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徐朕, 赖颖, 梅国雄. 游泳池排水减压抗浮法及其数值模拟研究[J]. 岩土工程学报, 2013, 35(zk1): 451-455.
引用本文: 徐朕, 赖颖, 梅国雄. 游泳池排水减压抗浮法及其数值模拟研究[J]. 岩土工程学报, 2013, 35(zk1): 451-455.
XU Zhen, LAI Ying, MEI Guo-xiong. Numerical simulation of water-discharging pressure-relief technology on anti-floating of swimming pools[J]. Chinese Journal of Geotechnical Engineering, 2013, 35(zk1): 451-455.
Citation: XU Zhen, LAI Ying, MEI Guo-xiong. Numerical simulation of water-discharging pressure-relief technology on anti-floating of swimming pools[J]. Chinese Journal of Geotechnical Engineering, 2013, 35(zk1): 451-455.

游泳池排水减压抗浮法及其数值模拟研究

Numerical simulation of water-discharging pressure-relief technology on anti-floating of swimming pools

  • 摘要: 针对现有游泳池抗浮技术中存在的诸多不足之处,提出了“游泳池排水减压抗浮法”的概念及相应构造措施。在此基础之上,通过数值模拟的方法对几个影响排水减压抗浮法效果的重要因素,如肥槽厚度及透水性、池底垫层厚度及透水性、排水孔长度及布置方式,进行了规律性的研究。数值模拟结果表明,当位于一定厚度弱透水性土层之上的游泳池应用该抗浮技术时,为取得良好的抗浮效果,应当增大池底垫层的厚度及透水性,而减小肥槽厚度及其填充料的透水性。同时,排水管应当采用小直径、大数量的方式布置于游泳池底板边缘四周。

     

    Abstract: A concept and the corresponding construction measures for the water-discharging pressure-relief technology on anti-floating of swimming pools are proposed to remedy the defects in the existing anti-floating methods for swimming pools. On this basis, the FEM is adopted to simulate the anti-floating results affected by some important factors, such as thickness and permeability of fertilizer tank and cushion course, diameter and arrangement of drain-pipe. The numerical results show that when the pool structure is located on the soil with a certain thickness and weak permeability, it is necessary to increase the thickness and permeability of fertilizer tank and to decrease the thickness and permeability of cushion course in order to obtain good anti-floating results. Meanwhile, arranging the drain-pipes around the bottom of the swimming pool with the style of small diameter and large quantity is also good for the results of anti-floating method.

     

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