WO2011114756A1 - 発熱体冷却装置 - Google Patents
発熱体冷却装置 Download PDFInfo
- Publication number
- WO2011114756A1 WO2011114756A1 PCT/JP2011/050087 JP2011050087W WO2011114756A1 WO 2011114756 A1 WO2011114756 A1 WO 2011114756A1 JP 2011050087 W JP2011050087 W JP 2011050087W WO 2011114756 A1 WO2011114756 A1 WO 2011114756A1
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- WO
- WIPO (PCT)
- Prior art keywords
- cooling device
- heating element
- air
- intake port
- vehicle
- Prior art date
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60K—ARRANGEMENT OR MOUNTING OF PROPULSION UNITS OR OF TRANSMISSIONS IN VEHICLES; ARRANGEMENT OR MOUNTING OF PLURAL DIVERSE PRIME-MOVERS IN VEHICLES; AUXILIARY DRIVES FOR VEHICLES; INSTRUMENTATION OR DASHBOARDS FOR VEHICLES; ARRANGEMENTS IN CONNECTION WITH COOLING, AIR INTAKE, GAS EXHAUST OR FUEL SUPPLY OF PROPULSION UNITS IN VEHICLES
- B60K1/00—Arrangement or mounting of electrical propulsion units
- B60K1/04—Arrangement or mounting of electrical propulsion units of the electric storage means for propulsion
-
- 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
- B60H1/00271—HVAC devices specially adapted for particular vehicle parts or components and being connected to the vehicle HVAC unit
- B60H1/00278—HVAC devices specially adapted for particular vehicle parts or components and being connected to the vehicle HVAC unit for the battery
-
- 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
- B60H1/24—Devices purely for ventilating or where the heating or cooling is irrelevant
- B60H1/248—Air-extractors, air-evacuation from the vehicle interior
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60L—PROPULSION OF ELECTRICALLY-PROPELLED VEHICLES; SUPPLYING ELECTRIC POWER FOR AUXILIARY EQUIPMENT OF ELECTRICALLY-PROPELLED VEHICLES; ELECTRODYNAMIC BRAKE SYSTEMS FOR VEHICLES IN GENERAL; MAGNETIC SUSPENSION OR LEVITATION FOR VEHICLES; MONITORING OPERATING VARIABLES OF ELECTRICALLY-PROPELLED VEHICLES; ELECTRIC SAFETY DEVICES FOR ELECTRICALLY-PROPELLED VEHICLES
- B60L50/00—Electric propulsion with power supplied within the vehicle
- B60L50/50—Electric propulsion with power supplied within the vehicle using propulsion power supplied by batteries or fuel cells
- B60L50/60—Electric propulsion with power supplied within the vehicle using propulsion power supplied by batteries or fuel cells using power supplied by batteries
- B60L50/64—Constructional details of batteries specially adapted for electric vehicles
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60L—PROPULSION OF ELECTRICALLY-PROPELLED VEHICLES; SUPPLYING ELECTRIC POWER FOR AUXILIARY EQUIPMENT OF ELECTRICALLY-PROPELLED VEHICLES; ELECTRODYNAMIC BRAKE SYSTEMS FOR VEHICLES IN GENERAL; MAGNETIC SUSPENSION OR LEVITATION FOR VEHICLES; MONITORING OPERATING VARIABLES OF ELECTRICALLY-PROPELLED VEHICLES; ELECTRIC SAFETY DEVICES FOR ELECTRICALLY-PROPELLED VEHICLES
- B60L50/00—Electric propulsion with power supplied within the vehicle
- B60L50/50—Electric propulsion with power supplied within the vehicle using propulsion power supplied by batteries or fuel cells
- B60L50/60—Electric propulsion with power supplied within the vehicle using propulsion power supplied by batteries or fuel cells using power supplied by batteries
- B60L50/66—Arrangements of batteries
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60L—PROPULSION OF ELECTRICALLY-PROPELLED VEHICLES; SUPPLYING ELECTRIC POWER FOR AUXILIARY EQUIPMENT OF ELECTRICALLY-PROPELLED VEHICLES; ELECTRODYNAMIC BRAKE SYSTEMS FOR VEHICLES IN GENERAL; MAGNETIC SUSPENSION OR LEVITATION FOR VEHICLES; MONITORING OPERATING VARIABLES OF ELECTRICALLY-PROPELLED VEHICLES; ELECTRIC SAFETY DEVICES FOR ELECTRICALLY-PROPELLED VEHICLES
- B60L58/00—Methods or circuit arrangements for monitoring or controlling batteries or fuel cells, specially adapted for electric vehicles
- B60L58/10—Methods or circuit arrangements for monitoring or controlling batteries or fuel cells, specially adapted for electric vehicles for monitoring or controlling batteries
- B60L58/24—Methods or circuit arrangements for monitoring or controlling batteries or fuel cells, specially adapted for electric vehicles for monitoring or controlling batteries for controlling the temperature of batteries
- B60L58/26—Methods or circuit arrangements for monitoring or controlling batteries or fuel cells, specially adapted for electric vehicles for monitoring or controlling batteries for controlling the temperature of batteries by cooling
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01M—PROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
- H01M10/00—Secondary cells; Manufacture thereof
- H01M10/60—Heating or cooling; Temperature control
- H01M10/61—Types of temperature control
- H01M10/613—Cooling or keeping cold
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01M—PROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
- H01M10/00—Secondary cells; Manufacture thereof
- H01M10/60—Heating or cooling; Temperature control
- H01M10/62—Heating or cooling; Temperature control specially adapted for specific applications
- H01M10/625—Vehicles
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01M—PROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
- H01M10/00—Secondary cells; Manufacture thereof
- H01M10/60—Heating or cooling; Temperature control
- H01M10/65—Means for temperature control structurally associated with the cells
- H01M10/656—Means for temperature control structurally associated with the cells characterised by the type of heat-exchange fluid
- H01M10/6561—Gases
- H01M10/6563—Gases with forced flow, e.g. by blowers
-
- 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
- B60H1/00271—HVAC devices specially adapted for particular vehicle parts or components and being connected to the vehicle HVAC unit
- B60H2001/003—Component temperature regulation using an air flow
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60K—ARRANGEMENT OR MOUNTING OF PROPULSION UNITS OR OF TRANSMISSIONS IN VEHICLES; ARRANGEMENT OR MOUNTING OF PLURAL DIVERSE PRIME-MOVERS IN VEHICLES; AUXILIARY DRIVES FOR VEHICLES; INSTRUMENTATION OR DASHBOARDS FOR VEHICLES; ARRANGEMENTS IN CONNECTION WITH COOLING, AIR INTAKE, GAS EXHAUST OR FUEL SUPPLY OF PROPULSION UNITS IN VEHICLES
- B60K1/00—Arrangement or mounting of electrical propulsion units
- B60K2001/003—Arrangement or mounting of electrical propulsion units with means for cooling the electrical propulsion units
- B60K2001/005—Arrangement or mounting of electrical propulsion units with means for cooling the electrical propulsion units the electric storage means
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60K—ARRANGEMENT OR MOUNTING OF PROPULSION UNITS OR OF TRANSMISSIONS IN VEHICLES; ARRANGEMENT OR MOUNTING OF PLURAL DIVERSE PRIME-MOVERS IN VEHICLES; AUXILIARY DRIVES FOR VEHICLES; INSTRUMENTATION OR DASHBOARDS FOR VEHICLES; ARRANGEMENTS IN CONNECTION WITH COOLING, AIR INTAKE, GAS EXHAUST OR FUEL SUPPLY OF PROPULSION UNITS IN VEHICLES
- B60K1/00—Arrangement or mounting of electrical propulsion units
- B60K1/04—Arrangement or mounting of electrical propulsion units of the electric storage means for propulsion
- B60K2001/0405—Arrangement or mounting of electrical propulsion units of the electric storage means for propulsion characterised by their position
- B60K2001/0416—Arrangement in the rear part of the vehicle
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60L—PROPULSION OF ELECTRICALLY-PROPELLED VEHICLES; SUPPLYING ELECTRIC POWER FOR AUXILIARY EQUIPMENT OF ELECTRICALLY-PROPELLED VEHICLES; ELECTRODYNAMIC BRAKE SYSTEMS FOR VEHICLES IN GENERAL; MAGNETIC SUSPENSION OR LEVITATION FOR VEHICLES; MONITORING OPERATING VARIABLES OF ELECTRICALLY-PROPELLED VEHICLES; ELECTRIC SAFETY DEVICES FOR ELECTRICALLY-PROPELLED VEHICLES
- B60L2240/00—Control parameters of input or output; Target parameters
- B60L2240/10—Vehicle control parameters
- B60L2240/34—Cabin temperature
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E60/00—Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
- Y02E60/10—Energy storage using batteries
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02T—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO TRANSPORTATION
- Y02T10/00—Road transport of goods or passengers
- Y02T10/60—Other road transportation technologies with climate change mitigation effect
- Y02T10/70—Energy storage systems for electromobility, e.g. batteries
Definitions
- the present invention relates to a heating element cooling device for cooling a heating element mounted on a vehicle.
- Patent Document 1 there are two air inlets that face the cabin and are arranged above the seat seat surface in order to cool the battery as a heating element mounted on the floor surface of the luggage space at the rear of the body of the automobile.
- a provided heating element cooling device is disclosed.
- An object of the present invention is to provide a heating element cooling device that can take in air in the passenger compartment even when the intake port exposed in the passenger compartment is blocked.
- an auxiliary air inlet opening in the space between the indoor trim and the indoor panel located outside the cabin of the indoor trim is provided.
- the vehicle interior air can be taken in from the auxiliary intake port.
- FIG. 1 is a right side view of a vehicle illustrating a battery cooling device according to a first embodiment.
- FIG. 3 is a right side cross-sectional view around the first intake duct according to the first embodiment.
- FIG. 3 is a rear perspective view of the first intake duct showing the auxiliary intake port according to the first embodiment.
- It is a rear view of the 1st air intake duct which shows the auxiliary air inlet of Example 1.
- It is a right view of the 1st air intake duct which shows the auxiliary air inlet of Example 1.
- FIG. 6 is a right side cross-sectional view of a first intake duct showing an auxiliary intake port according to a second embodiment.
- FIG. 6 is a rear view of a vehicle showing a battery cooling device according to a third embodiment.
- FIG. 6 is a right side view of a vehicle showing a battery cooling device according to a third embodiment.
- FIG. 6 is a front perspective view of a rear seat of a battery cooling device according to a third embodiment.
- FIG. 1 is a rear view of the vehicle showing the battery cooling device of the first embodiment
- FIG. 2 is a right side view of the vehicle showing the battery cooling device of the first embodiment
- a battery cooling device (heating element cooling device) 1 according to the first embodiment is a device that cools a high-power battery (hereinafter simply referred to as a battery) 2 that supplies electric power to a drive motor of a hybrid vehicle or an electric vehicle.
- the battery 2 is a vehicle rear side of the rear seat 3 installed in the passenger compartment 6, and is a battery accommodation space (heating element accommodation space) 5 set between the passenger compartment 6 and the trunk room 4. Installed.
- the battery 2 has a structure in which a battery module (not shown) is accommodated as a heating element in the rectangular casing shown in FIGS. 1 and 2.
- the battery housing space 5 and the vehicle compartment 6 are partitioned by an indoor trim 7 and an indoor panel 8.
- the battery housing space 5 and the trunk room 4 are partitioned by a front trunk trim 9.
- Side trunk trims 11a and 11b are erected between the vehicle body panels 10a and 10b on the left and right sides of the battery housing space 5 and the trunk room 4 in the vehicle width direction.
- the battery cooling device 1 includes an intake port 12, a first intake duct (intake pipe) 13, a blower 14, a second intake duct 15, an exhaust duct 16, and an exhaust port 17.
- the intake port 12 is an intake port for vehicle interior air, and is fixed to the indoor trim 7.
- the first intake duct 13 is for taking in vehicle interior air from the vehicle compartment 6 to the battery 2 and is disposed above the battery 2 and extends in the vehicle width direction.
- One end of the first intake duct 13 is connected to the intake port 12, and the other end is connected to the blower 14.
- the first intake duct 13 is formed in a substantially L shape from a first member 18 connected to the intake port 12 and a second member 19 connected to the blower 14.
- the first member 18 and the second member 19 may be integrally formed.
- the blower 14 is a fan that supplies vehicle interior air taken in via the first intake duct 13 to the battery 2 as cooling air, and is interposed between the first intake duct 13 and the second intake duct 15. .
- the rotation speed of the blower 14 may be variable according to the temperature of the battery module and the like.
- the second intake duct 15 is interposed between the blower 14 and the battery 2.
- the exhaust duct 16 discharges the air warmed through the battery 2 to the vicinity of the exhaust port 17.
- the exhaust port 17 is an opening provided in the trunk room 4 and exhausts air discharged from the exhaust duct 16 to the outside of the vehicle.
- FIG. 3 is a right sectional view of the vicinity of the first intake duct of the first embodiment.
- the indoor panel 8 has a horizontal portion 20 that extends horizontally toward the rear of the vehicle, and a rear end portion 20a of the horizontal portion 20 supports a lower end 21a of the rear glass 21.
- the indoor trim 7 has a horizontal portion 22 that extends horizontally toward the rear of the vehicle and a flange portion 23 that bends downward from the front end of the horizontal portion 22 and has a substantially L-shaped cross section.
- the flange portion 23 is fixed to the indoor panel 8.
- a gap 24 is set between the rear end 22a of the horizontal portion 22 and the rear glass 21 in the vehicle front-rear direction.
- the air inlet 12 is bolted to the upper surface 22b of the horizontal portion 22 of the indoor trim 7.
- the intake port 12 is formed with a plurality of holes 12a for taking in vehicle interior air.
- the first member 18 of the first intake duct 13 includes an upper member 25 and a lower member 26.
- the upper side member 25 is sandwiched between the horizontal portion 20 of the indoor panel 8 and the horizontal portion 22 of the indoor trim 7, and is disposed at a position corresponding to the opening 22d formed in the horizontal portion 22. At the upper end of the upper member 25, an opening 18a is formed. The outer diameter of the upper member 25 is formed larger than the inner diameter of the opening 22d and the opening 20d formed in the horizontal portion 20.
- An annular seal member 27 is interposed between the upper surface of the upper member 25 and the lower surface 22c of the horizontal portion 22.
- An annular seal member 28 is interposed between the lower surface of the upper member 25 and the upper surface 20b of the horizontal portion 20.
- the lower member 26 is disposed below the indoor trim 7, that is, in the battery housing space 5.
- a lower end portion 26 a of the lower member 26 is fitted with an upper end portion 19 a of the second member 19.
- An annular seal member 29 is interposed between the lower end portion 26a and the upper end portion 19a.
- auxiliary intake ports 31, 31 for taking in air from the space 30 between the indoor panel 8 and the indoor trim 7 to the inside of the first intake duct 13 are formed on the rear surface 25 a facing the rear of the vehicle.
- the two auxiliary intake ports 31 and 31 are formed in a long hole shape that is long in the vehicle width direction, and are arranged side by side in the vehicle width direction.
- the first member 18 is attached to the indoor panel 8 prior to the indoor trim 7.
- Patent Document 1 discloses a method of providing a convex member in the vicinity of the intake port and a method of providing a blockage prevention bar straddling the intake port. By using these methods, the intake port is blocked. However, it is difficult to apply to actual vehicles.
- two auxiliary intake ports 31, 31 are provided in the space 30 between the indoor trim 7 and the indoor panel 8. Since the space 30 and the vehicle compartment 6 communicate with each other through the gap 24, even if the air intake 12 exposed in the vehicle compartment 6 is blocked, the auxiliary air intake 31 that is not blocked by luggage or the like, Car interior air can be taken in from 31. Therefore, a decrease in the cooling performance of the battery 2 can be prevented. Further, since the auxiliary intake ports 31 and 31 are located on the back side of the interior trim 7 when viewed from the passenger compartment 6, they are not visible to the passengers and do not impair the aesthetic appearance of the passenger compartment 6.
- the auxiliary intake ports 31, 31 are formed on the back surface 25 a facing the rear of the vehicle in the upper member 25 of the first member 18 constituting the first intake duct 13.
- the auxiliary intake ports 31 are arranged in the direction of the gap 24 that communicates between the passenger compartment 6 and the space 30.
- the air in the passenger compartment 6 enters the space 30 through the gap 24 and moves to the front side of the vehicle as shown by the arrow in FIG. Then, it flows into the trunk room 4 and is discharged from the exhaust port 17 to the outside of the vehicle.
- the auxiliary intake ports 31, 31 toward the rear of the vehicle, the low-temperature air that flows into the space 30 and then advances toward the front of the vehicle can be taken into the first intake duct 13 as it is. Since the air staying in the space 30 has a higher temperature than the air staying in the passenger compartment 6, it is preferable to avoid taking in the hot air that stays as much as possible. In other words, by arranging the auxiliary intake ports 31, 31 toward the inflow side of the passenger compartment air, the intake amount of the air staying in the space 30 can be minimized and the cooling performance can be improved. it can.
- two auxiliary intake ports 31 and 31 are provided on the back surface 25a of the upper member 25.
- the number of auxiliary intake ports is one, if the opening area is increased, the strength rigidity in the vertical direction of the upper member 25 decreases. For this reason, the upper surface of the upper member 25 and the lower surface 22c of the horizontal portion 22 are not sufficiently adhered to each other via the seal member 27, and the sealing performance may be deteriorated.
- the sealing performance is deteriorated, the high-temperature air staying in the space 30 flows into the first intake duct 13 from the opening 18a, so that the temperature of the cooling air rises. Furthermore, there is a concern about deformation due to a decrease in strength and rigidity.
- the strength rigidity is increased only in the portion that partitions both the auxiliary intake ports 31 and 31 as compared with the case where one auxiliary intake port is provided. Can do. That is, the rigidity and rigidity required for the upper member 25 can be secured while increasing the opening area.
- the battery cooling device 1 has the following effects. (1) Since the first intake duct 13 is provided with the auxiliary intake port 31 that opens into the space 30 between the interior trim 7 and the interior panel 8 positioned outside the interior of the interior trim 7, it is exposed to the interior compartment 6. Even if the intake port 12 is closed, the vehicle interior air can be taken in from the auxiliary intake port 31 without impairing the aesthetic appearance of the vehicle interior 6. Further, since it is not necessary to process and change the design of the indoor trim 7 and the indoor panel 8, it is possible to suppress an increase in cost.
- the auxiliary air intake 31 opens in the direction of the gap 24 that communicates with the passenger compartment 6, so that the passenger compartment air flowing into the space 30 from the gap 24 can be taken in earlier, and the temperature of the cooling air The rise can be suppressed.
- the interior trim 7 is located at the upper rear of the rear seat 3 and the auxiliary intake 31 opens toward the rear of the vehicle. Low-temperature air flowing into the space 30 and traveling through the space 30 toward the front side of the vehicle can be taken in as it is, and the cooling performance can be improved.
- FIG. 7 is a right sectional view of the first intake duct showing the auxiliary intake port of the second embodiment.
- the second embodiment is different from the first embodiment in that the valve member 32 is attached to each of the two auxiliary intake ports 31, 31.
- the valve member 32 is, for example, a rubber sheet, and is attached so as to close the two auxiliary intake ports 31, 31 from the inside of the upper member 25.
- the upper end portion 32a of the valve member 32 is fixed to the upper member 25, and the valve member 32 can swing up and down around this fixed portion.
- the valve member 32 remains in the position indicated by the solid line in FIG. 7, that is, the position closing the auxiliary intake port 31 until the inside of the first intake duct 13 reaches a predetermined negative pressure.
- the predetermined negative pressure is the internal pressure of the first intake duct 13 when all or part of the intake port 12 is blocked and the amount of cooling air necessary for cooling the battery 2 cannot be obtained.
- the rotational speed of the blower 14 may be increased to secure the amount of cooling air supplied to the battery 2.
- the pressure inside the first intake duct 13 can be easily predicted by the motor current of the blower 14 and the like. Further, when the inside of the first intake duct 13 reaches a predetermined negative pressure, a warning may be given to the occupant by a warning lamp or the like. Since other configurations are the same as those of the first embodiment, illustration and description thereof are omitted.
- the internal pressure of the first intake duct 13 reaches a predetermined negative pressure, so that the lower portion 32b of the valve member 32 is separated from the peripheral edge of the auxiliary intake port 31 by the negative pressure.
- the auxiliary intake port 31 is opened, and the vehicle interior air can be taken from the auxiliary intake port 31.
- the valve member 32 is a rubber sheet that opens and closes in conjunction with a change in the internal pressure of the first intake duct 13.
- the internal pressure of the first intake duct 13 varies depending on whether or not the intake port 12 is blocked.
- the operation of closing the auxiliary intake port 31 when the intake port 12 is not blocked and opening the auxiliary intake port 31 when the intake port is blocked is performed without using a power source and a sensor. Can be achieved. Therefore, the additional cost of the valve member 32 can be suppressed.
- the battery cooling device 1 of the second embodiment has the following effects. (5) Since the auxiliary intake port 31 is closed until the inside of the first intake duct 13 reaches a predetermined negative pressure, and the valve member 32 is provided to open the auxiliary intake port 31 when the predetermined negative pressure is reached, the intake port 12 is blocked. The cooling performance when not peeled off can be improved.
- FIG. 8 is a rear view of the vehicle showing the battery cooling device of the third embodiment
- FIG. 9 is a right side view of the vehicle showing the battery cooling device of the third embodiment
- FIG. 10 is a rear seat showing the battery cooling device of the third embodiment. It is a vehicle front side perspective view.
- the position of the intake port 12 which is an intake port for the passenger compartment air is different from that in the first embodiment.
- the air inlet 12 is attached to an indoor trim 33 located at the right end of the seat back 3a of the rear seat 3.
- the first member 18 of the first intake duct 13 is interposed between the indoor trim 33 and the inclined portion 34 of the indoor panel 8 disposed outside the vehicle. Further, the shape of the second member 19 that connects the first member 18 and the blower 14 is changed according to the position of the first member 18.
- the auxiliary inlets 31, 31 of the first member 18 are arranged facing the right side in the vehicle width direction. Since other configurations are the same as those of the first embodiment, illustration and description thereof are omitted.
- the present invention is not limited to the above-described embodiments, and design changes and the like within the scope not departing from the gist of the present invention are included in the present invention.
- the auxiliary intake port can be provided at an arbitrary position as long as it is between the indoor panel and the indoor trim and can take in vehicle interior air.
- the auxiliary intake port is formed in the middle of the first intake duct.
- an intake duct that connects the first intake duct or the blower and the auxiliary intake port may be provided separately.
- the seal member is interposed between the indoor trim and the first intake duct.
- the seal member may be interposed between the intake port and the first intake duct.
- a flange portion is provided at the lower end of the intake port, and a seal member is interposed between the lower surface of the flange portion and the upper surface of the first intake duct.
- the heating element is a high-power battery that supplies electric power to the driving motor of the electric vehicle has been described.
- the heating element may be applied to an inverter circuit of the driving motor and other electric devices.
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- Transportation (AREA)
- Chemical Kinetics & Catalysis (AREA)
- General Chemical & Material Sciences (AREA)
- Manufacturing & Machinery (AREA)
- Electrochemistry (AREA)
- Sustainable Energy (AREA)
- Sustainable Development (AREA)
- Power Engineering (AREA)
- Life Sciences & Earth Sciences (AREA)
- Thermal Sciences (AREA)
- Physics & Mathematics (AREA)
- Combustion & Propulsion (AREA)
- Cooling, Air Intake And Gas Exhaust, And Fuel Tank Arrangements In Propulsion Units (AREA)
- Arrangement Or Mounting Of Propulsion Units For Vehicles (AREA)
- Secondary Cells (AREA)
- Electric Propulsion And Braking For Vehicles (AREA)
- Air-Conditioning For Vehicles (AREA)
Abstract
Description
本発明の目的は、車室に露出した吸気口が塞がれた場合であっても、車室内空気を取り入れることができる発熱体冷却装置を提供することにある。
2 バッテリ(発熱体)
3 後部座席
5 バッテリ収容空間(発熱体収容空間)
6 車室
7 室内トリム
8 室内パネル
13 第1吸気ダクト
24 隙間
25 上側部材
30 空間
31 補助吸気口
32 弁部材
まず、実施例1のバッテリ冷却装置の構成を説明する。
図1は実施例1のバッテリ冷却装置を示す車両の背面図、図2は実施例1のバッテリ冷却装置を示す車両の右側面図である。
実施例1のバッテリ冷却装置(発熱体冷却装置)1は、ハイブリッド車両または電動車両の駆動用モータに電力を供給する強電バッテリ(以下、単にバッテリと記す。)2を冷却する装置である。実施例1において、バッテリ2は、車室6に設置された後部座席3の車両後方側であって、車室6とトランクルーム4との間に設定されたバッテリ収容空間(発熱体収容空間)5に設置される。バッテリ2は、図1および図2に示す矩形の筐体に発熱体として図外のバッテリモジュールが収容された構造である。
第1吸気ダクト13は、車室6からバッテリ2へと車室内空気を取り入れるためのもので、バッテリ2の上方に配置され、車幅方向に延在している。第1吸気ダクト13の一端は吸気口12に接続され、他端はブロワ14に接続されている。第1吸気ダクト13は、吸気口12と接続された第1部材18と、ブロワ14と接続された第2部材19とから略L字形状に形成されている。ここで、第1部材18と第2部材19は一体に形成してもよい。
排気ダクト16は、バッテリ2を通過して暖められた空気を排気口17付近に排出する。
排気口17は、トランクルーム4に設けられた開口であり、排気ダクト16から排出された空気を車外へ排出する。
室内パネル8は、車両後方へ向かって水平に延びる水平部20を有し、水平部20の後端部20aはリアガラス21の下端21aを支持している。
室内トリム7は、車両後方へ向かって水平に延びる水平部22と、水平部22の前端から下方へ折れ曲がるフランジ部23とを有して断面略L字形状に形成されている。フランジ部23は室内パネル8に固定されている。水平部22の後端22aとリアガラス21との間には、車両前後方向に隙間24が設定されている。
図4~図6にも示すように、第1吸気ダクト13の第1部材18は、上側部材25と下側部材26とを有する。
第1部材18は、室内トリム7よりも先に室内パネル8に取り付けられる。
[補助吸気口による車室内空気取り入れ作用]
上記特許文献1に記載の発明では、室内トリムに2つの吸気口を設けることで、一方の吸気口が荷物、紙やポリ袋等により塞がれた場合であっても、他方の吸気口から吸気ダクトへの車室内空気の取り入れを可能としている。ところが、2つの吸気口は共に室内に露出しているため、両吸気口が同時に塞がれた場合、車室内空気を取り入れることができない。
なお、上記特許文献1には、吸気口の近傍に凸部材を設ける方法や、吸気口を跨ぐ閉塞防止バーを設ける方法が開示されており、これらの方法を用いることで、吸気口が塞がれるのを防止できるものの、美観の低下を招くため、実車への適用には難がある。
実施例1のバッテリ冷却装置1にあっては、以下に列挙する効果を奏する。
(1) 第1吸気ダクト13に、室内トリム7とこの室内トリム7の車室外側に位置する室内パネル8との間の空間30に開口する補助吸気口31を設けたため、車室6に露出した吸気口12が塞がれた場合であっても、車室6の美観を損なうことなく、補助吸気口31から車室内空気を取り入れることができる。また、室内トリム7や室内パネル8の加工や設計変更が不要であるため、コストアップを抑制できる。
次に、実施例2を説明するが、実施例1と実質的に同じ部品、部分については実施例1と同じ番号を付し、その説明を省略する。
図7は、実施例2の補助吸気口を示す第1吸気ダクトの右側断面図である。
なお、第1吸気ダクト13の内部が所定の負圧に達した場合、ブロワ14の回転数を上昇させ、バッテリ2に供給する冷却風の風量を確保してもよい。第1吸気ダクト13の内部の圧力は、ブロワ14のモータ電流等により容易に予測可能である。また、第1吸気ダクト13の内部が所定の負圧に達した場合、ワーニングランプ等により乗員に警告を行ってもよい。
他の構成は実施例1と同一であるため、図示ならびに説明は省略する。
[弁部材による冷却風の温度上昇抑制作用]
実施例2のバッテリ冷却装置1では、吸気口12が塞がれていない場合、第1吸気ダクト13の内部圧力は所定の負圧未満であるため、補助吸気口31は弁部材32によって塞がれている。このため、車室内空気は吸気口12のみから取り入れられる。上述したように、空間30の温度は車室6よりも高いため、補助吸気口31を用いる必要がない場合には補助吸気口31を塞ぎ、車室6から直接空気を取り入れるようにすることで、より低温の冷却風をバッテリ2に供給できるため、冷却性能を高めることができる。
一方、吸気口12が塞がれた場合、第1吸気ダクト13の内部圧力は所定の負圧に達するため、負圧によって弁部材32の下部32bが補助吸気口31の周縁から離間することで、補助吸気口31が開き、補助吸気口31から車室内空気を取り入れることができる。
実施例2のバッテリ冷却装置1にあっては、実施例1の効果(1)~(4)に加え、以下の効果を奏する。
(5) 第1吸気ダクト13内が所定の負圧に達するまで補助吸気口31を閉じ、所定の負圧に達したとき補助吸気口31を開く弁部材32を設けたため、吸気口12が塞がれていない場合の冷却性能を高めることができる。
次に、実施例3を説明するが、実施例1と実質的に同じ部品、部分については実施例1と同じ番号を付し、その説明を省略する。
図8は実施例3のバッテリ冷却装置を示す車両の背面図、図9は実施例3のバッテリ冷却装置を示す車両の右側面図、図10は実施例3のバッテリ冷却装置を示す後部座席の車両前方側斜視図である。
実施例3では、車室内空気の取り入れ口である吸気口12の位置が実施例1と異なる。吸気口12は、後部座席3のシートバック3aの右端に位置する室内トリム33に取り付けられている。これに伴い、第1吸気ダクト13の第1部材18は、室内トリム33とその車外側に配置された室内パネル8の傾斜部34との間に介装されている。また、第1部材18の位置に応じて、第1部材18とブロワ14とを接続する第2部材19の形状が変更されている。
他の構成は実施例1と同一であるため、図示ならびに説明は省略する。
実施例3のバッテリ冷却装置1にあっては、実施例1の効果(1),(2),(4)と同様の作用効果が得られる。
以上、実施例を説明してきたが、本発明は上述の実施例に限られるものではなく、本発明の要旨を逸脱しない範囲の設計変更等があっても、本発明に含まれる。
例えば、実施例では、補助吸気口を2つ設けた例を示したが、3つ以上でもよい。
また、補助吸気口は、室内パネルと室内トリムとの間であって、車室内空気を取り入れ可能な位置であれば、任意の位置に設けることができる。
また、実施例では、室内トリムと第1吸気ダクトとの間にシール部材を介装した例を示したが、吸気口と第1吸気ダクトとの間にシール部材を介装してもよい。この場合、例えば、吸気口の下端にフランジ部を設け、フランジ部の下面と第1吸気ダクトの上面との間にシール部材を介装する。
実施例では、発熱体を電動車両の駆動用モータに電力を供給する強電バッテリとした例を示したが、駆動用モータのインバータ回路やその他の電気機器に適用してもよい。
Claims (5)
- 室内トリムに設けた吸気口から吸気管を介して車室内空気を取り入れ、発熱体収容空間に配置した発熱体を冷却する発熱体冷却装置において、
前記室内トリムとこの室内トリムの車室外側に位置する室内パネルとの間の空間に開口する補助吸気口を設けたことを特徴とする発熱体冷却装置。 - 請求項1に記載の発熱体冷却装置において、
前記補助吸気口は、車室と連通する部分の方向を向いて開口することを特徴とする発熱体冷却装置。 - 請求項2に記載の発熱体冷却装置において、
前記室内トリムは、後部座席の上部後方に位置し、
前記補助吸気口は、車両後方側を向いて開口することを特徴とする発熱体冷却装置。 - 請求項1ないし請求項3のいずれか1項に記載の発熱体冷却装置において、
前記補助吸気口を複数設定したことを特徴とする発熱体冷却装置。 - 請求項1ないし請求項4のいずれか1項に記載の発熱体冷却装置において、
前記吸気管内が所定の負圧に達するまで前記補助吸気口を閉じ、前記所定の負圧に達したとき前記補助吸気口を開く弁部材を設けたことを特徴とする発熱体冷却装置。
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EP11755946.8A EP2548754B1 (en) | 2010-03-18 | 2011-01-06 | Cooling device for a heat-emitting body |
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EP2548754A4 (en) | 2013-10-23 |
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CN102892609B (zh) | 2016-04-20 |
US9616765B2 (en) | 2017-04-11 |
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