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An optimal lightweight foamed mortar mix suitable for tunnel drainage carried out using the composite lining method

机译:使用复合衬砌方法进行隧道排水的最佳轻质泡沫砂浆混合物

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In this paper, an optimal lightweight foamed mortar mix suitable is proposed for facilitating tunnel drainage carried out using the composite lining method. A physical performance evaluation and pore structure analysis is provided in order to assess the performance of different lightweight foamed mortar mix proportions with various void fractions and foam solution concentrations. Furthermore, on the basis of an in-plane permeability test that simulated the permeation of fines of soil leaking with underground water, the formation and distribution of open-cell foams by measuring the outflow characteristics and outflow volume for each mix of the nonwoven geotextile and lightweight foamed mortar, which are the existing tunnel drainage materials was examined. Consequently, a mix employing a foaming agent with a dilution rate of 2% (#1) showed a better drain performance than all the other mixes, because it had the most appropriately formed and distributed open-cell foams, the key component for tunnel drainage. In other words, the mix of dilution rate of 2% was thought to have achieved stable closed-cell foams because of the decline in the surface tension of the foams, as well as the optimal formation and distribution of open-cell foams that possess excellent permeability because of the cohesiveness between the foams. Moreover, the thickness (drainage space) of it was approximately 17 times that of the nonwoven geotextile, and because the closed-cell and open-cell foams were connected like a spider web, it could be expected to reduce the blocking of drainage caused by the fines of soil. (C) 2014 Elsevier Ltd. All rights reserved.
机译:在本文中,提出了一种适合于使用复合衬砌方法进行隧道排水的最佳轻质泡沫砂浆混合物。提供物理性能评估和孔结构分析,以评估具有不同空隙率和泡沫溶液浓度的不同轻质泡沫砂浆混合物比例的性能。此外,在模拟地下水渗漏的土壤渗透的面内渗透性测试的基础上,通过测量非织造土工布和非织造土工布的每种混合物的流出特性和流出量,形成开孔泡沫的形成和分布。对轻质泡沫砂浆进行了检查,这是现有的隧道排水材料。因此,使用发泡剂稀释率为2%(#1)的混合物比所有其他混合物均具有更好的排水性能,因为它具有最适当形成和分布的开孔泡沫,这是隧道排水的关键成分。换句话说,由于泡沫的表面张力下降,以及具有优异性能的开孔泡沫的最佳形成和分布,稀释率为2%的混合物被认为已获得稳定的闭孔泡沫。由于泡沫之间的内聚性,因此具有良好的渗透性。此外,其厚度(排水空间)约为非织造土工织物的厚度的17倍,并且由于闭孔泡沫和开孔泡沫的连接像蜘蛛网一样,因此有望减少由排水引起的排水阻塞土的罚款。 (C)2014 Elsevier Ltd.保留所有权利。

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