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Simulation of Sub-Drains Performance Using Visual MODFLOW for Slope Water Seepage Problem

机译:使用视觉模型模拟子排水率进行斜率水渗漏问题

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Numerical simulation technique was used for investigating water seepage problem at the Botanic Park Kuala Lumpur. A proposed sub-drains installation in problematic site location was simulated using Modular Three-Dimensional Finite Difference Groundwater Flow (MODFLOW) software. The results of simulation heads during transient condition showed that heads in between 43 m (water seepage occurred at level 2) until 45 m (water seepage occurred at level 4) which heads measurement are referred to mean sea level. However, elevations measurements for level 2 showed the values between 41 to 42 m from mean sea level and elevations for level 4 between 42 to 45 m from mean sea level. These results indicated an increase in heads for level 2 and level 4 between 1 to 2 m when compared to elevations slope at the level 2 and level 4. The head increases surpass the elevation level of the slope area that causing water seepage at level 2 and level 4. In order to overcome this problems, the heads level need to be decrease to 1 until 2 m by using two options of sub-drain dimension size. Sub-drain with the dimension of 0.0750 m (diameter), 0.10 m (length) and using 4.90 m spacing was the best method to use as it was able to decrease the heads to the required levels of 1 to 2 m.
机译:用于在植物园吉隆坡调查渗水问题的数值模拟技术。在有问题的网站位置的建议的分水渠安装使用模块化三维有限差分地下水流(MODFLOW)软件模拟。的仿真头瞬态条件期间的结果表明,在头43米之间(渗水发生在第2级),直到45米(渗水发生在第4级),该测量头被称为平均海平面。然而,升高的测量为2级显示从平均海平面和用于从平均海平面之间42 45米4水平高度之间41至42微米的数值。在电平2和电平4.头增加相比升高斜率时,这些结果表明对于在1至2米2级和4级中磁头的增加超过斜率区域的高度水平,在第2级导致渗水和4.水平为了克服这个问题,磁头水平需要通过使用副排水尺寸大小的两个选项是减少到1,直到2μm以下。副排水用的0.0750米(直径),0.10米(长),并使用4.90米间隔的尺寸是要使用的最佳方法,因为它是能够将头减少到1所要求的水平至2μm。

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