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Drainage investigation of surface runoff for highway pavement

机译:公路路面径流排水调查

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The aim of this study is to establish the effect of heavy rainfall and the chosen pavement layers on the drainage design, material selection and rutting resistance of the flexible pavement. The test in present study was started with wheel track passing without load and without rain falling on the pavement for a period of time, and it was noticed that no distress appeared on the surface of the pavement. Then, the load is gradually added by using wheel track load of 106 psi for five tests without rain falling and five other tests with gradually increasing rain fall duration and intensity. Deterioration and distresses appeared on the pavement when increasing the wheel track load to (150 psi) under high intensity rain and long term duration of rain fall. By increasing the number of days, which is 103 days of study, when the pavement is saturated, the extra amount of the water will runoff. The clogging material which caused a decrease in the water seepage, increases the time of runoff ending. The clogging materials of fine particles that get deposited on the surface of the pavement resulted by passing the wheel track loading and wear & tear of the pavement surface, and other clogging materials such as salt in the water will penetrate to the pavement and seal the voids and decrease its water seepage. The water seepage decreases by increasing number of days, so the amount of the absorbed water decreases by 89% after 71 days of testing for high rain intensity (116 ml/min.).
机译:这项研究的目的是确定暴雨和选择的路面层对柔性路面的排水设计,材料选择和抗车辙性的影响。本研究中的测试是在一段时间内无负荷且没有雨水滑落在人行道上的情况下开始的,并且注意到在人行道表面未出现任何不适。然后,通过使用106 psi的轮轨负载对五个不带降雨的测试以及逐渐增加降雨持续时间和强度的五个其他测试逐渐增加负载。在高强度降雨和长期降雨的情况下,将轮迹负荷增加到(150 psi)时,人行道上会出现劣化和磨损。通过增加工作天数(即103天),当人行道饱和时,多余的水将流失。导致渗水减少的堵塞物会增加径流结束的时间。车轮轨道载荷和路面磨损会导致细小颗粒的堵塞物沉积在人行道表面,水中的其他堵塞物(例如盐分)会渗透到人行道并密封空隙并减少其渗水。渗水量随着天数的增加而减少,因此经过71天的高降雨强度(116毫升/分钟)测试后,吸收的水量减少了89%。

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