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Fluid-flow measurements in low permeability media with high pressure gradients using neutron imaging: Application to concrete

机译:使用中子成像技术在具有高压力梯度的低渗透性介质中进行流体流量测量:在混凝土中的应用

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This article focuses on a new experimental apparatus for investigating fluid flow under high pressure gradients within low-permeability porous media by means of neutron imaging. A titanium Hassler cell which optimises neutron transparency while allowing high pressure confinement (up to 50 MPa) and injection is designed for this purpose and presented here. This contribution focuses on the development of the proposed methodology thanks to some preliminary results obtained using a new neutron imaging facility named NeXT on the D50 beamline at the Institute Laue Langevin (Grenoble). The preliminary test was conducted by injecting normal water into concrete sample prepared and saturated with heavy water to take advantage of the isotope sensitivity of neutrons. The front between these two types of water is tracked in space and time with a combination of neutron radiography and tomography.
机译:本文重点介绍一种新的实验设备,该设备通过中子成像技术研究低渗透率多孔介质中高压梯度下的流体流动。为此目的设计了钛制Hassler电池,该电池可优化中子透明度,同时允许高压限制(最高50 MPa)和注入。由于在Laue Langevin研究所(格勒诺布尔)的D50射束线上使用了名为NeXT的新型中子成像设备获得了一些初步结果,因此该贡献着重于提出的方法的开发。初步测试是通过将普通水注入已制备并用重水饱和的混凝土样品中进行的,以利用中子的同位素敏感性。结合中子射线照相和层析成像技术,可以在时空上跟踪这两类水之间的前缘。

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