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Second Law Of Thermodynamics Analysis Of Triple Cycle Power Plant

机译:三重循环电厂热力学第二定律分析

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Triple cycle power plant with methane as a fuel has been analyzed on the basis of second law of thermodynamics.In this model, ideal Brayton cycle is selected as a topping cycle as it gives higher efficiency at lower pressure ratio comparedintercooler and reheat cycle. In trilple cycle the bottoming cycles are steam Rankine and organic Rankine cycle. Ammoniahas suitable working properties like critical temperature, boiling temperature, etc. Steam cycle consists of a deaerator andreheater. The bottoming ammonia cycle is a ideal Rankine cycle. Single pressure heat recovery steam and ammoniagenerators are selected for simplification of the analysis. The effects of pressure ratio and maximum temperature which aretaken as important parameters regarding the triple cycle are discussed on performance and exergetic losses. On the otherhand, the efficiency of the triple cycle can be raised, especially in the application of recovering low enthalpy content wasteheat. Therefore, by properly combining with a steam Rankine cycle, the ammonia Rankine cycle is expected to efficientlyutilize residual yet available energy to an optimal extent. The arrangement of multiple cycles is compared with combinedcycle having the same sink conditions. The parallel type of arrangement of bottoming cycle is selected due to increasedperformance.
机译:根据热力学第二定律分析了以甲烷为燃料的三循环发电厂。在该模型中,选择了理想的布雷顿循环作为顶循环,因为与中冷器和再热循环相比,它在较低的压力比下具有更高的效率。在三重循环中,底部循环是蒸汽朗肯循环和有机朗肯循环。氨具有合适的工作特性,例如临界温度,沸腾温度等。蒸汽循环由除气器和再热器组成。底部氨循环是理想的兰金循环。选择单压热回收蒸汽发生器和氨发生器以简化分析。讨论了有关三倍循环的重要参数压力比和最高温度对性能和能量损失的影响。另一方面,可以提高三重循环的效率,特别是在回收低焓含量废热的应用中。因此,通过与蒸汽朗肯循环适当地结合,氨朗肯循环被期望以最佳程度有效地利用残余的但可用的能量。将多个循环的布置与具有相同下沉条件的联合循环进行比较。由于提高了性能,因此选择了并行的底部循环安排类型。

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