Measuring Sustainability of Kampong Tudong Riverside Settlements Using Urban Modeling Interface Simulation

Mutia Muyasarah, A. Kusumawanto
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Abstract

Coastal settlements are the most vulnerable area to climate change, which has had an increasing impact on natural changes and human life in recent years. Therefore, sustainable riverside settlement models need to be developed by maximizing welfare with minimal environmental damage through modeling simulations that can help understand, compare and evaluate buildings and settlements. Simulation of Kampong Tudong on the banks of Kapuas River used Urban Modeling Interface to analyze the floor area ratio, daylighting, operational energy, and mobility. The simulation results show values of 0.21 on Floor Area Ratio, 30% on average natural resources for building daylighting, 86 kWh/m2year on operational energy, and 66 on mobility. Meanwhile, the efficient standard values are <3.2 on FAR, 55% on average daylighting, 10.08-30 kWh/m2.year on operational energy, and 90-100 on mobility. Existing simulation values indicate that these values can still be improved and maximized further for the sustainability of the riverside settlements.
基于城市建模界面模拟的磅都东滨江聚落可持续性测度
沿海住区是最容易受到气候变化影响的地区,近年来气候变化对自然变化和人类生活的影响越来越大。因此,需要开发可持续的滨江住区模型,通过建模模拟来帮助理解、比较和评估建筑和住区,从而实现福利最大化和环境破坏最小化。利用Urban Modeling Interface对卡普亚斯河畔的甘榜都东进行模拟,分析容积率、采光、运营能源和机动性。模拟结果表明,建筑容积率为0.21,建筑采光平均自然资源为30%,运行能耗为86 kWh/m2年,机动性为66。同时,FAR效率标准值<3.2,平均采光55%,10.08-30 kWh/m2。运营能源年,机动性90-100年。现有的模拟值表明,这些值仍然可以进一步提高和最大化,以实现滨江聚落的可持续性。
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