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Trigeneration scheme for energy efficiency enhancement in a natural gas processing plant through turbine exhaust gas waste heat utilization

机译:通过涡轮废气余热利用提高天然气加工厂能效的三代发电方案

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The performance of Natural Gas Processing Plants (NGPPs) can be enhanced with the integration of Combined Cooling, Heating and Power (CCHP) generation schemes. This paper analyzes the integration of a trigeneration scheme within a NGPP, that utilizes waste heat from gas turbine exhaust gases to generate process steam in a Waste Heat Recovery Steam Generator (WHRSG). Part of the steam generated is used to power double-effect water-lithium bromide (H_2O-LiBr) absorption chillers that provide gas turbine compressor inlet air-cooling. Another portion of the steam is utilized to meet part furnace heating load, and supplement plant electrical power in a combined regenerative Rankine cycle. A detailed techno-economic analysis of scheme performance is presented based on thermodynamic predictions obtained using Engineering Equation Solver (EES). The results indicate that the trigeneration system could recover 79.7 MW of gas turbine waste heat, 37.1 MW of which could be utilized by three steam-fired H_2O-LiBr absorption chillers to provide 45 MW of cooling at 5℃. This could save approximately 9 MW of electric energy required by a typical compression chiller, while providing the same amount of cooling. In addition, the combined cycle generates 22.6 MW of additional electrical energy for the plant, while process heating reduces furnace oil consumption by 0.23 MSCM per annum. Overall, the trigeneration scheme would result in annual natural gas fuel savings of approximately 1879 MSCM, and annual operating cost savings of approximately US$ 20.9 million, with a payback period of 1 year. This study highlights the significant economical and environmental benefits that could be achieved through implementation of the proposed integrated cogeneration scheme in NGPPs, particularly in elevated ambient temperature and humidity conditions such as encountered in Middle East facilities.
机译:天然气处理厂(NGPPs)的性能可以通过组合冷却,加热和发电(CCHP)生成方案来增强。本文分析了NGPP中的三代发电方案的集成,该方案利用燃气轮机废气中的废热在废热回收蒸汽发生器(WHRSG)中产生工艺蒸汽。产生的部分蒸汽用于为双效水溴化锂(H_2O-LiBr)吸收式制冷机提供动力,从而为燃气轮机压缩机的进气口提供空气冷却。另一部分蒸汽被用来满足部分炉子的加热负荷,并在联合的朗肯循环中补充工厂的电力。基于使用工程方程求解器(EES)获得的热力学预测,对方案性能进行了详细的技术经济分析。结果表明,该三联发电系统可回收79.7 MW的燃气轮机废热,其中37.1 MW可被3台蒸汽燃烧的H_2O-LiBr吸收式冷水机组利用,在5℃提供45 MW的冷却。这可以节省典型压缩式制冷机所需的大约9 MW电能,同时提供相同数量的冷却。此外,联合循环可为工厂产生22.6 MW的额外电能,而过程加热每年可减少炉油消耗0.23 MSCM。总体而言,采用三联发电计划每年可节省约1879 MSCM的天然气燃料,每年可节省约2090万美元的运营成本,投资回收期为1年。这项研究强调了通过在NGPP中实施拟议的综合热电联产方案可以实现的重大经济和环境效益,特别是在高温和高湿条件下(例如在中东设施中遇到的情况)。

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