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Low GWP alternatives to HFC-245fa in Organic Rankine Cycles for low temperature heat recovery: HCFO-1233zd-E and HFO-1336mzz-Z

机译:用于低温热回收的有机朗肯循环中HFC-245fa的低GWp替代品:HCFO-1233zd-E和HFO-1336mzz-Z

摘要

HFC-245fa is a common working fluid used in Organic Rankine Cycles generating mechanical power from low temperature heat. This paper compares the predicted ORC performance of two novel low GWP working fluids, HCFO-1233zd-E and HFO-1336mzz-Z, to HFC-245fa over a wide range of evaporating temperatures, condensing temperatures and vapour superheat values. Expander power output, required pump power input, net cycle efficiencies, mass flow rates and turbine size parameters with HCFO-1233zd-E, HFO-1336mzz-Z and HFC-245fa were compared for a given thermal power input. HCFO-1233zd-E and HFO-1336mzz-Z are predicted to have attractive thermodynamic Rankine power cycle performance. HCFO-1233zd-E would require 10.3%–17.3% lower pump power and would enable up to 10.6% higher net cycle efficiencies than HFC-245fa over the range of cycle conditions examined in this paper. The turbine size required with HCFO-1233zd-E would be up to about 7.5%–10.2% larger than with HFC-245fa. HFO-1336mzz-Z would require 36.5%–41% lower pump power and would enable up to 17% higher net cycle efficiencies than HFC-245fa over the range of cycle conditions examined in this paper. The turbine size required with HFO-1336mzz-Z would be up to about 30.9%–41.5% larger than with HFC-245fa. HFO-1336mzz-Z cycle efficiency is benefitted substantially by a recuperator. The net cycle efficiency increases and the required turbine size decreases relative to HFC-245fa for HCFO-1233zd-E and for HFO-1336mzz-Z at higher evaporating and condensing temperatures.
机译:HFC-245fa是有机朗肯循环中常用的工作流体,可通过低温热产生机械能。本文在蒸发温度,冷凝温度和蒸汽过热度的宽范围内,将两种新型低GWP的工作流体HCFO-1233zd-E和HFO-1336mzz-Z与HFC-245fa的预测ORC性能进行了比较。对于给定的热功率输入,比较了HCFO-1233zd-E,HFO-1336mzz-Z和HFC-245fa的膨胀机功率输出,所需的泵功率输入,净循环效率,质量流率和涡轮尺寸参数。 HCFO-1233zd-E和HFO-1336mzz-Z预计具有诱人的热力学兰金功率循环性能。在本文研究的循环条件范围内,HCFO-1233zd-E所需的泵浦功率将降低10.3%–17.3%,并使净循环效率比HFC-245fa高出10.6%。 HCFO-1233zd-E所需的涡轮机尺寸将比HFC-245fa大约7.5%–10.2%。在本文研究的循环条件范围内,HFO-1336mzz-Z所需的泵浦功率将降低36.5%–41%,并使净循环效率比HFC-245fa高出17%。 HFO-1336mzz-Z所需的涡轮尺寸要比HFC-245fa大约30.9%–41.5%。同流换热器大大提高了HFO-1336mzz-Z的循环效率。在较高的蒸发和冷凝温度下,相对于HCFO-1233zd-E和HFO-1336mzz-Z的HFC-245fa,净循环效率增加,所需的涡轮尺寸减小。

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