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Tall buildings cluster form rationalization in a Nordic climate by factoring in indoor-outdoor comfort and energy

机译:通过考虑室内室外舒适和能量,高层建筑物集群在北欧气候中形成合理化

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Considering climate change, controlling outdoor microclimates is an increasingly pressing concern. Microclimates have a significant effect on both outdoor and indoor comfort, and on the energy efficiency of buildings. This concern is particularly important as current climate conditions reveal that warmer summers are threatening the comfort of pedestrians and causing overheating in office environments, which is consequently increasing cooling energy consumption. A further concern is that this trend now extends to Nordic latitudes.Existing literature demonstrates how a local microclimate depends on many factors such as urban density, shape and orientation of buildings, the types of materials present, the number of green areas and anthropogenic activities. However, there is little research focusing on how reciprocal distances among tall buildings, and their relative position, affect outdoor and indoor comfort, and the associated energy consumption of buildings. This paper presents a unique and comprehensive insight into the interconnected nature of indoor and outdoor comfort via coupled simulations.It presents a study of clusters of tall commercial buildings located in the Nordic climate of Tallinn (Estonia) with different microclimates, and shows that the differences are due to variable shadowing and reflections and different wind patterns. The results, which focus on summer conditions, show that small variations of cluster layout strongly affect the local indoor and outdoor comfort, thus highlighting the need to conduct both studies simultaneously in research aiming to increase pedestrian and indoor comfort and resource efficiency.(c) 2021 Elsevier B.V. All rights reserved.
机译:考虑到气候变化,控制户外微跨度是越来越强烈的关注。微跨度对户外和室内舒适度以及建筑物的能效具有显着影响。这种担忧尤为重要,因为目前的气候条件表明,温暖的夏天正在威胁到行人的舒适度并导致办公环境中的过热,因此导致冷却能耗增加。进一步的担忧是,这种趋势现在延伸到北欧纬度。提出文献表明,当地微气候如何取决于许多因素,例如城市密度,形状和建筑物的方向,存在的材料类型,绿色区域的数量和人为的活动。然而,几乎没有研究专注于高层建筑之间的互惠距离以及它们的相对位置,影响户外和室内舒适度以及建筑物的相关能耗。本文介绍了通过耦合模拟的室内和户外舒适性的相互连接的独特而全面的洞察。它提出了位于塔林(爱沙尼亚)北欧气候的高高商业建筑集群,具有不同的微观亚麻,表明差异是由于可变阴影和反射和不同的风模式。结果,它关注夏季条件,表明集群布局的小变化强烈影响当地室内和户外舒适性,从而强调需要同时进行这两个研究的研究,以提高行人和室内舒适度和资源效率。(c) 2021 Elsevier BV版权所有。

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