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首页> 外文期刊>Energy Conversion & Management >Combination of two-stage series evaporation with non-isothermal phase change of organic Rankine cycle to enhance flue gas heat recovery from gas turbine
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Combination of two-stage series evaporation with non-isothermal phase change of organic Rankine cycle to enhance flue gas heat recovery from gas turbine

机译:两阶段系列蒸发与有机朗肯循环的非等温相变的组合,以增强燃气轮机的烟气热回收

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摘要

Nowadays, gas turbines (GTs) are increasingly used in China, with a relatively low performance. Organic Rankine cycle (ORC) is promising to recover the flue gas heat recovery from GT. To efficiently enhance the heat recovery, two-stage series evaporation is combined with non-isothermal phase change of non-azeotropic mixtures. Thus, two-stage series organic Rankine cycle (TSORC) with six non-azeotropic mixtures, composed of R245fa and hydrocarbons, as the working fluids are investigated. The cycle performances of TSORC with nonazeotropic mixtures are compared with those of the ORC with pure working fluid. Moreover, a case study was conducted to illustrate the performance enhancement by TSORC with the non-azeotropic mixture for fuel gas waste heat from C200HP. The results show that the net power output, thermal and exergy efficiencies of the TSORC are superior to those of the ORC at the same mass fraction, especially for the net power output. Comparing with the stand-alone gas turbine of C200HP, the TSORC with cyclohexane/R245fa[0.8/0.2] increases the efficiency of C200HP system by 35.48%, and the power generation efficiency of the C200HP-TSORC system achieves 44.71%. The TSORC with non-azeotropic mixtures as the working fluids is advisable and can be popularized in engineering applications.
机译:如今,燃气轮机(GTS)越来越多地用于中国,性能相对较低。有机朗肯循环(ORC)很有希望能够从GT中恢复烟气热回收。为了有效地增强热回收,两级系列蒸发与非共沸混合物的非等温相变。因此,研究了两阶段串联有机兰敏循环(TSORC),其具有六种非共沸混合物,由R245FA和烃组成,作为工作流体。将TSORC与非区域混合物的循环性能与具有纯工作液的矿石的循环性能进行比较。此外,进行了案例研究以说明TSORC与非共沸混合物的性能提高,用于燃料气体来自C200HP的燃料气体。结果表明,TSORC的净功率,热量和漏极效率优于同一质量分数的磁体上的渗透率,特别是对于净功率输出。与C200HP的独立燃气涡轮机相比,具有环己烷/ R245FA的TSORC [0.8 / 0.2]将C200HP系统的效率提高了35.48%,C200HP-TSORC系统的发电效率达到了44.71%。具有非共沸混合物作为工作流体的TSORC是可取的,并且可以在工程应用中推广。

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