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Retrofitting micro gas turbines for wet operation. A way to increase operational flexibility in distributed CHP plants

机译:改造微型燃气轮机以进行湿运行。一种提高分布式热电联产工厂运营灵活性的方法

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It is generally accepted that only flexible CHP plants could be a viable option in an electrical system with high penetration of variable renewables. Variable power-to-heat-ratios and decoupled power and heat generation will be basic requirements. Currently, the most common way to fulfill these specifications is the use of heat storage devices, whereas wet operation of gas turbines is an alternative way to achieve both goals. The current work is an analysis of a micro gas turbine adapted to operate with steam injection. A thermodynamic model is developed and a typical apartments building in Berlin, Germany is chosen as a case study. The study presumes the existence of a micro gas turbine and analyzes the results of its adaptation for wet operation. The environmental and economic performance of the new system is compared to that of its commercial counterpart. It is shown that the retrofitted turbine has longer annual operation time and higher electrical energy generation. The retrofit also proves to be an attractive investment for the German CHP market with internal rates of return reaching almost 20%. (C) 2015 Elsevier Ltd. All rights reserved.
机译:人们普遍认为,只有灵活的热电联产电厂才是可变渗透率高的电气系统中可行的选择。基本的要求是可变的功率热比以及功率和热量的分离。当前,满足这些规格的最常见方法是使用储热装置,而燃气轮机的湿运行是实现这两个目标的替代方法。当前的工作是对适用于蒸汽喷射的微型燃气轮机的分析。开发了一个热力学模型,并选择了德国柏林的一栋典型公寓作为案例研究。该研究假设存在微型燃气轮机,并分析了其适用于湿式运行的结果。将新系统的环境和经济性能与商业系统进行比较。结果表明,改造后的涡轮机具有更长的年运行时间和更高的电能产生能力。改造也被证明是德国CHP市场的一项有吸引力的投资,内部收益率达到近20%。 (C)2015 Elsevier Ltd.保留所有权利。

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