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Permeability of a Macro-Cracked Concrete Effect of Confining Pressure and Modelling

机译:限制压力和建模的宏观破裂混凝土效应的渗透性

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摘要

The effects of confining pressure are investigated for two samples of a macro-cracked concrete. Samples are first macro-cracked with a splitting tensile strength test (Brazilian) technique. Gas permeability is continually measured under increasing (or decreasing) confining pressure, whereas crack closure (or opening) is recorded with an LVDT (Linear Variable Differential Transformer) device. Despite a mechanical closure of the macro-crack, identified at around 20 MPa confining pressure, gas permeability continues to decrease as confinement is increased. This means that a model of the macro-crack by two parallel planes (using Poiseuille law) cannot be used to represent permeability variations during closure (or opening) of cracks. As a consequence, a physical model is designed in order to simulate with a better consistency the real behaviour of the macro-crack. This simple modelling allows both behaviours, mechanical and hydraulic, under confining pressure, to be simulated with the same set of parameters.
机译:研究了限制压力的影响,对宏观裂纹混凝土的两个样品进行了研究。首先具有分裂拉伸强度试验(巴西)技术的宏观裂纹。在增加(或降低)限制压力下不断测量透气性,而裂纹闭合(或开口)被LVDT(线性可变差压变压器)装置记录。尽管宏观裂纹的机械闭合,但在约20MPa限制压力下识别,透气性继续下降,因为限制增加。这意味着两个平行平面(使用Poiseuille Lave)的宏裂缝模型不能用于代表裂缝闭合(或开口)期间的渗透性变化。因此,设计了物理模型,以便以更好的一致性来模拟宏观裂纹的真实行为。这种简单的建模允许用相同的一组参数模拟限制压力的行为,机械和液压。

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