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Heat Transfer Performance of a Double Tube Type Light Duty Exhaust Heat Recovery Heat Exchanger

机译:双管式轻型废热回收热交换器的传热性能

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In this paper, a light-duty exhaust heat recovery heat exchanger prototype is proposed to enhance the heating capacity of an automobile cabin. Even though the prototype is a small and simple structure of offset fins installed on a double tube, it showed a heat recovery capacity of more than 800 W. Therefore, the prototype is expected to be used in vehicles such as recreational vehicles and light utility vehicles with a cabin roof. The prototype was compared with a mass-produced model in tests of heat transfer and pressure drop performance by using hot air and a coolant. The results showed that the overall heat transfer coefficient for the prototype exceeded that for the mass-produced model for a Reynolds number of less than 1500. The heat transfer coefficients of the hot air on the inner tube walls were calculated by assuming laminar flow of hot air on the offset fin walls and the value for the prototype was much higher than that for the mass-produced model especially at low Reynolds numbers and the slope of its curve was smaller. Hot air pressure drop approximations were obtained by assuming laminar flow on the fin walls and the calculated values showed good agreement with the test results.
机译:本文提出了一种轻型废热回收热交换器原型,以增强汽车舱的加热能力。尽管原型是安装在双管上的胶版翅片的小而简单的结构,但它显示出超过800W的热回收能力。因此,预计原型将用于休闲车辆和灯具汽车等车辆带舱室屋顶。将原型与通过使用热空气和冷却剂的传热和压降性能测试的大规模生产的模型进行比较。结果表明,对于超过了用于小于1500的热空气的热传导系数的内管壁上的雷诺数批量生产的模型计算的原型通过假设的热层流的总传热系数偏移翅片壁上的空气和原型的值远高于批量生产模型,特别是在低雷诺数,其曲线的斜率较小。通过假设翅片壁上的层流程和计算值与测试结果表现出良好的一致性,获得热空气压降近似。

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