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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Modeling the Performance Characteristics of Diesel Engine Based Combined-Cycle Power Plants―Part Ⅱ: Results and Applications
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Modeling the Performance Characteristics of Diesel Engine Based Combined-Cycle Power Plants―Part Ⅱ: Results and Applications

机译:基于柴油机的联合循环发电厂性能特性建模-第二部分:结果与应用

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In this two-pan series publication a mathematical model of the energy conversion process in a diesel engine based combined-cycle power plant has been developed and verified. The examined configuration consists of a turbocharged diesel engine (the topping cycle), a heat recovery steam generator (HRSG) and a steam turbine plant (the bottoming cycle). The model is then used to provide an analysis of performance characteristics of the combined-cycle power plant for steady-state operation. Numerous practical performance parameters of interest have been generated, such as the mean indicated pressure, specific fuel consumption, hourly fuel consumption, brake horsepower of diesel engine, mass flow rate, pressure, and temperature of gases and air, respectively, through the gas turbine and compressor (in the frame of a turbocharger), temperature of flue gases at boiler inlet and outlet, mass flow rate of exhaust gases through the convection coils, and mass flow rate, temperature, pressure, and enthalpy of superheated steam. The performance maps have been derived. The effect of change in the major operating variables (mutual operation of diesel engine, HRSG, and steam turbine) has been analyzed over a range of operating conditions, including the engine load and speed. The model is used as a desktop design tool for accurate predictions of cycle performance, as well as insight into design trends.
机译:在此两篇系列丛书中,已经开发并验证了基于柴油机的联合循环发电厂中能量转换过程的数学模型。检查的配置包括涡轮增压柴油机(顶部循环),热回收蒸汽发生器(HRSG)和蒸汽轮机装置(底部循环)。然后,该模型用于对稳态运行的联合循环发电厂的性能特征进行分析。已经产生了许多重要的实际性能参数,例如平均指示压力,比燃料消耗,小时燃料消耗,柴油发动机的制动马力,通过燃气轮机的气体和空气的质量流量,压力和温度,分别以及压缩机(在涡轮增压器的框架中),锅炉入口和出口处的烟气温度,通过对流盘管的废气质量流率以及过热蒸汽的质量流率,温度,压力和焓。性能图已得出。在包括发动机负载和转速在内的一系列运行条件下,已经分析了主要运行变量(柴油机,HRSG和蒸汽轮机的相互运行)变化的影响。该模型用作桌面设计工具,可准确预测循环性能以及洞悉设计趋势。

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