Background technology
The splitting heat pump air conditioner device is when heating, and the heat exchanger of off-premises station absorbs heat energy from air, by cold coal heat energy is transported to indoor heat exchanger, is discharged in the room again.
In winter, outdoor environment temperature is lower, and the off-premises station heat exchanger absorbs heat energy and can cause the heat exchanger surface temperature very low from air, can reach even far below 0 ℃.Therefore, when the air-conditioning long-play, the off-premises station heat exchanger surface can frosting, in winter of cold even can freeze.Frost or ice can reduce heat exchanger effectiveness greatly attached to heat exchanger surface, make air-conditioning heating effect variation.Therefore the split heat pump air conditioner all has automatic defrosting system.
The control mode of automatic defrosting is a lot, but all is need to judge whether defrosting by heat exchange temperature, outdoor temperature, outdoor heat exchanger variation of temperature situation in the sensing chamber.This mode by temperature detection realizes automatic defrosting system, can detect the condition that major part should defrost, and satisfies most of defrosting needs.But under some mal-conditions, have and detect the situation generation of losing efficacy.Such as the unusual severe cold of outdoor environment, outdoor environment temperature sensor, outdoor heat exchanger temperature sensor, outdoor heat exchanger are by freezing knot, isolated with external environment, sensor temperature no longer changes, and the air-conditioning heat exchange reaches balance, indoor coil pipe also no longer changes, and air-conditioning will can not enter the defrosting program so, and it is very poor that the air-conditioning heating effect can become.
Summary of the invention
Technical problem to be solved by this invention, be exactly at existing air-conditioning under the bad weather of outdoor cold, the shortcoming that may cause automatic defrosting to lose efficacy, a kind of air-conditioner defrosting control method is provided, under the situation that automatic defrosting lost efficacy, the user can hand-operated forcedly defrost, thereby strengthens the heating effect of air-conditioning.
The technical scheme that the present invention solve the technical problem employing is that control method for defrosting of splitting heat pump air conditioner may further comprise the steps:
A. after starting pressure defrosting program, detect the work at present pattern;
If b. the work at present pattern is a defrosting mode, then continue to finish defrosting mode; If the work at present pattern is heating mode then enters following step, otherwise withdraws from the defrosting program of forcing;
C. enter defrosting mode;
D. defrosting mode operation certain hour, or outdoor heat exchanger reaches design temperature, withdraws from defrosting mode.
The invention has the beneficial effects as follows that when the weather very severe, when automatic defrosting was failed, the user can force air-conditioning to defrost, and defrosting can be proceeded, thereby strengthen the heating effect of air-conditioning.
The specific embodiment
The present invention increases and forces defrosting control method in air-conditioning control program, and the user can start the defrosting program in needs, to improve the heating effect of air-conditioning.Technical scheme of the present invention is that control method for defrosting of splitting heat pump air conditioner may further comprise the steps:
A. after starting pressure defrosting program, detect the work at present pattern;
If b. the work at present pattern is a defrosting mode, then continue to finish defrosting mode; If the work at present pattern is a heating mode, then enters following step, otherwise withdraw from the defrosting program of forcing;
C. enter defrosting mode;
D. defrosting mode operation certain hour, or outdoor heat exchanger reaches design temperature, withdraws from defrosting mode;
Further, among the step a, start the defrosting program of forcing by pushing " forcing the defrosting button ";
Further, among the step a, if push " forcing the defrosting button " for the second time in 5 seconds, air-conditioning withdraws from the defrosting program of forcing;
Further, among the step c, enter defrosting mode after, detect apart from defrosted last time whether surpass 10 minutes, if then enter steps d concluding time; If not, the defrosting mode operation was withdrawed from defrosting mode after 5 minutes;
Concrete, in the steps d, described certain hour is 8 minutes;
Concrete, in the steps d, described design temperature is 20 ℃.
Embodiment
The pressure defrosting control flow of this example is referring to Fig. 1.
Step 100, the user starts the defrosting program of forcing by button;
Whether step 101 detects air-conditioning work at present pattern for heating description, if not, withdraws from the defrosting program of forcing; If enter step 102;
Step 102 detects air-conditioning work at present pattern and whether is in defrosting mode, if withdraw from the defrosting program of forcing; If not, enter step 103;
Step 103 is lighted the defrosting indicator lamp, trigger timing in 5 seconds;
Step 104 detects 5 seconds and whether presses pressure defrosting key once more in the delay time, if withdraw from the defrosting program of forcing; If not, enter step 105;
Step 105 enters the defrosting mode of operation;
Step 106, whether detection surpasses 10 minutes apart from defrosted last time concluding time, if enter step 207; If not, enter step 107;
Step 107 defrosts and enters step 108 after 5 minutes;
Step 108 withdraws from defrosting mode, and the defrosting indicator lamp goes out, and returns heating mode;
Step 207 detects defrosting time and whether reaches 8 minutes, if, enter step 108, if not, enter step 208;
Step 208, whether sensing chamber's external heat exchanger temperature rises to 20 ℃, if, enter step 108, if not, return step 207.