SITE BARRIER OPTIMIZATION ON INTEGRATING THERMAL COMFORT WITH NOISE PROPAGATION CONTROL

F. Samodra
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引用次数: 3

Abstract

The difference in geographical altitudes in tropical environment not only causes variations in climate and environment leading to influences on thermal comfort, but also effects on noise propagation variation. This study proposes the site barrier optimization and integrated control on thermal performance and environmental noise to reach the standards using ANSYS Fluent and MATLAB simulations method. The research locations are in Surabaya as the lowland area and Malang as highland area, all are representatives of tropical urban environment of Indonesia. The results highlighted that the minimum barrier distance to receiver for the lowest barrier height (1.5 m) for both thermal and noise improvement is 5.63 m. Meanwhile, at minimum distance for noise control (1.8 m), the minimum reference height of aperture is 1.02 m when it uses lowest barrier height.
热舒适与噪声传播控制相结合的场地屏障优化
热带环境中地理高度的差异不仅会引起气候环境的变化,从而对热舒适产生影响,还会影响噪声传播的变化。本研究采用ANSYS Fluent和MATLAB仿真的方法,对场地屏障进行优化,并对热工性能和环境噪声进行综合控制,使其达到标准。研究地点为泗水为低地区,玛琅为高地区,均为印度尼西亚热带城市环境的代表。结果表明,对于最低屏障高度(1.5 m),隔热和噪声改善的最小屏障距离为5.63 m。同时,在最小噪声控制距离(1.8 m)下,采用最低屏障高度时,孔径参考高度最小为1.02 m。
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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