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Exergetic analysis of a dual-fuel engine, PEM electrolyzer and thermoelectric generator integrated system

机译:双燃料发动机,PEM电解柜和热电发电机集成系统的淬火分析

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In this research, the implementation of an integrated system composed of a dual-fuel engine (Diesel-Hydrogen), a PEM electrolyzer and a thermoelectric generator is envisioned. In order to know the optimal operating conditions of each sub-system, the exergetic efficiency and destroyed exergy were studied. It was estimated that for the dual combustion engine, the destroyed exergy would increase as a function of the concentration of methane in its mixture. By varying the electrical input to the electrolyzer, it was found that when the input current was 2A, the exergetic efficiency would go up to 92.59%, while for a current of 5A, the efficiency decreased in 51.80%. Finally, the exergetic efficiency of TEG decreased by increasing the hot flow temperature; 86.68% of the decrease in efficiency occurred for temperatures between 470K and 510K. On the other hand, the destroyed exergy increased linearly with an increase in the inlet temperature of exhaust gases.
机译:在本研究中,设想了由双燃料发动机(柴油机),PEM电解槽和热电发电机组成的集成系统的实现。为了了解每个子系统的最佳运行条件,研究了锻炼效率和破坏的声法。据估计,对于双燃发动机,由于其混合物中甲烷浓度的函数而被破坏的驱动。通过改变电解槽的电气输入,发现当输入电流为2A时,前进效率高达92.59%,而对于5A电流,效率降低了51.80%。最后,通过增加热流量温度来降低TEG的前培养效率; 86.68%的效率降低为470k和510k之间的温度。另一方面,被破坏的暴徒随着排气入口温度的增加而导致线性增加。

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