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Feasibility study and performance assessment for the integration of a steam-injected gas turbine and thermal desalination system

机译:蒸汽喷射燃气轮机与热脱盐系统集成的可行性研究和性能评估

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摘要

This study proposes a systematic approach for retrofitting a steam-injection gas turbine (S1GT) with a multi-effect thermal vapor compression (METVC) desalination system. The retrofitted unit's product cost of the fresh water (RUPC) was used as a performance criterion, which comprises the thermodynamic, economic, and environmental attributes when calculating the total annual cost of the S1GT-METVC system. For the feasibility study of retrofitting the S1GT plant with the METVC desalination system, the effects of two key parameters were analyzed using response surface methodology (RSM) based on a central composite design (CCD): the steam air ratio (SR) and the temperature difference between the effects of the METVC system (△T_(METVC)) on the fresh water production (Q_(freshwater)) and the net power generation (W_(net)) of the S1GT-METVC system. Multi-objective optimization (MOO) which minimizes the modified total annual cost (MTAC) and maximizes the fresh water flow rate was performed to optimize the RUPC of the S1GT-METVC system. The best Pareto optimal solution showed that the SIGT-METVC system with five effects is the best one among the systems with 4-6 effects. This system under optimal operating conditions can save 21.07% and 9.54% of the RUPC, compared to the systems with four and six effects, respectively.
机译:这项研究提出了一种使用多效热蒸汽压缩(METVC)脱盐系统改造蒸汽喷射燃气轮机(S1GT)的系统方法。在计算S1GT-METVC系统的年度总成本时,将改造后的淡水产品成本(RUPC)用作性能标准,其中包括热力学,经济和环境属性。为了对METVC海水淡化系统改造S1GT工厂进行可行性研究,基于中央复合设计(CCD),使用响应面方法(RSM)分析了两个关键参数的影响:蒸汽比(SR)和温度METVC系统(△T_(METVC))对S1GT-METVC系统的淡水产量(Q_(淡水))和净发电量(W_(net))的影响之间的差异。为了使S1GT-METVC系统的RUPC最优化,进行了多目标优化(MOO),该目标可将修改后的年度总成本(MTAC)降至最低,并最大化淡水流量。最佳帕累托最优解表明,具有5种效果的SIGT-METVC系统是具有4-6种效果的系统中最好的一种。与分别具有四个和六个效果的系统相比,该系统在最佳操作条件下可以节省RUPC的21.07%和9.54%。

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