Heating system of hybrid vehicle
US-2015360539-A1 · Dec 17, 2015 · US
US2016101666A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2016101666-A1 |
| Application number | US-201414894549-A |
| Country | US |
| Kind code | A1 |
| Filing date | May 22, 2014 |
| Priority date | Jun 4, 2013 |
| Publication date | Apr 14, 2016 |
| Grant date | — |
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A vehicular heat management system includes: a refrigerant circuit; a first heat medium circuit in which a heat medium circulates and exchanges heat with a low-pressure side refrigerant of the refrigerant circuit; a second heat medium circuit in which a heat medium circulates and exchanges heat with a high-pressure side refrigerant of the refrigerant circuit; and a switching device configured to switch a mode between a communicating mode in which the first heat medium circuit and the second heat medium circuit are coupled and a non-communicating mode in which the first heat medium circuit and the second heat medium circuit are not coupled on the basis of a temperature of the heat medium in the first heat medium circuit.
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What is claimed is: 1 . A vehicular heat management system comprising: a low-pressure side heat exchanger configured to cool a heat medium by heat exchange between a low-pressure side refrigerant of a refrigeration cycle and the heat medium; a first heat medium circuit in which the heat medium cooled by the low-pressure side heat exchanger circulates; a high-pressure side heat exchanger configured to heat a heat medium by heat exchange between the high-pressure side refrigerant of the refrigeration cycle and the heat medium; a second heat medium circuit in which the heat medium heated by the high-pressure side heat exchanger circulates; and a switching device configured to switch a mode between a communicating mode in which the first heat medium circuit and the second heat medium circuit are coupled and a non-communicating mode in which the first heat medium circuit and the second heat medium circuit are not coupled, wherein the switching device selects the communicating mode when a temperature of the heat medium that flows in the first heat medium circuit is lower than a first predetermined temperature, and the switching device selects the non-communicating mode when the temperature of the heat medium that flows in the first heat medium circuit is higher than or equal to a second predetermined temperature. 2 . The vehicular heat management system according to claim 1 , wherein the switching device includes: a first switching valve that switches a flow of the heat medium so as to allow the heat medium to flow from the second heat medium circuit to the first heat medium circuit in the communicating mode and prevent the heat medium from flowing from the second heat medium circuit into the first heat medium circuit in the non-communicating mode; and a second switching valve that switches a flow of the heat medium so as to allow the heat medium to flow from the first heat medium circuit to the second heat medium circuit in the communicating mode and prevent the heat medium from flowing from the first heat medium circuit into the second heat medium circuit in the non-communicating mode. 3 . The vehicular heat management system according to claim 1 , wherein the switching device couples the first heat medium circuit and the second heat medium circuit to allow the heat medium to flow from the second heat medium circuit to the low-pressure side heat exchanger in the communicating mode. 4 . The vehicular heat management system according to claim 1 , comprising a heat-absorption heat exchanger disposed in the first heat medium circuit, the heat-absorption heat exchanger performing heat exchange between the heat medium cooled by the low-pressure side heat exchanger and an outside air such that the heat medium absorbs heat, wherein the switching device couples the first heat medium circuit and the second heat medium circuit to allow the heat medium to flow from the second heat medium circuit to the heat-absorption heat exchanger in the communicating mode. 5 . The vehicular heat management system according to claim 1 , wherein the switching device couples the first heat medium circuit and the second heat medium circuit to allow the heat medium to flow from the high-pressure side heat exchanger to the first heat medium circuit in the communicating mode. 6 . The vehicular heat management system according to claim 1 , comprising an air-heating heat exchanger disposed in the second heat medium circuit, the air-heating exchanger performing heat exchange between the heat medium heated by the high-pressure side heat exchanger and air blown to a vehicle interior, thereby heating the blown air, wherein the switching device couples the first heat medium circuit and the second heat medium circuit to allow the heat medium to flow from the air-heating heat exchanger to the first heat medium circuit in the communicating mode. 7 . The vehicular heat management system according to claim 1 , further comprising an inter-circuit flow rate control device configured to reduce a flow rate of the heat medium, flowing from the second heat medium circuit to the first heat medium circuit, with increase in temperature difference obtained by subtracting the temperature of the heat medium that flows in the first heat medium circuit from the temperature of the heat medium that flows in the second heat medium circuit. 8 . The vehicular heat management system according to claim 1 , wherein the heat medium is an ethylene glycol-based antifreezing fluid. 9 . A vehicular heat management system comprising: a compressor configured to draw and discharge a refrigerant; a high-pressure side heat exchanger configured to heat a first heat medium by heat exchange between the refrigerant discharged from the compressor and the first heat medium; a decompression device configured to decompress the refrigerant heat-exchanged in the high-pressure side heat exchanger; a low-pressure side heat exchanger configured to cool a second heat medium by heat exchange between the refrigerant decompressed in the decompression device and the second heat medium; a heat-absorption heat exchanger that causes the second heat medium to absorb heat by heat exchange between the second heat medium cooled by the low-pressure side heat exchanger and air; an introducing portion configured to introduce a heat amount of the first heat medium heated by the high-pressure side heat exchanger into the heat-absorption heat exchanger; and a heat-medium temperature adjusting device configured to determine whether frost is adhered to the heat-absorption heat exchanger and increase the temperature of the first heat medium heated by the high-pressure side heat exchanger when it is determined that frost is adhered to the heat-absorption heat exchanger. 10 . The vehicular heat management system according to claim 9 , comprising an air-heating heat exchanger configured to heat air by using at least a part of a heat amount of the refrigerant discharged from the compressor. 11 . The vehicular heat management system according to claim 10 , comprising an air flow rate adjusting device configured to adjust a flow rate of air that passes through the air-heating heat exchanger, wherein the heat-medium temperature adjusting device increases the temperature of the first heat medium heated by the high-pressure side heat exchanger by controlling the air flow rate adjusting device so as to reduce the flow rate of air that passes through the air-heating heat exchanger. 12 . The vehicular heat management system according to claim 11 , wherein the air flow rate adjusting device is an air ratio adjusting apparatus configured to adjust a ratio between the flow rate of air that flows in the air-heating heat exchanger and a flow rate of air that flows to bypass the air-heating heat exchanger. 13 . The vehicular heat management system according to claim 10 , comprising a heat medium ratio adjusting apparatus configured to adjust a ratio between a flow rate of the first heat medium that flows in the air-heating heat exchanger and a flow rate of the first heat medium that flows to bypass the air heating heat exchanger, wherein the heat-medium temperature adjusting device increases the temperature of the first heat medium heated by the high-pressure side heat exchanger by controlling the heat medium ratio adjusting apparatus to decrease a ratio of the flow rate of the first heat medium that flows in the air heating heat exchanger and increase a ratio of the flow rate of the first heat medium that flows to bypass the air heating heat exchanger. 14 . The vehicular heat management system according to claim 9 , wher
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