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The Performance of the Kalina Cycle System 11 (KCS-11) With Low-Temperature Heat Sources

机译:带有低温热源的Kalina循环系统11(KCS-11)的性能

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The possibility of exploiting low-temperature heat sources has been of great significance with ever increasing energy demand. Optimum and cost-effective design of the power cycles provide a means of utilization of low-temperature heat sources which might otherwise be discarded. In this analysis, the performance of the Kalina cycle system 11 (KCS11) is examined for low-temperature geothermal heat sources and is compared with an organic Rankine cycle. The effect of the ammonia fraction and turbine inlet pressure on the cycle performance is investigated in detail. Results show that for a given turbine inlet pressure, an optimum ammonia fraction can be found that yields the maximum cycle efficiency. Further, the maximum cycle efficiency does not necessarily yield the optimum operating conditions for the system. In addition, it is important to consider the utilization of the various circulating media (i.e., working fluid, cooling water, and heat resource) and heat exchanger area per unit power produced. For given conditions, an optimum range of operating pressure and ammonia fraction can be identified that result in optimum cycle performance. In general, the KCS11 has better overall performance at moderate pressures than that of the organic Rankine cycle.
机译:随着能源需求的不断增长,利用低温热源的可能性已具有重要意义。功率循环的最佳且具有成本效益的设计提供了一种利用低温热源的方法,否则可能会被丢弃。在该分析中,检查了低温地热热源的卡利纳循环系统11(KCS11)的性能,并将其与有机朗肯循环进行了比较。详细研究了氨分率和涡轮入口压力对循环性能的影响。结果表明,对于给定的涡轮机入口压力,可以找到产生最大循环效率的最佳氨馏分。此外,最大循环效率不一定会为系统带来最佳运行条件。另外,重要的是要考虑各种循环介质(即工作流体,冷却水和热资源)的利用和每单位发电量的热交换器面积。对于给定的条件,可以确定导致最佳循环性能的最佳工作压力和氨含量范围。通常,在中等压力下,KCS11的整体性能要优于有机朗肯循环。

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