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Working fluid parametric analysis for regenerative supercritical organic Rankine cycles for medium geothermal reservoir temperatures

机译:用于中地热储层温度的再生超临界有机朗朗循环的工作流体参数分析

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The conversion efficiency of geothermal energy is very low. For low-temperature resources, such as geothermal energy, a supercritical organic Rankine cycle (ORC) has been shown to be more efficient than an ORC. Regenerative supercritical ORCs have been proven to yield even higher efficiencies for cases where the heat source is limited above the ambient temperature. Most studies on these cycles have focused on turbine inlet temperatures between 80 and 130°C. Only a few studies have explored other working fluids between 180 and 350°C but did not analyze optimum turbine inlet pressures. Turbine inlet temperatures ranging from 170 to 240°C were tested with the heat source provided by a medium temperature geothermal reservoir. A parametric analysis was performed for various turbine inlet pressures and temperatures. The fluids tested included cis-butene, pentane, isopentane, butane, isobutane, carbon dioxide, neopentane, propylene, and propane. Temperatures and pressures were selected for each tested fluid to achieve maximum first law efficiency, second law efficiency, cycle effectiveness, and net work.
机译:地热能量的转换效率非常低。对于低温资源,例如地热能,超临界有机兰氨氨酸循环(ORC)已被证明比ORC更有效。已被证明再生超临界兽人在热源受到高于环境温度的限制的情况下,产生更高的效率。大多数关于这些循环的研究都集中在80至130℃之间的涡轮机入口温度。只有一些研究探索了其他180到350°C之间的其他工作流体,但没有分析最佳涡轮机入口压力。使用由中温地热储层提供的热源测试的涡轮机入口温度范围为170至240℃。对各种涡轮机入口压力和温度进行参数分析。测试的液体包括顺式 - 丁烯,戊烷,异戊烷,丁烷,异丁烷,二氧化碳,新戊烷,丙烯和丙烷。为每个测试的流体选择温度和压力,以实现最大的第一法效率,第二律效率,循环效率和净工作。

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