STRUCTURAL PERFORMANCE OF STORMWATER MODULE UNDER UNIAXIAL LOAD

Yeong Huei Lee, S. Chai, Mohd Hidayat Abdul Rani, J. Ngu
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Abstract

Geocellular plastic units or stormwater modules are popular to replace conventional drainage systems due to land limitations of urbanization. Most research focuses on stormwater management rather than its mechanical properties. Several cases were discovered where the failure was not due to material or manufacturing quality. As there is a lack on information of structural behaviour, this paper presents an experimental study of performance for stormwater modules under uniaxial load. There are four specimens for vertical load test and one for lateral load test. The vertical and lateral loads are applied separately to the specimens and the deflections are measured. From the obtained results, it is found that the module is able to resist 87.3486 kN and exhibits 12.3551 mm in vertical load direction. The column buckling is the failure mode of these specimens, and it is within the design limit of ASSTHO HS20 unfactored traffic load design. For lateral load, it can go up to 19 kN resistance, which is equivalent to a 3-meter depth design for the worst scenario with wet clay. The specimen is found to have failed in the excessive deflection which leads to the facture of the side cover. Further consultation is required in the detailed design using these stormwater modules underneath roads, buildings or car parks in order to obtain a more reliable stormwater management system.
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单轴荷载作用下雨水模块的结构性能
由于城市化的土地限制,土工细胞塑料单元或雨水模块被广泛用于取代传统的排水系统。大多数研究的重点是雨水管理,而不是其力学特性。有几个案例发现,失败不是由于材料或制造质量。由于缺乏有关结构性能的信息,本文对单轴荷载作用下雨水模块的性能进行了试验研究。竖向荷载试验用4个试件,横向荷载试验用1个试件。竖向和侧向荷载分别施加于试件上,并测量试件的挠度。结果表明,该构件的抗载荷能力为87.3486 kN,竖向荷载方向为12.3551 mm。柱屈曲是试件的破坏模式,在ASSTHO HS20无因子交通荷载设计的设计极限内。对于横向荷载,其阻力可达19 kN,相当于湿粘土最坏情况下3米深度设计。发现试样在过度挠曲中失效,导致侧盖断裂。在详细设计中使用这些雨水模块在道路、建筑物或停车场下,需要进一步咨询,以获得更可靠的雨水管理系统。
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RETRACTION NOTE TO: ASSESSING SEISMIC SOIL LIQUEFACTION POTENTIAL USING MACHINE LEARNING APPROACH EFFECT OF ADDITION OF CaO ON COMPRESSIVE STRENGTH OF HIGH-VOLUME FLY ASH CONCRETE EDITORIAL SCOPE – WASTE MANAGEMENT AND RECYCLING MATLAB PROGRAM FOR RATING SOILS BASED ON ENGINEERING BEHAVIOURS NONLINEAR LATERAL RESPONSE OF PILE GROUP IN CLAY USING THE MODIFIED CAM CLAY SOIL MODEL
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