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Novel Computer-Controlled Saturation of Dynamic Centrifuge Models Using High Viscosity Fluids

机译:使用高粘度流体的动态离心机模型的新型计算机控制饱和

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The practice of saturating centrifuge models with a highly viscous pore fluid is widely used. As the fluid saturates the model, care must be taken to ensure that the hydraulic gradients are not too high to cause excessive disturbance to the model. A new computer-controlled saturation system (CAM-Sat) has been developed and implemented at the University of Cambridge to aid the saturation of soil models with a high viscosity pore fluid. Models are saturated under vacuum and pore fluid enters through ports in the model's base. The system controls the ingress of pore fluid into the model by monitoring the fluid mass flux and then altering the pressure drop between a reservoir of pore fluid and the model. The system was found to be stable across a wide range of fluid viscosities and sand types. A further test showed that the system was able to respond to changes in mass flux demanded by the researcher.
机译:用高粘性孔隙流体饱和离心机模型的实践被广泛使用。当流体使模型饱和时,必须注意确保水力梯度不会过高而对模型造成过度干扰。剑桥大学已经开发并实施了一种新的计算机控制的饱和系统(CAM-Sat),以帮助高粘度孔隙流体对土壤模型进行饱和。模型在真空下已饱和,孔隙流体通过模型底部的端口进入。该系统通过监视流体质量通量,然后更改孔隙流体储层和模型之间的压降,来控制孔隙流体进入模型。发现该系统在各种流体粘度和沙子类型下都是稳定的。进一步的测试表明,该系统能够响应研究人员要求的质量通量变化。

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