Advanced binary cycles: optimum working fluids

K. Gawlik, V. Hassani, K. Gawlik, V. Hassani
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引用次数: 42

Abstract

A computer model (Cycle Analysis Simulation Tool, CAST) and a methodology have been developed to perform value analysis for small, low- to moderate-temperature binary geothermal power plants. The value analysis method allows for incremental changes in the levelized electricity cost (LEC) to be determined between a baseline plant and a modified plant. Thermodynamic cycle analyses and component sizing are carried out in the model followed by economic analysis which provides LEC results. The emphasis of the present work is on evaluating the effect of mixed working fluids instead of pure fluids on the LEC of a geothermal binary plant that uses a simple organic Rankine cycle. Four resources were studied spanning the range of 265/spl deg/F to 375/spl deg/F. A variety of isobutane and propane based mixtures, in addition to pure fluids, were used as working fluids. This study shows that the use of propane mixtures at a 265/spl deg/F resource can reduce the LEC by 24% when compared to a base case value that utilizes commercial isobutane as its working fluid. The cost savings drop to 6% for a 375/spl deg/F resource, where an isobutane mixture is favored. Supercritical cycles were found to have the lowest cost at all resources.
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先进的二元循环:最佳的工作流体
一个计算机模型(循环分析模拟工具,CAST)和一种方法已经被开发出来,对小型、低到中等温度的二元地热发电厂进行价值分析。价值分析方法允许在基线电厂和改造电厂之间确定平准化电力成本(LEC)的增量变化。在模型中进行了热力学循环分析和部件尺寸分析,然后进行了经济分析,得出了LEC结果。本工作的重点是评价混合工液代替纯流体对采用简单有机朗肯循环的地热二元电厂LEC的影响。研究了4种资源,分布范围为265 ~ 375/spl°F。除了纯流体外,还使用了各种基于异丁烷和丙烷的混合物作为工作流体。该研究表明,与使用商业异丁烷作为工作流体的基本情况值相比,在265/spl度/F的资源下使用丙烷混合物可以将LEC降低24%。对于375/spl度/F的资源,成本降低到6%,其中异丁烷混合物更受欢迎。在所有资源中,超临界循环的成本最低。
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