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首页> 外文期刊>Journal of materials in civil engineering >Hydraulic Characterization of a Pervious Concrete for Deep Draining Trenches
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Hydraulic Characterization of a Pervious Concrete for Deep Draining Trenches

机译:深沟排水用透水混凝土的水力特性

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摘要

Reduction in pore water pressure is a useful strategy to improve the stability of slopes. Deep draining trenches can be used for this purpose. For the realization of deep trenches, the usual conventional construction techniques are not adequate and the use of adjacent vertical panels, built by means of the methods well-established for diaphragm walls, is necessary. However, unbonded materials (i.e.,gravels) cannot be used, because the excavation of a panel adjacent to one already built will cause instability. For this scope a bonded material such as pervious concrete can be used. It must have high permeability; filtering capacity, in order to prevent internal erosion of the soil in which the trench drain is installed; and sufficient shear strength after a short curing time to avoid the instability of adjacent previously built panels. This paper reports the hydraulic characterization of two mixtures of pervious concrete carried out in the laboratory. Hydraulic conductivity was measured in saturated conditions. Then, the water retention functions of the mixtures were experimentally deduced by investigating different calculation options and their impact on the simulation of seepage processes through an unsaturated soil mass, in which an ideal trench is located.
机译:降低孔隙水压力是提高边坡稳定性的有用策略。深排水沟可用于此目的。为了实现深沟槽,常规的常规建筑技术是不够的,并且必须使用通过为隔板墙充分建立的方法建造的相邻垂直面板。但是,不能使用未粘结的材料(例如,砾石),因为与已建好的一块相邻的面板的开挖会引起不稳定。对于这个范围,可以使用诸如渗透混凝土的粘结材料。它必须具有高渗透性;过滤能力,以防止对装有排水沟的土壤进行内部侵蚀;在较短的固化时间后具有足够的剪切强度,可避免相邻的先前建造的面板不稳定。本文报告了在实验室中进行的两种透水混凝土混合物的水力表征。在饱和条件下测量水力传导率。然后,通过研究不同的计算选项及其对通过理想沟渠所在的非饱和土体的渗流过程模拟的影响,通过实验推导了混合物的保水功能。

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