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Simultaneous optimization of working fluid and boiler pressure in an organic Rankine cycle for different heat source temperatures

机译:同时针对不同热源温度在有机朗肯循环中同时优化工作流体和锅炉压力

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Over the last ten years, power generation from the waste heat from industries has become an effective factor in increasing the efficiency of industries. One of the most important ways to improve the efficiency is using the organic Rankine cycles. In this study, the waste heat from industrial complexes with temperature in the range of 120-300 ℃ was used to generate power through an organic Rankine cycle with different working fluids. In this regard, carrying out energy and exergy analyses on the organic Rankine cycle revealed that for each heat source temperature the maximum efficiency happens when a specific working fluid utilizes at a certain boiler pressure. According to the results, a heat source temperature of 120 ℃ had the highest energy and exergy efficiencies at a maximum pressure of 624(kPa) for working fluid of R245fa. Also, the optimum working fluids for the heat source temperatures of 150 and 200 ℃ were R152a and R141b, respectively. These working fluids also had the highest efficiency at the maximum pressures of 2735 and 847.5(kPa). Furthermore, for the heat source temperatures of 250 and 300 ℃, Benzene and Water had the highest efficiencies that occurred at the maximum pressures of 398.8 and 452.1(kPa).
机译:在过去的十年中,利用工业废热发电已成为提高工业效率的有效因素。提高效率的最重要方法之一是使用有机朗肯循环。在这项研究中,使用温度在120-300℃范围内的工业联合企业的废热,通过使用不同工作流体的有机朗肯循环来发电。在这方面,对有机朗肯循环进行能量和火用分析表明,对于每种热源温度,当特定的工作流体在一定的锅炉压力下使用时,效率最高。根据结果​​,在R245fa的最大工作压力为624(kPa)时,热源温度为120℃时,能量和火用效率最高。另外,热源温度为150℃和200℃时的最佳工作流体分别为R152a和R141b。这些工作流体在最大压力2735和847.5(kPa)时也具有最高的效率。此外,在250和300℃的热源温度下,苯和水的效率最高,最高压力为398.8和452.1(kPa)。

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