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Evaluation of a Self-Heat Recuperative Thermal Process Based on Thermodynamic Irreversibility and Exergy

机译:基于热力学不可逆和火用的自热回热过程评估

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摘要

In this paper, an exergy analysis and a calculation method for a self-heat recuperative thermal process are described. Self-heat recuperation technology has recently been developed and has the characteristics whereby total process heat can be recirculated within the process, leading to a marked reduction in energy consumption. Although this technology can achieve perfect heat circulation in the process, the minimum energy required for the thermal process has not previously been described. According to both the theoretical and graphical analyses in this paper, self-heat recuperative thermal processes can achieve energy requirements close to the energy required for heat transfer from an exergy point of view. In addition, the simple calculation method for the minimum energy required for heat transfer was derived to be fixed as a target value of heat recovery technology. Thus, this technology supports process intensification and is promising for industry to examine the energy saving potential when designing a thermal process.
机译:本文介绍了自热回热过程的火用分析和计算方法。自热回热技术最近得到了发展,其特点是可以将整个过程中的热量在过程中进行再循环,从而显着降低能耗。尽管此技术可以在过程中实现完美的热循环,但是以前没有描述热过程所需的最小能量。根据本文的理论和图形分析,从火用角度来看,自热换热过程可实现的能量需求接近传热所需的能量。另外,推导传热所需的最小能量的简单计算方法被确定为热回收技术的目标值。因此,该技术支持过程强化,并且对于工业界在设计热过程时检查节能潜力很有希望。

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