[미국특허]
Integrated cooling system and control method thereof
원문보기
IPC분류정보
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
F02M-025/00
F02M-026/29
출원번호
US-0737466
(2015-06-11)
등록번호
US-9752540
(2017-09-05)
우선권정보
KR-10-2014-0158159 (2014-11-13)
발명자
/ 주소
Lee, Jong Won
출원인 / 주소
Hyundai Motor Company
대리인 / 주소
McDermott Will & Emery LLP
인용정보
피인용 횟수 :
0인용 특허 :
17
초록▼
An integrated cooling system includes a temperature adjustment chamber including an intercooler configured to exchange heat between a coolant and compressed air supplied to an engine, an exhaust gas recirculation (EGR) cooler configured to exchange heat between the coolant and an exhaust gas recircu
An integrated cooling system includes a temperature adjustment chamber including an intercooler configured to exchange heat between a coolant and compressed air supplied to an engine, an exhaust gas recirculation (EGR) cooler configured to exchange heat between the coolant and an exhaust gas recirculating to the engine, and an oil cooler configured to exchange heat between the coolant and an engine oil. A coolant line is configured to supply coolant to the temperature adjustment chamber and transmit the coolant discharged from the temperature adjustment chamber to the engine.
대표청구항▼
1. An integrated cooling system for a vehicle comprising: a temperature adjustment chamber including an intercooler configured to exchange heat between a coolant and compressed air supplied to an engine, an exhaust gas recirculation (EGR) cooler configured to exchange heat between the coolant and an
1. An integrated cooling system for a vehicle comprising: a temperature adjustment chamber including an intercooler configured to exchange heat between a coolant and compressed air supplied to an engine, an exhaust gas recirculation (EGR) cooler configured to exchange heat between the coolant and an exhaust gas recirculating to the engine, and an oil cooler configured to exchange heat between the coolant and an engine oil; anda coolant line configured to supply coolant to the temperature adjustment chamber and transmit the coolant discharged from the temperature adjustment chamber to the engine,wherein the intercooler, the EGR cooler, and the oil cooler are disposed in this order from above to below within the temperature adjustment chamber. 2. The integrated cooling system of claim 1, further comprising: a heater core configured to discharge a partial amount of heat from the coolant heated in the engine to a vehicle interior; anda radiator configured to cool a remaining portion of heat of the coolant heated in the engine through heat-exchange with ambient air. 3. The integrated cooling system of claim 2, further comprising: a first control valve configured to selectively supply coolant which has passed through the heater core or coolant which has passed through the radiator, to the temperature adjustment chamber;a second control valve configured to selectively supply the coolant, which has passed through the heater core, to the first control valve or to the engine;a thermostat configured to continuously supply coolant, which has passed through the engine, to the heater core and selectively supply or not supply the coolant to the radiator; andan EGR valve configured to adjust an amount of exhaust gas recirculating to the engine after passing through the EGR cooler. 4. The integrated cooling system of claim 3, further comprising a positive temperature coefficient (PTC) heater configured to selectively heat coolant within the temperature adjustment chamber. 5. The integrated cooling system of claim 4, further comprising a controller configured to control the thermostat, the first control valve, the second control valve, the PTC heater, and the EGR valve according to temperatures of the coolant passing through the coolant line. 6. The integrated cooling system of claim 3, further comprising a back flow preventing valve installed in the coolant line between the engine and the thermostat. 7. The integrated cooling system of claim 5, wherein, when a temperature of the coolant is lower than a reference temperature,the controller controls the thermostat to supply the coolant introduced from the engine to the heater core and not to the radiator,controls the second control valve to allow the coolant, which has passed through the heater core, to be introduced to the first control valve,controls the first control valve to supply a coolant introduced from the second control valve to the temperature adjustment chamber,operates the PTC heater, andcontrols the EGR valve to increase the temperature of the coolant. 8. The integrated cooling system of claim 5, wherein, when a temperature of the coolant is higher than a reference temperature,the controller controls the thermostat to supply the coolant introduced from the engine to the radiator and to the heater core,controls the second control valve to supply the coolant which has passed through the heater core, back to the engine,controls the first control valve to supply the coolant, which has passed through the radiator, to the temperature adjustment chamber,controls the PTC heater to not operate, andcontrols the EGR valve to lower the temperature of the coolant. 9. The integrated cooling system of claim 3, further comprising additional EGR valves. 10. The integrated cooling system of claim 5, further comprising a coolant temperature sensor configured to measure a temperature of the coolant and transmit corresponding information to the controller. 11. The integrated cooling system of claim 10, wherein the coolant temperature sensor may be positioned to measure the temperature of the coolant between the engine and a turbocharger.
Barfknecht, Robert J.; Yu, Biao; Goines, LeRoy; DeGroot, Robert J.; Kottal, Peter C.; Meshenky, Steven P.; Raduenz, Dan R., 2-Pass heat exchanger including thermal expansion joints.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.