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Sustainable noise control system design for building ventilation systems

机译:建筑通风系统的可持续噪声控制系统设计

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This article presents an integral approach to sustainable noise control system design for building ventilation systems in Hong Kong. This approach combines the analytic hierarchy process and life cycle analysis (LCA) to obtain a holistic view of the system performance in terms of human, economic, and environmental impacts. The approach was applied to the evaluation of various noise control systems including duct liners, silencers, semi-active noise control, and active noise control for ventilation systems. Although passive systems such as duct liners and silencers seem to consume more material resources than semi-active and active systems, the latter require sensors, controllers, resonators or loudspeakers, and electricity. In fact, the LCA showed little difference between the semi-active and active systems and the passive systems in term of resource depletion and carbon emission. As human impact and economic impact dominated the experts' views on sustainability, the analysed results indicated that the most sustainable design was duct liners, followed by silencers, active noise control, and semi-active noise control.
机译:本文提出了一种用于香港建筑通风系统的可持续噪声控制系统设计的整体方法。这种方法结合了层次分析法和生命周期分析(LCA),可以从人,经济和环境方面获得系统性能的整体视图。该方法已应用于评估各种噪声控制系统,包括管道衬里,消音器,半主动噪声控制和通风系统的主动噪声控制。尽管诸如管道衬套和消音器之类的无源系统似乎比半有源和有源系统消耗更多的材料资源,但后者需要传感器,控制器,谐振器或扬声器以及电力。实际上,LCA在资源消耗和碳排放方面显示出半主动和主动系统与被动系统之间的差异很小。由于人类影响和经济影响主导了专家对可持续性的看法,分析结果表明,最可持续的设计是风管衬里,其次是消音器,主动噪声控制和半主动噪声控制。

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