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Effect of the working fluid on the optimum work of binary-flashing geothermal power plants

机译:工作流体对二元闪蒸地热发电厂最佳工作的影响

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Geothermal energy is an excellent form of renewable energy, which is continuously available for the production of electric power. At present, a very high percentage of geothermal power is generated by power systems that directly use the geofluid from a geothermal reservoir to produce electricity, such as dry steam and flashing power systems. These power plants operate at higher temperatures, typically greater than 160 ℃ It appears that most of these high temperature geothermal reservoirs have already been developed and this leaves only the lower temperature resources available for the expansion and for the next generation of geothermal power plants. This paper examines the operation of a new system, the binary-flashing power plant, which may be used to harness more efficiently the available energy of geothermal resources at the lower range of resource temperatures. The paper compares the operation of the binary-flashing systems with the typical binary systems using the following substances as working fluids: normal butane, isobutane, hexane, pentane, refrigerant-114, and ammonia. It is observed that when both systems are optimized, the binary-flashing units would produce 25% more work than the typical binary units and that hexane and pentane appear to be better working fluids for these units.
机译:地热能是可再生能源的一种极好的形式,可以连续用于生产电力。当前,通过直接使用地热储层中的地流体来发电的动力系统,例如干蒸汽和闪蒸动力系统,产生了很高比例的地热能。这些发电厂在更高的温度(通常高于160℃)下运行。看来,这些高温地热库中的大多数已经开发完毕,这仅留下了可用于扩展和下一代地热发电厂的较低温度资源。本文研究了一种新系统,即二元闪蒸发电厂的运行情况,该系统可用于在较低的资源温度范围内更有效地利用地热资源的可用能源。本文将二元闪蒸系统的操作与使用以下物质作为工作流体的典型二元系统进行了比较:正丁烷,异丁烷,己烷,戊烷,制冷剂114和氨。可以看到,当两个系统都进行了优化时,二元闪蒸单元将比典型的二元单元产生更多的功,而己烷和戊烷似乎是这些单元更好的工作流体。

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