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首页> 外文期刊>Journal of Cleaner Production >An energy-saving bottleneck diagnosis method for industrial system applied to circulating cooling water system
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An energy-saving bottleneck diagnosis method for industrial system applied to circulating cooling water system

机译:一种适用于循环冷却水系统的工业系统节能瓶颈诊断方法

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摘要

Research on energy-saving retrofits of the existing industrial systems can effectively improve the systems' energy-saving level and increase company revenue. The energy-saving bottleneck diagnosis for systems is the foundation of the energy-saving retrofit design. The diagnosis also aims to yield a more targeted energy-saving retrofit, thus ensuring the energy-saving effect and investment income of the transformation project. Therefore, this paper proposes a new method to diagnose the energy-saving bottleneck of the existing industrial systems. First, the energy-saving bottleneck diagnosis is decomposed into two parts: the diagnosis of energy-saving bottleneck units and the diagnosis of energy-saving bottleneck factors. Then, the energy density decomposition method is improved and a multi-mode energy efficiency density decomposition method is proposed. Next, an energy-saving bottleneck diagnosis method for industrial systems based on multi-mode energy efficiency density decomposition and an orthogonal test method is proposed. The proposed method can analyze the energy-saving potential of existing systems, accurately locate energy-saving bottlenecks, and avoid the dependence on a large amount of expert experience or complete production data in the existing methods. Finally, the proposed method is applied to an actual circulating cooling water system and the system energy-saving bottleneck diagnosis is realized, thus verifying the practicability of the method. (C) 2019 Elsevier Ltd. All rights reserved.
机译:现有工业系统节能改造的研究可以有效地改善系统节能水平,增加了公司收入。系统的节能瓶颈诊断是节能改造设计的基础。诊断还旨在产生更具针对性的节能改造,从而确保转型项目的节能效果和投资收入。因此,本文提出了一种诊断现有工业系统节能瓶颈的新方法。首先,节能瓶颈诊断分解为两部分:节能瓶颈的诊断和节能瓶颈因素的诊断。然后,提高了能量密度分解方法,提出了一种多模能效密度分解方法。接下来,提出了一种基于多模式能效密度分解的工业系统节能瓶颈诊断方法和正交试验方法。该方法可以分析现有系统的节能潜力,准确地定位节能瓶颈,避免对现有方法中的大量专家体验或完整的生产数据的依赖。最后,将所提出的方法应用于实际的循环冷却水系统,并且实现了系统节能瓶颈诊断,从而验证了方法的实用性。 (c)2019 Elsevier Ltd.保留所有权利。

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