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Development of a new graphical tool for calculation of exergy losses to design and optimisation of sub-ambient processes

机译:开发新图形工具,用于计算亚环境过程的设计和优化的漏洞损失

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This paper presents new graphical tools, which can quickly identify all thermal exergy losses occurring in process design particularly in condensers/evaporators of low-temperature processes. Although the Omega - H diagram is a powerful tool for getting insights about exergy losses in a Heat Exchanger Network, the calculation of the enclosed area is not straightforward due to the non-linearity of the curve. The Omega Composite Curves and Omega Grand Composite Curve developed in this research are new graphical tools that can be applied to any process, including sub-ambient processes. These curves are linear and all enclosed areas have a rectangular shape. So, all thermal exergy losses can readily be calculated and also necessary modifications to enhance the efficiency of refrigeration systems, either in new design or retrofit study can graphically be suggested. To demonstrate the capability of the new graphical tools, two ammonia refrigeration cycles (one single-stage and one three-stage) have been designed to fulfil the cooling demand of a sub-ambient process and achieve minimum shaft work requirements. The exergy loss associated with condensers/evaporators in the refrigeration cycle is directly calculated from the diagrams. Combining the new tools with mathematical programming, a new systematic procedure for the design and optimisation of sub-ambient processes is presented. A case study of a natural gas liquefaction process was used to demonstrate the application of the proposed procedure resulted in 24.9% lower shaft work consumption. This improvement was obtained by changing the composition of the mixed refrigerant. Also, in the third case study, the exergy loss within the refrigeration cycle of an industrial ammonia plant decreased by 15.31% by applying the suggested procedure to optimise the refrigeration levels. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本文提出了新的图形工具,可以快速识别工艺设计中发生的所有热驱动损失,特别是在低温过程的冷凝器/蒸发器中。虽然OMEGA-H图是一种强大的工具,用于在热交换器网络中获得关于高度损失的洞察力,由于曲线的非线性,所封闭区域的计算并不直接。在本研究中开发的Omega复合曲线和Omega Grand复合曲线是可以应用于任何过程的新图形工具,包括子环境过程。这些曲线是线性的,并且所有封闭区域都具有矩形形状。因此,所有热驱动损失都可以容易地计算,并且还可以在新设计或改造研究中提高制冷系统效率的必要修改,以图形地建议。为了证明新的图形工具的能力,旨在实现两个氨制冷循环(一个单级和一级),以满足亚环境过程的冷却需求,并实现最小轴工作要求。与制冷循环中的冷凝器/蒸发器相关联的漏洞直接从图中计算。将新工具与数学编程相结合,提出了一种新的系统过程,用于子环境过程的设计和优化。采用对天然气液化过程的案例研究证明了所提出的程序的应用,导致轴工作消耗下降了24.9%。通过改变混合制冷剂的组成来获得这种改进。此外,在第三种案例研究中,通过应用建议的程序优化制冷水平,在工业氨植物的制冷循环内降低了15.31%。 (c)2020 elestvier有限公司保留所有权利。

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