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ANALYSIS ON RUNOFF CHARACTERISTICS OF DECENTRALIZED RAINWATER MANAGEMENT SYSTEM USING XP-SWMM SIMULATION

机译:基于XP-SWMM仿真的分散式雨水管理系统径流特征分析

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In recent years, impervious areas are increasing in residential zone as well as unsettled area with rapid urbanization and land use. Consequently, this phenomenon influences weak urban environmental compositions about climate change including urban flooding accidents. Therefore, a new paradigm on rainwater management is needed for sound and sustainable restoration of hydrological circulation. Recently, a novel rainwater management system has been developed and recommended for irrigation and flood control in Korea. Especially. P city is now planning a new rainwater management system adopting LID (Low Impact Development) techniques on a small scale development area. In this study, XP-SWMM was used to simulate effects on runoff characteristics by installation of 8 kinds of rainwater management facilities on small scale development area (4.2 ha) of P city in Korea. Also, flood control safety analysis under the condition of localized torrential downpour event was carried out and effects of rainwater recycling facility was evaluated to measure annual water resource amount and water cost reduction. Peak rate runoff was reduced 11.8% and 36.4% in restrict A and B, respectively. Total amount of annual water source substitution was estimated 3,000 m~2/yr with LID adoption in land use planning.
机译:近年来,随着城市化和土地利用的迅速发展,居住区和未定居区的防渗面积都在增加。因此,这种现象影响了包括气候泛滥事故在内的有关气候变化的脆弱的城市环境组成。因此,需要一种新的雨水管理范式,以合理,可持续地恢复水文循环。最近,韩国开发了一种新颖的雨水管理系统,并推荐用于灌溉和防洪。尤其。 P市现正计划在小规模开发区域采用LID(低影响开发)技术的新雨水管理系统。在这项研究中,XP-SWMM通过在韩国P市小规模开发区(4.2公顷)上安装8种雨水管理设施来模拟对径流特征的影响。此外,还进行了局部暴雨事件条件下的防洪安全分析,并评估了雨水循环利用设施的效果,以测量每年的水资源量和水成本的降低。限制区A和B的峰值速率径流分别减少了11.8%和36.4%。在土地利用规划中采用LID,估计每年的水源替代总量为3,000 m〜2 / yr。

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