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Socio-environmental Framework for Integration of Thermal Mass Windcatchers with Lightweight Tensile Structures in Contemporary Hot-Arid Urban Context of Tehran

机译:德黑兰当代热干旱城市环境中热质捕蝇器与轻质拉伸结构整合的社会环境框架

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摘要

The integration of windcatchers in the urban context of hot-arid context of Tehran needs to address two changes in the current utilization: 1) high density context which makes it harder to access to sufficient airflow in the urban context, and 2) sociocultural shifts towards dependencies on modern mechanical air-conditioning systems. Windcatchers are unique tools existing in the hot-arid regions in the Middle East. Windcatcher uses thermal mass, evaporation techniques, and stack effect to deliver human comfort to the residents of the building. Vernacular windcatchers are useful for moderating the indoor air temperature. Yet, using natural ventilation techniques as passive strategies are outdated in recent decades and there are a couple of reasons for that such as maintenance difficulties, lack of urban air filtration methods, decline of cooling efficiency due to modified airflow patterns, habitable space utilization modifications, and dependencies on mechanical cooling systems. On the other hand, tensile structures have the potential to be considered as a tool to upgrade the windcatchers and use them in the modern urban context which will also help reducing energy and reviving local textile industry. This research tries to propose a method that emphasizes on the adaptability of windcatchers and tensile structures, inhabitant control, airflow control and reuse of heavy thermal mass. Also, the proposed model offers improvements for environmental performance of lightweight textiles, such as particulate matter filtration, kinetic energy transformation, and photoresponse for passive shading or natural daylighting strategies. The main goal of this research is to define the parameters required to enhance inhabitant adaptability with the windcatcher and also natural ventilation cooling system. In this research, important characteristics of Sangelaj neighborhood in Tehran are considered such as existing windcatcher dimensions, micro-climate conditions, and urban morphology. Then, different methods are proposed to develop the heat transfer and airflow analysis of the integration between windcatchers and tensile structures. The research suggests methods for adaptation of windcatchers in existing buildings of Tehran using tensile structures. It also proposes methods for the new buildings in the urban context of Sangelaj neighborhood in Tehran.
机译:德黑兰热风环境下城市中捕风者的整合需要解决当前利用方面的两个变化:1)高密度环境下,这使得在城市环境中更难获得充足的空气流通; 2)社会文化向对现代机械空调系统的依赖。捕风器是中东炎热地区的独特工具。 Windcatcher使用热质,蒸发技术和烟囱效应为建筑物的居民提供人性化的舒适感。白话风捕手有助于调节室内空气温度。但是,将自然通风技术用作被动策略在最近几十年已经过时了,其原因有很多,例如维护困难,缺乏城市空气过滤方法,由于气流模式改变而导致的制冷效率下降,可居住空间利用的改变,以及对机械冷却系统的依赖。另一方面,拉伸结构有潜力被视为升级捕风器的工具,并在现代城市环境中使用它们,这也将有助于减少能源并复兴当地的纺织工业。本研究试图提出一种强调捕风器和拉伸结构的适应性,居民控制,气流控制和重热物质再利用的方法。此外,提出的模型还改善了轻质纺织品的环境性能,例如颗粒物过滤,动能转化以及对被动遮阳或自然采光策略的光响应。这项研究的主要目标是定义所需的参数,以提高捕风者和自然通风冷却系统对居民的适应能力。在这项研究中,考虑了德黑兰Sangelaj街区的重要特征,例如现有的捕风器尺寸,微气候条件和城市形态。然后,提出了不同的方法来发展挡风装置与拉伸结构之间的集成的传热和气流分析。该研究提出了使用张拉结构适应德黑兰现有建筑物中的捕风装置的方法。它还提出了在德黑兰Sangelaj街区的城市环境中新建建筑物的方法。

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