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Development of the Enhanced Vehicle and Engine Cooling System Simulation and Application to Active Cooling Control

机译:开发增强的车辆和发动机冷却系统仿真和应用于主动冷却控制

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The increasing complexity of vehicle engine cooling systems results in additional system interactions. Design and evaluation of such systems and related interactions requires a fully coupled detailed engine and cooling system model. The Vehicle Engine Cooling System Simulation (VECSS) developed at Michigan Technological University was enhanced by linking with GT-POWER for the engine/cycle analysis model. Enhanced VECSS (E-VECSS) predicts the effects of cooling system performance on engine performance including accessory power and fuel conversion efficiency. Along with the engine cycle, modeled components include the engine manifolds, turbocharger, radiator, charge-air-cooler, engine oil circuit, oil cooler, cab heater, coolant pump, thermostat, and fan. This tool was then applied to develop and simulate an actively controlled electric cooling system for a 12.7-liter diesel engine.
机译:车辆发动机冷却系统的复杂性越来越复杂导致额外的系统相互作用。这种系统的设计和评估和相关交互需要完全耦合的详细发动机和冷却系统模型。通过与发动机/循环分析模型的GT功率联系,增强了在密歇根技术大学开发的车辆发动机冷却系统仿真(VECS)。增强的VECS(E-VECSS)预测冷却系统性能对发动机性能的影响,包括配件电源和燃料转换效率。随着发动机循环,建模部件包括发动机歧管,涡轮增压器,散热器,电荷 - 冷却器,发动机油电路,油冷却器,驾驶室加热器,冷却剂泵,恒温器和风扇。然后应用该工具来开发和模拟用于12.7升柴油发动机的主动控制的电冷却系统。

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