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Energy optimization and gas removal selection of geothermal power plant

机译:地热电厂的能源优化和除气选择

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Non-condensable gas (NCG) is a part of geothermal fluid that affects geothermal power plant performance. Two scenarios were proposed to extract NCG out of condenser; i.e two-stage steam jet ejector (SJE) intercondenser plus one-stage SJE after condenser (three-stage SJE) and hybrid (combination of two-stage SJE intercondenser and vacuum pump). Both scenarios were optimized by the installation of Variable Frequency Drive (VFD) to hot well pump and cooling tower fan, respectively. Each scenario was analyzed to the wet bulb temperature (WBT) fluctuation. This study modeled the data of Darajat Geothermal Power Plant unit III on load 100% (110 MW) and computed it using Engineering Equation Solver commercial version 9.430. The consideration of both scenarios was analyzed by Specific Steam Consumption net. The result of this study indicated that hybrid system can save 1.11% energy compared with three-stage SJE. It is also found that hybrid system had a possibility to optimize by VFD installation when WBT in 15.5 °C up to 19.5 °C. The highest energy saving was obtained 1.03% compared to constant L/G, on WBT 19.5 °C, where L/G denotes the ratio of inlet water mass flow rate to cooling air inside cooling tower.
机译:不可凝气体(NCG)是影响地热发电厂性能的地热流体的一部分。提出了两种从冷凝器中提取NCG的方案:即两级蒸汽喷射喷射器(SJE)中间冷凝器加上冷凝器后的一级SJE(三级SJE)和混合动力(两级SJE中间冷凝器和真空泵的组合)。通过分别在热井泵和冷却塔风扇上安装变频驱动器(VFD),对这两种情况进行了优化。分析每种情况下的湿球温度(WBT)波动。本研究对负荷为100%(110 MW)的达拉哈特地热发电厂III号机组的数据进行了建模,并使用Engineering Equation Solver商业版本9.430对其进行了计算。通过特定蒸汽消耗网分析了这两种情况的考虑。研究结果表明,与三级SJE相比,混合动力系统可节能1.11%。还发现,当WBT在15.5°C至19.5°C时,混合系统有可能通过VFD安装进行优化。在WBT 19.5°C时,与恒定的L / G相比,节能效果最高,为1.03%,其中L / G表示进水质量流量与冷却塔内冷却空气的比率。

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