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Performance analysis and optimization of a hydrogen liquefaction system assisted by geothermal absorption precooling refrigeration cycle

机译:地热吸收预冷制冷循环辅助氢液化系统性能分析与优化

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The present paper deals with the hydrogen liquefaction with absorption precooling cycle assisted by geothermal water is modeled and analyzed. Uses geothermal heat in an absorption refrigeration process to precool the hydrogen gas is liquefied in a liquefaction cycle. High-temperature geothermal water using the absorption refrigeration cycle is used to decrease electricity work consumption in the gas liquefaction cycle. The thermoeconomic optimization procedure is applied using the genetic algorithm method to the hydrogen liquefaction system. The objective is to minimize the unit cost of hydrogen liquefaction of the composed system. Based on optimization calculations, hydrogen gas can be cooled down to −30 °C in the precooling cycle. This allows the exergetic cost of hydrogen gas to be reduced to be 20.16 $/GJ (2.42 $/kg LH2). The optimized exergetic cost of liquefied hydrogen is 4.905 $/GJ (1.349 $/kg LH2), respectively.
机译:本文对地热水辅助吸收预冷循环中的氢液化进行了建模和分析。在吸收式制冷过程中使用地热来预冷在液化循环中液化的氢气。使用吸收式制冷循环的高温地热水可减少气体液化循环中的电力消耗。使用遗传算法方法将热经济优化程序应用于氢液化系统。目的是使组成系统的氢液化的单位成本最小化。根据优化计算,可以在预冷循环中将氢气冷却至−30°C。这样可以将氢气的高能成本降低到20.16 $ / GJ(2.42 $ / kg LH2)。液化氢的最佳能效成本分别为4.905 $ / GJ(1.349 $ / kg LH2)。

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