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Targeting the cogeneration potential for Total Site utility systems

机译:瞄准Total Site Utility系统的热电联产潜力

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摘要

It is important to target the cogeneration potential of utility systems in the process of designing or retrofitting Total Site utility systems. Simulation software has been widely used in process design and analysis. However, it is rarely employed in estimating of the cogeneration potential of a utility system. A new method is presented in this paper for targeting the cogeneration potential of Total Site utility systems with a commercial software. The simulator is used to calculate the temperatures of steam mains, steam flowrates and shaft power rates. Shaft power generation by steam turbines in expansion zones are computed with the built-in simulation module. Compared to the existing approaches, the new method needs neither establishing iterative calculation, nor programming procedure, and it requires fewer parameters. For the illustrated case studies, the results obtained by this method are comparable to those obtained in the literature. It is shown that the calculation procedure proposed in this paper is simple, and the results obtained are accurate. In addition, the calculation of the steam turbine capital cost and environmental footprints are considered in the targeting procedure to provide decision makers with a more complete picture of the designed sites. This should allow them to efficiently screen and compare the major design options on the basis of both economic and environmental performance. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在设计或翻新Total Site公用事业系统的过程中,重要的是要针对公用事业系统的热电联产潜力。仿真软件已广泛用于过程设计和分析。但是,很少将其用于估算公用事业系统的热电联产潜力。本文提出了一种新方法,该方法可以利用商业软件针对Total Site Utility系统的热电联产潜力。该模拟器用于计算蒸汽主管的温度,蒸汽流量和竖井功率。内置模拟模块可计算膨胀区内蒸汽轮机的轴功率。与现有方法相比,该新方法不需要建立迭代计算,也不需要编程过程,并且需要更少的参数。对于所示的案例研究,通过这种方法获得的结果与文献中的结果相当。结果表明,本文提出的计算过程简单,计算结果准确。此外,在确定目标的过程中还考虑了汽轮机的资本成本和环境足迹的计算,以便为决策者提供设计地点的更完整的信息。这将使他们能够根据经济和环境绩效有效地筛选和比较主要的设计方案。 (C)2017 Elsevier Ltd.保留所有权利。

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