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Experimental and numerical investigation of drainage mechanisms at sports fields under simulated rainfall

机译:模拟降雨下运动场排水机制的实验与数值研究

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摘要

Infiltration and drainage are complex hydrological considerations to determine unsaturated flow processes in case of irrigation, root growth and pollutant transport in porous media consisting of multi-layered soils. Considering sports fields, this affects the quality of sports organization in terms of player's health, the participation of spectators and the cancellation of games. This study investigated the drainage behavior of sports fields both experimentally and numerically under simulated rainfall. To achieve this goal, a newly-developed experimental setup which consists of a rainfall simulator (RS) that is able to simulate the natural rainfall, and a drainage tank (DT) that is able to pack stratified drainage layers same as in the sports fields were used. Experimental rainfall hyetographs were designed to simulate various rainfall conditions for the relevant region in Istanbul, Turkey. Numerous experiments were conducted to investigate hydrological description of unsaturated flow by using packed drainage layers in the laboratory. Time-dependent water contents were also monitored using soil moisture sensors (10-HS, Decagon Devices) at different depths in the drainage layers. Soil water retention curve (SWRC) of each drainage layer obtained from calibration tests and empirical parameters (a, n) were optimized with HYDRUS-3D model by using water contents and suction pressure results. Observed drain outflow hydrographs were compared with simulated drain outflow hydrographs by using statistical indices of Nash-Sutcliffe Efficiency (NSE) index, Kling and Gupta Efficiency (KGE) index and determination coefficient (R-2). Experimental results and HYDRUS-3D simulations showed good compatibility with the values of NSE, KGE and R-2 varied between 0.859-0.958, 0.594-0.972 and 0.868-0.975, respectively. In the present study, experimental and numerical investigation of the drainage mechanisms for sports fields was evaluated by considering unsaturated flow characteristics through the different drainage layers.
机译:渗透和排水是复杂的水文考虑因素,以确定在多孔介质中的灌溉,根生长和污染物转运中的不饱和流程,由多层土壤组成。考虑到运动场,这影响了运动员的健康,观众参与和取消游戏的体育组织的质量。本研究在模拟降雨下实验和数值研究了体育场的排水行为。为了实现这一目标,一个新开发的实验设置,由降雨模拟器(RS)组成,能够模拟自然降雨,以及能够将分层排水层包装与运动场相同的排水罐(DT)被使用了。实验降雨杂文设计用于模拟土耳其伊斯坦布尔相关地区的各种降雨条件。进行了许多实验以研究实验室中的填充排水层对不饱和流的水文描述。使用在排水层中的不同深度处的土壤湿度传感器(10-HS,DECAGON装置)监测时间依赖性水含量。通过使用水含量和吸入压力结果,通过湿法 - 3D模型优化了从校准试验和经验参数(A,N)获得的每个排水层的土壤保险曲线(SWRC)。将观察到的漏极流水量与模拟漏极流过水文进行比较,通过使用NASH-Sutcliffe效率(NSE)指数,Kling和Gupta效率(KGE)指数和测定系数(R-2)进行统计索引。实验结果和肼 - 3D模拟表现出与NSE,KGE和R-2的值相容,分别在0.859-0.958,0.594-0.972和0.868-0.975之间变化。在本研究中,通过考虑通过不同的排水层的不饱和流动特性来评估运动场排水机构的实验和数值研究。

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