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Cabin Heating and Windshield Defrosting for Extended Range Electric, Pure Electric, Plug-in Hybrid Vehicles

机译:驾驶室加热和挡风玻璃除霜,适用于延伸范围电动,纯电动和插入式混合动力汽车

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Conventional HVAC systems adjust the position of a temperature door, to achieve a required air temperature discharged into the passenger compartment. Such systems are based upon the fact that a conventional (non-hybrid) vehicle's engine coolant temperature is controlled to a somewhat constant temperature, using an engine thermostat. Coolant flow rate through the cabin heater core varies as the engine speed changes. EREVs (Extended Range Electric Vehicles) & PHEVs (Plug-In Hybrid Electric Vehicles) have two key vehicle requirements: maximize EV (Electric Vehicle) range and maximize fuel economy when the engine is operating. In EV mode, there is no engine heat rejection and battery pack energy is consumed in order to provide heat to the passenger compartment, for windshield defrost/defog and occupant comfort. Energy consumption for cabin heating must be optimized, if one is to optimize vehicle EV range. A new heating system has been developed for providing cabin heating and windshield defrost for such new vehicle propulsion systems, which includes a HV (High-voltage) PTC (positive temperature coefficient) coolant heater, electric coolant pump, and coolant control valve.
机译:传统的HVAC系统调节温度门的位置,以实现排放到乘客舱中的所需空气温度。这种系统基于使用发动机恒温器将传统(非混合动力)车辆的发动机冷却剂温度控制为稍微恒定的温度。随着发动机速度的变化,通过机舱加热芯的冷却剂流量变化。 Erevs(扩展范围电动车)和PHEV(插入式混合动力电动车)有两个关键车辆要求:最大化EV(电动车辆)范围并在发动机运行时最大化燃油经济性。在EV模式下,没有发动机散热和电池组能量被消耗,以便为乘客舱提供热量,用于挡风玻璃除霜/缺点和乘员舒适性。如果一个是优化车辆EV系列,则必须优化机舱加热的能耗。已经开发了一种新的加热系统,用于为这种新的车辆推进系统提供机舱加热和挡风玻璃除霜,其包括HV(高压)PTC(正温度系数)冷却剂加热器,电气冷却液泵和冷却剂控制阀。

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