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Investigating the effect of duct burner fuel mass flow rate on exergy destruction of a real combined cycle power plant components based on advanced exergy analysis

机译:基于高级火用分析研究管道燃烧器燃料质量流量对实际联合循环电厂组件的火用破坏的影响

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In this research, an advanced exergy analysis of a real combined cycle power plant (CCPP) with supplementary firing is investigated. The endogenous/exogenous irreversibilities of each component and their combination with avoidable/unavoidable irreversibilities are identified. Furthermore, parametric study of the total exergy destruction, thermal and exergetic efficiencies and different parts of exergy destruction of each component are examined as a function of duct burner fuel mass flow rate ((m) over dot(DB)). It is revealed that the avoidable exergy destruction of CCPP decreases within 23.9% while its unavoidable part increases by about 50% as (m) over dot(DB) increases. In addition, the endogenous avoidable exergy destruction of CCPP gets 3 times while its exogenous part of avoidable is reduced within 86% by increasing film. It is found that the growth of (m) over dot(DB) elevates the potential improvement of high pressure superheater (HP.SUP), low pressure evaporator (LP.EVAP) and low pressure steam turbine (LP.ST), and decreases the avoidable exergy destruction of the high pressure evaporator (HP.EVAP) and duct burner (DB). Moreover, the increment of (m) over dot(DB), decreases the unavoidable exergy destruction just in high pressure steam turbine (HP.ST) and dearator (DEAR) by. about 8.2% and 5%, respectively, and increases the exogenous of avoidable exergy destruction of DB ((E) over dot(D,DB)(AV)) within 166%. It means that the effect of other components irreversibilities on avoidable exergy destruction of DB is increased while inefficiency of this component has considerable decrement on its avoidable exergy destruction. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在这项研究中,对带有辅助点火的实际联合循环发电厂(CCPP)的高级火用分析进行了研究。确定了每种成分的内源性/外源性不可逆性及其与可避免/不可避免的不可逆性的组合。此外,根据管道燃烧器燃料质量流率((m)over dot(DB))检验了每个组件的总火用破坏,热能利用效率以及火用破坏的不同部分的参数研究。结果表明,随着(m)超过点(DB)的增加,CCPP的可避免的火用破坏减少了23.9%,而其不可避免的部分增加了约50%。此外,CCPP的内源性可避免火用破坏得到了3倍,而可避免的外源性部分通过增加覆膜而减少了86%之内。发现(m)在点(DB)之上的增长提高了高压过热器(HP.SUP),低压蒸发器(LP.EVAP)和低压蒸汽轮机(LP.ST)的潜在改进,并降低了避免了高压蒸发器(HP.EVAP)和管道燃烧器(DB)的火用破坏。而且,(m)超过点(DB)的增量,仅在高压蒸汽轮机(HP.ST)和脱气器(DEAR)中减少了不可避免的火用破坏。分别增加了约8.2%和5%,并在166%的范围内增加了DB((E)超过dot(D,DB)(AV))的外源可避免的火用破坏。这意味着其他成分不可逆性对DB的可避免的本能破坏的影响增加了,而该成分的无效性对其DB2的可避免的本能破坏具有相当大的降低。 (C)2015 Elsevier Ltd.保留所有权利。

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