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Thermodynamic performance analysis of a combined power cycle using low grade heat source and LNG cold energy

机译:使用低品位热源和LNG冷能的联合动力循环的热力学性能分析

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Thermodynamic analysis of a combined cycle using a low grade heat source and LNG cold energy was carried out. The combined cycle consisted of an ammonia-water Rankine cycle with and without regeneration and a LNG Rankine cycle. A parametric study was conducted to examine the effects of the key parameters, such as ammonia mass fraction, turbine inlet pressure, condensation temperature. The effects of the ammonia mass fraction on the temperature distributions of the hot and cold streams in heat exchangers were also investigated. The characteristic diagram of the exergy efficiency and heat transfer capability was proposed to consider the system performance and expenditure of the heat exchangers simultaneously. The simulation showed that the system performance is influenced significantly by the parameters with the ammonia mass fraction having largest effect. The net work output of the ammonia-water cycle may have a peak value or increase monotonically with increasing ammonia mass fraction, which depends on turbine inlet pressure or condensation temperature. The exergy efficiency may decrease or increase or have a peak value with turbine inlet pressure depending on the ammonia mass fraction.
机译:使用低品位热源和LNG冷能对联合循环进行了热力学分析。联合循环由具有和不具有再生的氨水朗肯循环和LNG朗肯循环组成。进行了参数研究,以检查关键参数的影响,例如氨质量分数,涡轮机入口压力,冷凝温度。还研究了氨质量分数对换热器中冷热气流温度分布的影响。提出了火用效率和传热能力的特性图,以同时考虑系统性能和热交换器的费用。仿真表明,系统性能受参数影响很大,氨质量分数影响最大。氨水循环的净功输出可能具有峰值或随氨质量分数的增加而单调增加,这取决于涡轮机入口压力或冷凝温度。根据氨质量分数,火用效率可能随着涡轮机入口压力而降低或增加,或者具有峰值。

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