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首页> 外文期刊>Journal of Energy Resources Technology >Thermoeconomic diagnosis: Zooming strategy applied to highly complex energy systems. Part 2: On the choice of the productive structure
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Thermoeconomic diagnosis: Zooming strategy applied to highly complex energy systems. Part 2: On the choice of the productive structure

机译:热经济诊断:缩放策略适用于高度复杂的能源系统。第2部分:关于生产结构的选择

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The thermoeconomic diagnosis strategy introduced in the accompanying paper [Verda, V, Serra, L., Valero, A. 2004. Thermoeconomic Diagnosis: Zooming Strategy Applied to Highly Complex Energy Systems. Part 1: Detection and Localization of Anomalies. Part 1: The diagnosis procedure. ASME J. Energy Resour Technol. 127(1), pp. 42-49. This issue.] is a zooming technique consisting of a successive localization of anomalies. At each step the required productive structure to be adopted becomes even more detailed, focusing the analysis on a more specific part of the system. The detail of a productive structure has two different levels: the number of components and the number of productive flows. The first one is selected according to the precision desired in locating the anomalies. A larger number of components (or subsystems) allows one to locate the anomalies in smaller control volumes, providing more precise indications for maintenance. The number of flows is partially dependent on the number of components. Once the number of components is fixed, the productive flows can be increased by separating exergy into its components or introducing fictitious flows, such as negentropy (see, for example, C. A. Frangopoulos, Energy The International Journal 12(7), pp. 563-571 (1987)). This decision also affects the results of the thermoeconomic analysis when it is adopted for diagnosis purposes. In this paper, the effects of the productive structure on the diagnosis results are carefully analyzed. Depending on the selected productive structure, the accuracy of the diagnosis results can be significantly improved.
机译:随附的论文中介绍了热经济诊断策略[Verda,V,Serra,L.,Valero,A.2004。热经济诊断:应用于高度复杂能源系统的缩放策略。第1部分:异常的检测和定位。第1部分:诊断程序。 ASME J.能源技术。 127(1),第42-49页。此问题是一种缩放技术,由连续的异常定位组成。在每个步骤中,将采用的所需生产结构都将变得更加详细,从而将分析重点放在系统的特定部分。生产结构的细节有两个不同的层次:组成部分的数量和生产流程的数量。根据定位异常所需的精度选择第一个。大量的组件(或子系统)使人们可以在较小的控制量中定位异常,从而为维护提供更精确的指示。流的数量部分取决于组件的数量。一旦组成部分的数量固定,可以通过将火用分离成其组成部分或引入虚拟流(例如负熵)来增加生产流(例如,参见CA Frangopoulos,Energy The International Journal 12(7),pp.563- 571(1987)。当将该决定用于诊断目的时,该决定也会影响热经济分析的结果。本文仔细分析了生产结构对诊断结果的影响。根据所选的生产结构,可以显着提高诊断结果的准确性。

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