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A Simple Method of Finding New Dry and Isentropic Working Fluids for Organic Rankine Cycle

机译:寻找有机朗肯循环的新型干燥和等式工作流体的简单方法

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摘要

One of the most crucial challenges of sustainable development is the use of low-temperature heat sources (60⁻200 °C), such as thermal solar, geothermal, biomass, or waste heat, for electricity production. Since conventional water-based thermodynamic cycles are not suitable in this temperature range or at least operate with very low efficiency, other working fluids need to be applied. Organic Rankine Cycle (ORC) uses organic working fluids, which results in higher thermal efficiency for low-temperature heat sources. Traditionally, new working fluids are found using a trial-and-error procedure through experience among chemically similar materials. This approach, however, carries a high risk of excluding the ideal working fluid. Therefore, a new method and a simple rule of thumb—based on a correlation related to molar isochoric specific heat capacity of saturated vapor states—were developed. With the application of this thumb rule, novel isentropic and dry working fluids can be found applicable for given low-temperature heat sources. Additionally, the importance of molar quantities—usually ignored by energy engineers—was demonstrated.
机译:可持续发展最重要的挑战之一是使用低温热源(60˚200°C),如热太阳能,地热,生物质或废热,用于电力生产。由于传统的水基热力学循环不适用于该温度范围或至少以非常低的效率操作,因此需要施加其他工作流体。有机朗肯循环(ORC)使用有机工作流体,这导致低温热源的热效率较高。传统上,通过在化学上类似的材料的经验中使用试验和错误程序,找到新的工作流体。然而,这种方法具有不包括理想工作流体的高风险。因此,开发了一种新方法和基于饱和蒸汽状态的摩尔同学比热容的相关性的拇指的简单规则 - 被研制出饱和蒸汽状态的相关性。随着该拇指规则的应用,可以发现新的等熵和干燥的工作流体适用于给定的低温热源。另外,据证明了摩尔数量的重要性 - 通过能量工程师忽略了摩尔数量。

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