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Optimum design criteria for an Organic Rankine cycle using low-temperature geothermal heat sources

机译:使用低温地热热源的有机朗肯循环的最佳设计标准

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摘要

A cost-effective optimum design criterion for Organic Rankine power cycles utilizing low-temperature geothermal heat sources is presented. The ratio of the total heat exchanger area to net power output is used as the objective function and was optimized using the steepest descent method. Evaporation and condensation temperatures, geothermal and cooling water velocities are varied in the optimization method. The optimum cycle performance is evaluated and compared for working fluids that include ammonia, HCFC123, n-Pentane and PF5050. The optimization method converges to a unique solution for specific values of evaporation and condensation temperatures and geothermal and cooling water velocities. The choice of working fluid can be greatly affect the objective function which is a measure of power plant cost and in some instances the difference could be more than twice. Ammonia has minimum objective function and maximum geothermal water utilization, but not necessarily maximum cycle efficiency. Exergy analysis shows that efficiency of the ammonia cycle has been largely compromised in the optimization process than that of other working fluids. The fluids, HCFC 123 and n-Pentane, have better performance than PF 5050, although the latter has most preferable physical and chemical characteristics compared to other fluids considered.
机译:提出了利用低温地热热源的有机朗肯动力循环的经济有效的最佳设计准则。总热交换器面积与净功率输出之比用作目标函数,并使用最速下降法进行了优化。在优化方法中,蒸发和冷凝温度,地热和冷却水的速度会发生变化。对于包括氨,HCFC123,正戊烷和PF5050在内的工作流体,评估并比较了最佳循环性能。对于蒸发和冷凝温度以及地热和冷却水速度的特定值,该优化方法收敛到一个独特的解决方案。工作流体的选择会极大地影响目标函数,这是衡量电厂成本的指标,在​​某些情况下,差异可能会超过两倍。氨具有最小的目标函数和最大的地热水利用率,但不一定具有最大的循环效率。火用分析表明,与其他工质相比,氨气循环效率在优化过程中受到很大影响。 HCFC 123和正戊烷这些流体比PF 5050具有更好的性能,尽管与所考虑的其他流体相比,后者具有最理想的物理和化学特性。

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