The Effect of Variations in Drainage on Infiltration Rates in Pore Cylindrical Drainage

Nhi Thrinch, H. Thung
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Abstract

Inundation and floods are caused by a combination of factors including lower rain catchment areas, decreasing infiltration rates, and an uneven distribution of rainfall throughout the year, which all combine to create flooding and inundation issues. The alternative option is to install an efficient drainage system that is ecologically friendly, since in addition to its role of accommodating and draining water, it also has the additional purpose of absorbing water into the subsurface soil layer. A pore hole is created at the bottom of the drainage channel in order for the water to be absorbed. There was a desire to investigate the impact of soil texture on the rate of infiltration, therefore this research was conducted. Three kinds of soil were utilized as infiltration medium, namely sandy loam, loam, and clayey loam, all of which were found in the surrounding area. In addition, there are three variants of hole spacing, namely 16 cm, 32 cm, and 48 cm, as well as three variations of flow rate, namely 400 cm3/s, 1500 cm3/s, and 2500 cm3/s, among others. As a consequence of laboratory studies, it has been shown that the impact of changes in flow rate on infiltration discharge is inversely proportional to the flow rate, i.e., the higher the flow rate, the smaller the infiltration discharge that occurs. The reason for this is because it is influenced by the flow velocity
孔隙柱状排水中不同排水方式对入渗速率的影响
淹没和洪水是由多种因素共同造成的,包括集水区面积减少、入渗率下降以及全年降雨量分布不均匀,所有这些因素共同造成了洪水和淹没问题。另一种选择是安装一个生态友好的高效排水系统,因为除了容纳和排水的作用外,它还有将水吸收到地下土壤层的额外目的。在排水通道的底部形成孔,以便水被吸收。人们希望研究土壤质地对入渗速率的影响,因此进行了这项研究。利用三种土壤作为入渗介质,即砂壤土、壤土和粘壤土,这些土壤在周边地区都有发现。此外,井距有16 cm、32 cm、48 cm三种变化,流量有400 cm3/s、1500 cm3/s、2500 cm3/s三种变化。实验室研究表明,流量变化对入渗流量的影响与流量成反比,即流量越大,入渗流量越小。这是因为它受流速的影响
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