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地下开放型中间层空间在 TOD 综合体中的舒适性优化:以中国重庆为例。

Optimization of underground open intermediary space comfort in TOD complexes: A case study of Chongqing, China.

机构信息

College of Architecture and Urban Planning, Chongqing Jiaotong University, Chongqing, China.

Faculty of Architecture and Urban Planning, Chongqing University, Chongqing, China.

出版信息

Front Public Health. 2023 Feb 24;11:1108750. doi: 10.3389/fpubh.2023.1108750. eCollection 2023.

Abstract

Rapid urbanization drives social development, but at the same time brings sustainable development Rapid urbanization drives social development, but at the same time brings sustainable development advantages of expanding underground space and relieving urban traffic congestion. High quality TOD complexes with natural elements in the intermediary space have been considered as one of the important means to address sustainable urban development. Nevertheless, intermediary spaces in TOD complexes face various challenges, such as significant contradictory factors in their physical environment spaces. This study classifies the underground open intermediary space into four types according to the characteristics of TOD complexes. And for these four types'Cthe physical environment-generated by various influencing factors of planar geometric, three-dimensional geometric, and detailed construction elements-is simulated using a numerical simulation method based on a static Taguchi experiment. The results demonstrate that space shape is a primary influencing factor for luminous and thermal environments; the window-atrium ratio (W/A ratio) and hole-atrium ratio (H/A ratio) comprise contradictory factors between the luminous and thermal environments of these spaces; profile inclination angle and sunken plaza height are primary impact factors for the acoustic environment; and skylight type has minimal influence on the physical environment. On average, their luminous and acoustic environment comfort can be improved by 200%; whereas, their thermal environment comfort can be improved by 21% and the potential for optimizing it in their shallow space (underground space depth ≤ 10 m) is relatively low. Subsequently, the necessity of comfort optimization as the passive optimization design of underground open intermediary spaces' physical environment in TOD complexes in the future is discussed. Finally, the feasible path and prospect of how to improve the livability and comfort of the spatial physical environment of TOD complexes are discussed and prospected.

摘要

快速城市化推动了社会发展,但同时也带来了可持续发展的优势,如扩大地下空间和缓解城市交通拥堵。具有自然元素的高质量 TOD 综合体被认为是解决可持续城市发展的重要手段之一。然而,TOD 综合体中的中介空间面临着各种挑战,例如其物理环境空间存在显著的矛盾因素。本研究根据 TOD 综合体的特点,将地下开放中介空间分为四种类型。并针对这四种类型,采用基于静态田口实验的数值模拟方法,模拟了由平面几何、三维几何和详细构造元素等各种影响因素产生的物理环境。结果表明,空间形状是光热环境的主要影响因素;窗-中庭比(W/A 比)和孔-中庭比(H/A 比)是这些空间光热环境的矛盾因素;剖面倾斜角和下沉广场高度是声学环境的主要影响因素;天窗类型对物理环境的影响最小。平均而言,它们的光和声学环境舒适度可以提高 200%;而其热环境舒适度可以提高 21%,在浅层空间(地下空间深度≤10m)中优化的潜力相对较低。随后,讨论了未来 TOD 综合体地下开放中介空间物理环境舒适性优化作为被动优化设计的必要性。最后,探讨并展望了提高 TOD 综合体空间物理环境宜居性和舒适度的可行途径和前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c3a/10003338/3b6b9eff9faf/fpubh-11-1108750-g0006.jpg

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