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Experimental analysis of diffusion absorption refrigerator driven by electrical heater and engine exhaust gas

机译:电加热器和发动机废气驱动的扩散吸收式制冷机的实验分析

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This work presents an experimental study of H20-NH3-H2diffusion absorption refrigeration under two types of energy sources, i.e. the conventional electric energy from grid (electric) and exhaust gas from internal combustion engine. Dynamic method is used to evaluate the behavior of the components of the system for both energy sources. Results obtained show that the performance of each component under different types of energy sources is almost coherent. For the generator, the electrical heater system requires more time to warm up, around three minutes, compared to the 40s for system running with exhaust gas. For the evaporator, the decreasing rate is higher for the exhaust gas source and it took only about two hours to reach steady-state while for the electrical heat, the steady-state is reached after about seven hours of operation. For both energy sources, the evaporation temperature stabilizes to 3°C and the minimum temperature to boil off ammonia is around 140°C.
机译:这项工作提出了一种H20-NH3-H2扩散吸收式制冷在两种能源下的实验研究,即两种能源分别是来自电网的常规电能(电能)和来自内燃机的废气。动态方法用于评估两种能源的系统组件的行为。获得的结果表明,每种组件在不同类型的能源下的性能几乎是一致的。对于发电机,电加热器系统需要更多的时间进行预热,大约需要三分钟,而使用排气的系统则需要40多秒的时间。对于蒸发器而言,排气源的降低率较高,并且仅需约两个小时即可达到稳态,而对于电热而言,在运行约七个小时后即可达到稳态。对于这两种能源,蒸发温度均稳定在3°C,沸腾氨的最低温度约为140°C。

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