurized air for the nozzle 102 where the diesel fuel and the air combine to provide the combustion flame 122. The burner 101 is conveniently a burner utilised in a HURRICANE (Trademark) heating system manufactured by International Thermal Research Ltd. of Richmond, British Columbia, Canada.
The heating system 100 includes an exhaust jacket 103 surrounding the burner 101 which exhaust jacket 103 conveys hot exhaust to an exhaust manifold 104 and thence to a stack 110 which releases the hot gases to the atmosphere, the direction of flow of the hot exhaust being illustrated by the arrows .
A potable water jacket 110 surrounds the burner 101 and carries potable water. Cold potable water enters the water jacket 110 at cold water inlet 112 (Figure IB) and, after being heated by the hot gases in the exhaust jacket 103, feho saow boated potable water leaves at water
outlet 113.
An electrical or resistance element 114 is inserted into the water jacket 110 from the end as illustrated in Figure IB. The electrical element 114 is a resistance type 120 volt heater and is electrically powered to assist in maintaining the temperature of the potable water when the burner 101 is not operating such as when the vehicle or boat has an independent source of power available.
The heating system 100 is pressurized; that is, the heating system 100 is a closed system. As such, there are forces acting on the end portions 120, 121 of the water jacket 110. The end portions 120, 121 are each generally convex on the outside surface and concave on the inside surfaces 126, 127 which inside surfaces 126, 127 are exposed to the potable water under pressure in the water jacket 110.
A water level sensor generally illustrated at 130 (Figure IB) is inserted into the potable water heater 100. Water level sensor 130 is used to sense the presence of water within the heater 100. In the event the sensor 130 does not sense water within the heater
100, a signal 131 is sent to a control board (not illustrated) which signal results in heater shutdown with the control board terminating operation of the burner 101.
Referring now to Figure 3 , one end of the heater 100 is illustrated. It will be appreciated that the heater 100 is conveniently installed in a recreational vehicle (not shown) from the end; that is, it is mounted endwise and, if servicing is required, it is conveniently done by opening access to one end of the heater 100 only so that the heater 100 need not be removed in its entirety for servicing. To that end, a single removable and peripheral wrap around panel member partially shown at 140 which covers the two sides and the top of the heater 100 is conveniently attached with removable attachments 141 (one of which is shown) such as screws , bolts and the like on opposite sides of the heater 100. A further and front panel member 142 is conveniently attached to the front of the heater 100 and is similarly easily removed by removing its attachment screws (not shown) . When the end panel 142 and/or the side panel 140 are removed, the operating components of the heater 100 are readily visible and manually accessible rom the ©nd ©f feho heater 100 and servicing
is possible without the removal of the heater 100 from the recreational vehicle or boat. The burner assembly 143, the compressor 144, the aquastats 150 mounted in the water jacket and at the end of the combustion chamber, the combustion fan 151, and the fuel pump 152 are all readily accessible to a user of the heater 100 and may be removed and serviced from the end of the heater 100 without removal of the heater 100 from the vehicle in which it is installed. In addition, the cold water inlet 153 and the hot water outlet 154 are similarly conveniently located at the end of the heater 100 with a mixing valve 160 also conveniently located at the end of the heater 100 for access .
OPERATION
In operation, ignition of the fuel and air will take place as is usual, such as with the use of an ignition electrode (not shown) and a combustion flame 122 will appear in the burner tube 101 from the combustion of the pressurized air and fuel combined in the nozzle 102 (Figure 1A) . Hot gases will subsequently emanate from the combustion flame 122 and leave the end of the burner tube 101 as is shown by the arrows, the hot gases teav©ling irst into the ex u t jacket 103 to a first
stack 124 which transfers the exhaust gases to a second passageway 104 located within the water jacket 110 of the burner 100. The exhaust will exit the second passageway 104 through outside stack 110 and subsequently is released to the atmosphere .
Thus, it will be seen that the heat from the exhaust gases are used to heat the exhaust manifold 104 which manifold is in contact with the potable water within the heater 100. Additional heat is therefore provided to the potable water through the exhaust manifold 104 which, because of its location within the potable water jacket 110, will enhance the heating of the potable water prior to the exhaust gases being released to the atmosphere and improve the efficiency of the burner. A further advantage is that the stack temperature will be reduced because heat in the exhaust gases will be transferred to the potable water before the exhaust gases reach stack 100.
Because the water is under pressure within the water jacket 110, the force of the water will act against the end portions 120, 121 of the water heater 100. This force may be intermittent with the result that cyclical stress arises . It has been found that having the end
portions 120, 121 assume a convex outside configuration and a concave inside configuration will reduce the amplitude of the cyclic stress on heater 100. The forces acting on the end portions, therefore, are better absorbed by the housing of the heater 100.
Access to the operating components associated with the combustion in heater 100 is conveniently provided by the removable side and end panels 140, 142 respectively (Figure 3) . The user or operator may unscrew the attachment screws 141 and remove the side and top panel 140 and likewise remove the end panel 142. The burner assembly 143 may then be removed for servicing. If the other operating components need servicing or replacement such as the compressor 144, the combustion fan 151, the fuel pump 152 or the aquastats 150, their location on one end of the heater 100 conveniently provides access without removal of the heater 100 from the vehicle and without the necessity of removing panels other than those located at one end of the heater 100. Similarly, the mixing valve 160 may easily be adjusted for raising or lowering the temperature of the hot water exiting the water heater 100 from hot water outlet 154.
Α fa t e embodiment of the invention is
illustrated in Figure 4 from which a zone heater generally illustrated at 161 is operably connected to the potable water heater (W.H.) 100. Zone heater 161 conveniently includes a fan 162 which blows air over a radiator within the zone heater 161. A glycol mixture circulates through the zone heater 161 and a heat exchanger 163 by the use of a pump 164. An expansion tank 171 is conveniently provided in the circuit of the zone heater 161.
A second pump 172 is provided to pump the potable water heated within the potable water heater 100 through the heat exchanger 163 thereby to exchange heat with the glycol mixture circulating through the zone heater 161. The pumps 164, 172 are initiated by a thermostat located in the zone serviced by the zone heater 161. An aquastat within the zone heater 161 initiates the operation of the fan 162 within the zone heater 161 when the temperature of the glycol mixture reaches a predetermined value, conveniently 120 deg.F.
Reference is now made to Figures 5A and 5B which illustrate an improved efficiency heater similar to the potable water heater 100 of Figures 1A and IB. In this eaabodimsnt, owaver, a eo©laa © her "ihasa pota le
water may be used with the same efficiencies , such a coolant being, for example, glycol. A further aspect of the Figure 5 embodiment lies in a configuration which may be adapted for heater use in two (2) installations. The first installation, as shown in Figure 5B, incorporates a final exhaust stack 180 which extends downwardly within the heater 181 and exits the heater 181 from the bottom. This exhaust configuration may conveniently be used for recreational vehicles and other vehicles where the exhaust is routed along the bottom of the vehicle. A second final exhaust configuration is shown in broken lines at 182. A hole is cut in the top of coolant stack 183 and the final exit or exhaust stack 182 is connected and exits the top of the coolant heater 181. Electric elements 190, 191 are conveniently provided to heat the coolant when electric power is available. Cold coolant enters the coolant heater at 192 and may conveniently exit the heater 181 at 193 although ingress and egress of the coolant may be similar to that in the Figure 1 embodiment. Other operating configurations particularly described in association with the Figure 1 embodiment may likewise be useful in the Figure 5 embod ment.
Many modi ications will readily occur to those skilled in the art to which tehα in ent on selafces . For
example, although the exhaust stack is shown to be in a rectangular configuration as viewed in Figure 1A, the shape could of course change as design circumstances change and while the exhaust stack is shown as traveling down only one side of the water jacket 110, the hot exhaust could also travel within the water jacket or stack 110 in several other configurations on various sides of the burner tube 101 and on each side of the burner tube 101 if desired. And while only one pass of the hot exhaust through the water jacket 114 is described and illustrated, more than one pass for the hot exhaust is readily contemplated.
It is further contemplated that the potable water heater according to the invention may conveniently be used in a living environment other than in marine or vehicle use. Such a heater requires initial power to initiate the combustion flame but, following that ignition, the heater could operate on minimal power or the energy generated by the heater could be used to produce the necessary power for continued operation.
Many further embodiments will readily occur to those skilled in the art to which the invention relates an the p ie^al embodiments described are ven by way
of example only and are not intended as limiting the scope of the invention as defined in accordance with the accompanying claims .
Claims
1. A hot water heating system or heating potable water, said heater being diesel powered and comprising a burner, an exhaust stack carrying hot exhaust emanating from said burner, a water jacket surrounding said burner for carrying potable water and being enclosed by an outer periphery, said exhaust stack running from said burner through said water jacket, said exhaust stack carrying said hot exhaust through said water jacket and discharging said hot exhaust from said outer periphery of said water jacket.
2. A hot water heater as in claim 1 wherein said exhaust stack has a rectangular cross-sectional configuration.
3. A hot water heater as in claim 1 wherein said exhaust stack is circular.
4. A hot water heater as in claim 1 wherein said exhaust makes a single pass through said water jacket before discharge from said outer periphery of said water jacket.
5. A hot water heater as in claim 1 wherein said exhaust makes at least two passes through said water jacket before discharge of said exhaust from said outer periphery of said water jacket.
6. A hot water heater as in claim 1 wherein said exhaust stack contacts said liquid within said water jacket on all sides of said exhaust stack.
7. A hot water jacket as in claim 1 wherein said exhaust stack contacts said liquid within said water jacket on at least one side of said exhaust stack
8. A hot water heating system as in claim 1 wherein said heater is used for boats or vehicles .
9. A hot water heating system as in claim 1 and further comprising operating components associated with said heating system and being located within a housing which housing surrounds said burner, said operating components being located at and accessible from one end of said heating system upon removal of a portion of said housing.
10. Α hot water heating sys oa as i∑a elaia S> wherein said operating components include a burner assembly, a compressor, a combustion fan and a fuel pump.
11. A hot water heating system as in claim 10 and further comprising a hot water outlet and a cold water inlet located on said one end of said heating system.
12. A hot water heating system with a burner and operating components associated with said burner, said burner and said operating components being located within a housing, said operating components being located at and accessible form one end of said heating system upon removal of a portion of said housing.
13. A hot water heating system as in claim 12 wherein said operating components include a burner assembly, a compressor, a combustion fan and a fuel pump.
14. A hot water heating system as in claim 13 and further comprising a hot water outlet and a cold water inlet located at said one end of said heating system.
15. A hot water heating system as in claim 1 and further comprising a zone heater operably connected to said hot water heating system through a heat exchanger.
16. A hot water heating system as in claim 1 wherein said potable water is circulated through said heat exchanger by a first pump and wherein coolant is circulated through said zone heater and said heat exchanger by a second pump.
17. A hot water heating system as in claim 16 and further comprising a thermostat operably connected to said zone heater to initiate operation of said zone heater when said thermostat includes a zone temperature below a predetermined value.
18. A hot water heating system as in claim 17 and further comprising a first aquastat associated with said zone heater to initiate and to terminate operation of a fan associated with said zone heater.
19. Method of increasing the temperature of potable water used for human consumption, said potable wa es being earried in a wat@r jaekat sTa roTfljadiKig a burner having a peripheral housing and which burner discharges hot exhaust from said peripheral housing, said method comprising conveying said hot exhaust from said burner through said water jacket to said peripheral housing and discharging said hot exhaust from said peripheral housing.
20. Method as in claim 19 wherein said hot exhaust is discharged from said peripheral housing after making one pass through said water jacket.
21. Method as in claim 19 wherein said hot exhaust is discharged from said peripheral housing after making more than one pass through said water jacket.
22. Method as in claim 19 wherein said potable water is for marine or vehicle use.
23. A hot water heater for heating potable water for human consumption, said heater being diesel powered and comprising a burner, an exhaust stack carrying hot exhaust emanating from said burner, a water jacket surrounding said burner for carrying potable water and being enclosed by an outer periphery and end portions ©a opposite en s ©£ said burner in eontaat with said potable water, each of said end portions having a concave inside surface contacting said potable water in said water jacket.
24. A hot water heater as in claim 23 wherein said heater is for boats or vehicles .
25. A hot water heater as in claim 23 wherein said heater is for residential use.
26. A hot water heating system for heating potable water, said heater being diesel powered and comprising a burner, an exhaust stack carrying hot exhaust emanating from said burner, a water jacket surrounding said burner for carrying potable water and being enclosed by an outer periphery, said exhaust stack running from said burner through said water jacket, said exhaust stack carrying said hot exhaust through said water jacket and discharging said hot exhaust from said outer periphery of said water jacket.
27. A hot water heating system as in claim 26 and further comprising a zone heater operably connected to said water jacket and located remotely from said burner β£ said heating system ia a I w g Qayirojame t, said potable water in said water jacket circulating through a heat exchanger operably associated with said zone heater thereby simultaneously providing hot water for the personal use of a user and providing hot water which is operably associated with said zone heater.
28. A hot water heating system as in claim 27 wherein said zone heater includes a fan for conveying hot air from said zone heater into said living environment.
29. A water level sensor in a potable water and diesel powered heater, said water level sensor producing a signal when said water within said heater is beneath a predetermined level, said signal being operable to terminate operation of said heater.
30. Coolant heater for heating coolant and circulating said heated coolant through a boat, vehicle or other living area, said coolant heater comprising a coolant stack carrying gases from a burner, said coolant stack being located within a coolant jacket and said coolant stack terminating in an exhaust stack releasing said hot gases to the atmosphere, said coolant stack being in a configuration that allows said exhaust stack to exit said water heater at at least two exhaust stack exit locations
Applications Claiming Priority (3)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CA002440250A CA2440250A1 (en) | 2003-09-09 | 2003-09-09 | High efficiency water heater with coolant muffler |
CA2467519A CA2467519C (en) | 2004-05-18 | 2004-05-18 | Improved potable water heater |
PCT/CA2004/001655 WO2005024312A1 (en) | 2003-09-09 | 2004-09-09 | Diesel fired compact and accessible potable water heater |
Publications (1)
Publication Number | Publication Date |
---|---|
EP1680630A1 true EP1680630A1 (en) | 2006-07-19 |
Family
ID=34275928
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP04761818A Withdrawn EP1680630A1 (en) | 2003-09-09 | 2004-09-09 | Diesel fired compact and accessible potable water heater |
Country Status (2)
Country | Link |
---|---|
EP (1) | EP1680630A1 (en) |
WO (1) | WO2005024312A1 (en) |
Families Citing this family (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103006072B (en) * | 2011-09-21 | 2015-12-16 | 刘建 | A kind of multifunctional drinking machine master control method |
CA3033895C (en) * | 2016-08-12 | 2021-10-19 | Girard Products, Llc | Hydro-furnaces and related methods for vehicles |
CN108613365A (en) * | 2018-04-26 | 2018-10-02 | 芜湖鸣人热能设备有限公司 | A kind of hot-water boiler |
Family Cites Families (9)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CA506386A (en) * | 1954-10-12 | Radi Serafino | Water heater | |
CA305053A (en) * | 1930-10-28 | Henry Gregory Geake William | Water heating system | |
US3758031A (en) * | 1972-05-08 | 1973-09-11 | J Moran | Heater for automotive vehicles |
CA1118026A (en) * | 1978-05-23 | 1982-02-09 | Lawrence P. Whelan | Boiling water dispenser |
US4834284A (en) * | 1988-06-29 | 1989-05-30 | Fluidmaster, Inc. | Hot water control |
US5025985A (en) * | 1989-03-02 | 1991-06-25 | Enander Harold R | Supplemental vehicle heating apparatus with long heating cycle |
US5363836A (en) * | 1993-08-26 | 1994-11-15 | Black Gold Corporation | Furnace with supplementary heat exchange means |
US6152083A (en) * | 1998-04-16 | 2000-11-28 | American Standard Inc. | Compact gas fired water heater with improved combustion chamber |
CA2415905A1 (en) * | 2003-01-09 | 2004-07-09 | International Thermal Investments Ltd. | Narrowboat auxiliary heater and method of controlling same |
-
2004
- 2004-09-09 WO PCT/CA2004/001655 patent/WO2005024312A1/en active Application Filing
- 2004-09-09 EP EP04761818A patent/EP1680630A1/en not_active Withdrawn
Non-Patent Citations (1)
Title |
---|
See references of WO2005024312A1 * |
Also Published As
Publication number | Publication date |
---|---|
WO2005024312A1 (en) | 2005-03-17 |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
US20120180736A1 (en) | Potable water heater | |
US20150165871A1 (en) | Vehicle heating apparatus and system and method of doing the same | |
US8276548B2 (en) | Low cost tankless portable water heater | |
US8933372B2 (en) | Engine pre-heater system | |
GB2209202A (en) | Heater for air and liquid | |
US20080156285A1 (en) | Engine pre-heater | |
US9074779B2 (en) | Distribution module for water heater | |
EP1680630A1 (en) | Diesel fired compact and accessible potable water heater | |
KR19990062617A (en) | Automotive Evaporative Combustion Heaters | |
US4408716A (en) | Flue gas heat recovery system | |
CA2467519C (en) | Improved potable water heater | |
CA2482104C (en) | Distribution module for water heater | |
EP2111506A1 (en) | Engine pre-heater | |
JP4896081B2 (en) | Cogeneration equipment | |
US20150114317A1 (en) | Compact serviceable diesel heater method and apparatus | |
US7011179B2 (en) | Auxiliary heater arrangement with a muffler | |
CA2551341A1 (en) | Engine pre-heater | |
CN2668431Y (en) | Automobile fuel heater | |
CA2583645A1 (en) | Distribution module for water heater | |
KR20020002441A (en) | Liquefied gas evaporator | |
EP4556794A1 (en) | Parking heater with high energy utilization rate | |
GB2243904A (en) | Porous block wick type burner | |
CN2725558Y (en) | Automobile fuel oil heater | |
GB2153989A (en) | Improvements in or relating to heating apparatus | |
CA2875413A1 (en) | Vehicle heating apparatus and system and method of doing the same |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
PUAI | Public reference made under article 153(3) epc to a published international application that has entered the european phase |
Free format text: ORIGINAL CODE: 0009012 |
|
17P | Request for examination filed |
Effective date: 20060403 |
|
AK | Designated contracting states |
Kind code of ref document: A1 Designated state(s): DE FR GB NL |
|
DAX | Request for extension of the european patent (deleted) | ||
RBV | Designated contracting states (corrected) |
Designated state(s): DE FR GB NL |
|
STAA | Information on the status of an ep patent application or granted ep patent |
Free format text: STATUS: THE APPLICATION IS DEEMED TO BE WITHDRAWN |
|
18D | Application deemed to be withdrawn |
Effective date: 20130403 |