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Effect of thermal, acoustic, and lighting environment in underground space on human comfort and work efficiency: A review

机译:地下空间中热,声学和照明环境对人类舒适度和工作效率的影响:综述

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摘要

The development and utilization of underground spaces can ease the shortage of urban land resources, ensure urban safety, and improve the urban ecological environment. Human overall comfort and work efficiency in underground spaces are affected by several environmental factors, such as thermal, acoustic, and lighting. Owing to the particularities of an underground space at any given location, the guarantee of a comfortable indoor environment is different from that in aboveground buildings. Based on the thermal, acoustic and illumination characteristics of an underground space, the main differences between underground spaces and aboveground buildings, limitations of current standards/codes, and imperfections of internal environmental evaluation indicators are summarized and analyzed, and human comfort and work efficiency in terms of one-way and three-way interactions are discussed based on the literature published since 2000. The findings reveal that the current standards/ codes for underground spaces mainly refer to aboveground buildings. Where the parameter index is single, there exists a large difference between the underground environment and the design standard, and there is no evaluation index for human comfort in underground spaces. In the existing research, two methods have been adopted: field surveys and climate room experiments. These have mainly focused on the effects of thermal, acoustic, and lighting environment unidirectional control on personnel comfort, while only a few studies have been conducted on work efficiency. Research on the three-directional interactions involving thermal, acoustic, and lighting environments in underground spaces is lacking. The creation of a microenvironment based on local cooling and heating, and the technologies generated under the concepts of imitating the ground environment, imitating the natural environments, and thermal-acoustic-light coordinated control are expected to play important roles in the construction of underground space environments in the future, and lay the foundation for the construction of an ecological environment system in underground spaces.
机译:地下空间的开发利用可以缓解城市土地资源短缺,确保城市安全,完善城市生态环境。地下空间的人的整体舒适度和工作效率受到几种环境因素的影响,如热,声学和照明。由于任何特定位置的地下空间的特殊性,舒适的室内环境的保证与地上建筑物的保证不同。基于地下空间的热,声学和照明特性,地下空间和地上建筑物之间的主要差异,当前标准/代码的限制以及内部环境评估指标的缺陷,以及人类的舒适性和工作效率基于自2000年以来公布的文献讨论单向和三向互动的条款。该研究结果表明,地下空间的当前标准/代码主要是指地上建筑物。如果参数索引是单一的,地下环境与设计标准之间存在很大的差异,并且在地下空间中没有人类舒适度的评估指标。在现有的研究中,已经采用了两种方法:现场调查和气候室实验。这些主要集中在热,声学和照明环境对人员舒适的单向控制的影响,而只有几项研究已经在工作效率上进行。缺乏涉及热,声学和照明环境的三方向相互作用的研究。基于局部冷却和加热的微环境的创建,以及模仿地面环境的概念,模仿自然环境和热声光协调控制的概念产生的技术在地下空间的构建中起重要作用未来环境,并为地下空间建设生态环境系统的基础。

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