Thermal Impact Investigation of Shaded Opaque Walls in Bangkok

Thanun Srithongchai
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Abstract

The effectiveness of overhang shading devices in mitigating solar radiation on opaque walls is crucial for passive building design in tropical regions. However, opaque walls commonly are side-lined in shading design due to a preoccupation with insulation properties, appearance, and aesthetics. Unprotected walls exposed to solar radiation maximize heat gain, while shaded walls decrease external heat gain and indoor temperature, resulting in improved indoor thermal comfort and well-being. This research employs EnergyPlus and SPSS to investigate the optimal design of overhang shading devices for opaque walls in Bangkok, Thailand. The investigation is divided into two phases: (1) determination of the optimal depth-to-space ratio of overhang devices based on a parametric study of 12 overhang configurations; (2) an evaluation of the ratio in reducing solar radiation. The findings demonstrate a relationship between the device depths and the wall solar radiation and indoor temperature. The optimum depth-to-space ratio is suggested as 1:1.15, which can lower the annual average indoor temperature by 3.53% (1.18°C) compared to the benchmark design. Deeper shading device depths than the optimum depth-to-space ratio can be applied, with a slight improvement in protective performance (and commensurately increased costs). This research underscores the importance of overhang shading devices as a performance-improving strategy for buildings in the tropical climate of Thailand.
曼谷遮阳不透明墙的热影响调查
悬挑遮阳设备在不透明墙体上减少太阳辐射的效果对于热带地区的被动式建筑设计至关重要。然而,由于对隔热性能、外观和美观的关注,不透明墙体通常在遮阳设计中被忽视。暴露在太阳辐射下的无保护墙体会最大限度地增加热量,而有遮阳的墙体则会减少外部热量增加和降低室内温度,从而提高室内热舒适度和舒适度。本研究采用 EnergyPlus 和 SPSS 来研究泰国曼谷不透明墙体悬挑遮阳设备的优化设计。调查分为两个阶段:(1)根据对 12 种悬挑配置的参数研究,确定悬挑装置的最佳深度空间比;(2)评估该比例在减少太阳辐射方面的作用。研究结果表明,装置深度与墙面太阳辐射和室内温度之间存在关系。最佳深度空间比为 1:1.15,与基准设计相比,可将室内年平均温度降低 3.53%(1.18°C)。可以采用比最佳深度-空间比更深的遮阳设备,但保护性能会略有改善(成本也会相应增加)。这项研究强调了悬挂式遮阳设备作为改善泰国热带气候下建筑物性能策略的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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