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首页> 外文期刊>International Review for Spatial Planning and Sustainable Development >Runoff Behavior on Urban Road Intersection based on Flow Profile Simulation
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Runoff Behavior on Urban Road Intersection based on Flow Profile Simulation

机译:基于流量剖面模拟的城市道路交叉口径流行为

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There have been various technologies developed to solve the inundation problem that occurs in almost all urban areas. Some of these technologies, such as low impact development (LID), are developed through the concept of source control. The first step of LID practice is to know the runoff behavior on a certain surface of an area, following that, the LID practice is then designed. One of the objectives of LID is to decrease inundation depth on the road. This study aims to learn the profile and behavior of storm water flow along roads before they reach an intersection of a road system in Purwantoro region, Malang City, Indonesia. The study design consisted of field measurements and analytical activities as follows: determination of the independent and dependent variables; field measurements and data collection; simulation of flow profiles with various return periods of rainfall using Hydraulic Simulation Model HEC-RAS ver. 4.1; and verification of the simulation result of flow profiles using observation data. This research concluded that slopes on the branch road and runoff discharge on the main road significantly influenced flow depth at the road intersection. The relationship was expressed by power equations. In contrast, the runoff velocity at the branch road was more influenced by the discharge on the branch road and the main road, and the relationship followed a linear equation. A further study is required to decrease the runoff discharge on the road using LID technology such as concrete block pavement as a replacement for asphalt pavement.
机译:已经开发出各种技术来解决几乎在所有城市地区发生的淹没问题。其中一些技术(例如低影响开发(LID))是通过源代码控制的概念开发的。 LID练习的第一步是了解区域某个表面上的径流行为,然后设计LID练习。 LID的目标之一是减少道路上的淹没深度。这项研究的目的是在印度尼西亚玛琅市Purwantoro地区,了解雨水沿着道路流到道路系统的交叉点之前的形貌和行为。研究设计包括以下领域的现场测量和分析活动:确定自变量和因变量;实地测量和数据收集;液压模拟模型HEC-RAS ver。可以模拟各种降雨返回期的流量剖面。 4.1;使用观测数据验证流场的模拟结果。该研究得出的结论是,支路的坡度和主路的径流流量显着影响道路交叉口的流量深度。该关系由幂方程表示。相反,支路的径流速度受支路和主路流量的影响更大,其关系遵循线性方程。需要进行进一步的研究以使用LID技术(例如混凝土砌块路面替代沥青路面)来减少道路上的径流量。

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