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Passive measures for preventing summer overheating in industrial buildings under consideration of varying manufacturing process loads

机译:考虑到制造过程负荷的变化,用于防止工业建筑物夏季过热的被动措施

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摘要

Industrial buildings implement retrofit measures to reduce energy demand for space conditioning, with primary focus given to heating loads, as they often lack cooling systems. An optimized refurbishment should be able though to tackle summer overheating, since studies indicate an increase in the frequency and intensity of hot days during summer. Furthermore production fluctuations have an impact on manufacturing process loads and thus internal heat gains, affecting building performance. If production levels alter in the long term, an initially satisfying option may fail to respond to the future conditions. This paper presents retrofit alternatives for a case study in Austria. A thorough picture of the initial state was achieved by measurements of indoor climate conditions. Based on a calibrated dynamic thermal simulation model, optimization measures and natural ventilation patterns were tested under current production levels and hypothetical future scenarios for their adequacy to minimize overheating without the installation of an active cooling system. Results were classified and evaluated by adaptive comfort and workplace regulation criteria, while differences between the two approaches were discussed. There are measure constellations diminishing overheating risk for all internal heat gain conditions, whose applicability can adapt to the prevailing needs of the facility at the time. (C) 2017 Elsevier Ltd. All rights reserved.
机译:工业建筑实施改造措施以减少空间调节的能源需求,主要侧重于加热负荷,因为它们通常缺乏冷却系统。经过优化的翻新工程应该能够解决夏季过热的问题,因为研究表明夏季炎热天气的频率和强度都会增加。此外,生产波动还会影响制造过程的负荷,进而影响内部热量的获取,从而影响建筑物的性能。如果生产水平长期变化,最初令人满意的选择可能无法应对未来的情况。本文介绍了奥地利案例研究的替代方案。通过测量室内气候条件,可以获得初始状态的详尽信息。基于已校准的动态热仿真模型,在当前的生产水平和假设的未来情景下,测试了优化措施和自然通风模式,以了解在不安装主动冷却系统的情况下,如何将过热程度降至最低。根据适应性舒适度和工作场所调节标准对结果进行分类和评估,同时讨论了两种方法之间的差异。有一些措施可以减少所有内部热量获取条件的过热风险,其适用性可以适应当时设施的主要需求。 (C)2017 Elsevier Ltd.保留所有权利。

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