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Determination of optimum insulation thickness for environmental impact reduction of pipe insulation

机译:确定最佳保温层厚度以减少环境对管道保温层的影响

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This paper reports on the use of a new method to evaluate the optimal insulation thickness according to life cycle assessment (LCA) in pipe insulation applications. In this study, the optimum insulation thickness in the pipes is analysed based on two different methods (life cycle assessment - LCA and life cycle cost - LCC) used to determine the optimum insulation thickness for the environmental impact reduction of pipe insulation. Thus, the LCC analysis is used to evaluate the accuracy of this new method; data are collected from the insulation and energy markets, and the results are compared. The effects on the environmental and cost parameters of insulation thickness are also discussed in detail. The results indicate that the total environmental impacts are almost the same values in both methods, whilst the optimum insulation thickness is overestimated by up to eight-fold in the LCA analysis. As a result, the LCC analysis can be used in the determination of the optimum insulation thickness; however, it must be supported with the LCA analysis for environmental impact reduction. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文报告了一种新方法的使用,该方法根据管道绝缘应用中的生命周期评估(LCA)来评估最佳绝缘厚度。在这项研究中,基于两种不同的方法(生命周期评估-LCA和生命周期成本-LCC)对管道中的最佳绝缘厚度进行了分析,这些方法用于确定减少管道绝缘对环境的影响的最佳绝缘厚度。因此,LCC分析被用来评估这种新方法的准确性。从绝缘和能源市场收集数据,并比较结果。还详细讨论了绝缘厚度对环境和成本参数的影响。结果表明,两种方法的总环境影响几乎相同,而在LCA分析中,最佳绝缘厚度被高估了八倍。因此,LCC分析可用于确定最佳绝缘厚度。但是,必须通过LCA分析来支持它以减少环境影响。 (C)2016 Elsevier Ltd.保留所有权利。

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