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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Automotive exhaust gas flow control for an ammonia-water absorption refrigeration system
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Automotive exhaust gas flow control for an ammonia-water absorption refrigeration system

机译:氨水吸收式制冷系统的汽车排气流量控制

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摘要

A considerable part of the energy generated by an automotive internal combustion engine is wasted as heat in the exhaust system. This wasted heat could be recovered and applied to power auxiliary systems in a vehicle, contributing to its overall energy efficiency. In the present work, the experimental analysis of an absorption refrigeration system was performed. The exhaust system of an automotive internal combustion engine was connected to the generator element of an absorption refrigeration system. The performance of the absorption refrigerator was evaluated as a function of the supplied heat. The use of a control strategy for the engine exhaust gas mass flow rate was implemented to optimize the system. Exhaust gas flow was controlled by step-motor actuated valves commanded by a microcontroller in which a proportional-integral control scheme was implemented. Information such as engine torque, speed, key temperatures in the absorption cycle, as well as internal temperatures of the refrigerator was measured in a transient regime. The results indicated that the refrigeration system exhibited better performance when the amount of input heat is controlled based on the temperature of the absorption cycle generator. It was possible to conclude that, by dynamically controlling the amount of input heat, the utilisation range of the absorption refrigeration system powered by exhaust gas heat could be expanded in order to incorporate high engine speed operating conditions.
机译:汽车内燃机产生的能量的相当一部分被浪费为排气系统中的热量。可以将这些浪费的热量回收并应用于车辆的动力辅助系统,从而提高其整体能源效率。在目前的工作中,对吸收式制冷系统进行了实验分析。汽车内燃机的排气系统连接至吸收式制冷系统的发电机元件。根据吸收的热量评估吸收式制冷机的性能。实施了针对发动机排气质量流量的控制策略,以优化系统。排气流量由微控制器控制的步进电机控制阀控制,在微控制器中实现了比例积分控制方案。在瞬态状态下测量诸如发动机扭矩,速度,吸收循环中的关键温度以及冰箱的内部温度等信息。结果表明,当根据吸收循环发生器的温度控制输入热量时,制冷系统表现出更好的性能。可以得出这样的结论:通过动态控制输入热量,可以扩大由废气热量驱动的吸收式制冷系统的利用范围,以适应较高的发动机转速工况。

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