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Geothermal/Solar Hybrid Designs: Use of Geothermal Energy for CSP Feedwater Heating

机译:地热/太阳能混合动力设计:使用地热能进行CSP给水加热

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This paper examines a hybrid geothermal / solar-thermal plant design that uses geothermal energy to provide feedwater heating in a conventional steam-Rankine power cycle deployed by a concentrating solar power (CSP) plant. The geothermal energy represents approximately 11 % of the annual thermal input to the hybrid plant. The geothermal energy allows power output from the hybrid plant to increase by about 8% relative to a stand-alone CSP plant with the same solar-thermal input. Geothermal energy is converted to electricity at an efficiency of 1.7 to 2.5 times greater than would occur in a stand-alone, binary-cycle geothermal plant using the same geothermal resource. While the design exhibits a clear advantage during hybrid plant operation, the annual advantage of the hybrid versus two standalone power plants depends on the annual operating hours of the different plants. Annual net power from the hybrid plant matches the combined output from a stand-alone CSP plant and stand-alone geothermal plant when the assumed stand-alone geothermal plant availability is 74% or less. The cost implications are not covered in this study, but the hybrid plant avoids the need for an ORC power block and produces more power during hot afternoons that generally correspond to peak demand periods.
机译:本文介绍了一种混合地热/太阳能热厂设计,其使用地热能来提供由集中的太阳能(CSP)厂部署的传统蒸汽朗肯电源循环中的给水加热。地热能量代表杂交厂的每年热量输入的11%。地热能量允许杂交工厂的电力输出相对于具有相同太阳能热输入的独立CSP工厂的电力输出增加约8%。使用相同地热资源的独立二进制周期地热植物,地热能量转换为电力1.7至2.5倍。虽然在混合厂运行期间设计表现出明显的优势,但混合动力与两个独立发电厂的年优势取决于不同植物的年度运行时间。当假设的独立地热植物可用性为74%或更低时,杂交工厂的年度净功率与独立CSP厂和独立地热厂的组合输出相匹配。本研究未涵盖成本影响,但混合厂避免了对兽人电源块的需求,并在炎热的下午期间产生更多的功率,这通常对应于峰值需求周期。

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