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Analysis of the complementary energy losses of a high temperature gas to gas heat exchanger based on a solid intermediate medium

机译:基于固体中间介质的高温气-气换热器互补能量损失分析

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This paper focuses on the analysis of the complementary energy losses of a gas to gas heat exchanger using an intermediate medium with high thermal capacity to transfer heat between two gas streams at different pressure. In fact, such a heat exchanger requires two mechanical devices, namely a pressurization system capable of transferring the particles from a low pressure to a high pressure environment, and a depressurization system, for the inverse procedure. The operating procedures of these two key components are presented in detail and a simple zero-dimensional approach is also proposed to model both systems. A numerical analysis, based on the same zero-dimensional model, is performed in order to evaluate all energy losses related to the pressurization and depressurization procedures. A further energy loss is analysed, in particular the one related to the energy absorbed by the conveyor employed to deliver back the particles from the bottom to the top of the plant in order to realize a continuous operation mode.
机译:本文着重分析使用具有高热容量的中间介质在不同压力下在两种气流之间传递热量的气体到气体热交换器的互补能量损失。实际上,这样的热交换器需要两个机械装置,即能够将颗粒从低压环境转移到高压环境的加压系统和用于逆过程的减压系统。详细介绍了这两个关键组件的操作过程,并且还提出了一种简单的零维方法来对两个系统进行建模。为了评估与加压和减压程序有关的所有能量损失,在相同的零维模型的基础上进行了数值分析。分析了另一种能量损失,特别是与由输送机吸收的能量有关的能量损失,该输送机用于将颗粒从工厂的底部输送回顶部,以实现连续运行模式。

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