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Development of Natural Gas Fired Combined Cycle Plant for Tri-Generation of Power, Cooling and Clean Water Using Waste Heat Recovery: Techno-Economic Analysis

机译:利用余热回收技术开发天然气三联供热,冷却和清洁水的天然气联合循环装置:技术经济分析

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Tri-generation is one of the most efficient ways for maximizing the utilization of available energy. Utilization of waste heat (flue gases) liberated by the Al-Hamra gas turbine power plant is analyzed in this research work for simultaneous production of: (a) electricity by combining steam rankine cycle using heat recovery steam generator (HRSG); (b) clean water by air gap membrane distillation (AGMD) plant; and (c) cooling by single stage vapor absorption chiller (VAC). The flue gases liberated from the gas turbine power cycle is the prime source of energy for the tri-generation system. The heat recovered from condenser of steam cycle and excess heat available at the flue gases are utilized to drive cooling and desalination cycles which are optimized based on the cooling energy demands of the villas. Economic and environmental benefits of the tri-generation system in terms of cost savings and reduction in carbon emissions were analyzed. Energy efficiency of about 82%–85% is achieved by the tri-generation system compared to 50%–52% for combined cycles. Normalized carbon dioxide emission per MW·h is reduced by 51.5% by implementation of waste heat recovery tri-generation system. The tri-generation system has a payback period of 1.38 years with cumulative net present value of $66 million over the project life time.
机译:三联发电是最大限度地利用可用能量的最有效方法之一。在这项研究工作中,对Al-Hamra燃气轮机发电厂释放的废热(烟气)的利用进行了分析,以同时生产:(a)通过利用热回收蒸汽发生器(HRSG)结合蒸汽朗肯循环来发电。 (b)气隙膜蒸馏(AGMD)装置提供的清洁水; (c)通过单级蒸气吸收冷却器(VAC)进行冷却。从燃气轮机功率循环中释放的烟气是三联产系统的主要能源。从蒸汽循环冷凝器回收的热量和烟道气中可用的多余热量被用于驱动冷却和脱盐循环,这些循环根据别墅的冷却能量需求进行了优化。分析了三代发电系统在节约成本和减少碳排放方面的经济和环境效益。三联发电系统可实现约82%–85%的能源效率,而联合循环则可达到50%–52%。通过实施余热回收三联产系统,每兆瓦时的标准二氧化碳排放量减少了51.5%。该三代系统的投资回收期为1.38年,在项目生命周期内的累计净现值为6600万美元。

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