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Experimental work on improving the efficiency of storm networks using a new galley design filter bucket.

机译:用新的厨房设计滤波器提高风暴网络效率的实验工作。

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Storm networks, as with all urban infrastructure elements, are important to life in society. One of the most important problems facing such networks is the clogging of pipes due to sediment inlet into the sewage systems, which can cause flooding during heavy rain. This study aims to improve the efficiency of storm networks by using a new filter. In this study, a model of a network of pipes was built up to simulate rain flow over a street of two lanes. The first lane contained a filter and the second lane contained a manhole. The percentage of sediment passing from the manhole to the filter was calculated and compared in terms of the effects of several variables, such as the intensity of rainfall and the street slope. The results showed that the passing ratio from the filter to manhole was 0.28 at a low rain intensity of 30 mm/hr and 0.13 at a high rain intensity of 58 mm/hr. The passing ratio from filter to manhole was 0.21 and 0.12 for small and big lengths of filter, respectively, while the passing ratio at small and big bed slopes was 26 and 13, respectively.
机译:与所有城市基础设施元素一样,风暴网络对社会的生活很重要。面临这些网络的最重要问题之一是由于沉积物入口进入污水系统的管道堵塞,这可能导致大雨期间的洪水。本研究旨在通过使用新的过滤器来提高风暴网络的效率。在这项研究中,建立了一种管道网络的模型,以模拟两个车道街道上的雨水。第一通道包含过滤器,第二通道包含一个人孔。计算从人孔到过滤器的沉积物的百分比,并在若干变量的影响方面进行比较,例如降雨和街道斜坡的强度。结果表明,从过滤器到人孔的通过比率为0.28,低雨强度为30mm / hr,0.13,高雨强度为58mm / hr。对于小和大的过滤器的过滤器,过滤器的通过比例分别为0.21和0.12,而小和大床斜坡的流动比分别为26和13。

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