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Development and application of a new similar material for fluid-solid coupling model test

机译:一种新型类似材料的开发与应用液固耦合模型试验

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Correct selection of similar materials is key to geomechanical model tests. According to similarity theories, a novel similar material for the fluid-solid coupling model test was developed to solve problems of low similarity and poor stability. A similar material is mixed with calcium carbonate, white cement, paraffin, quartz sand, silicone oil, talc, and iron powder. Quartz sand and talc powder are the main materials; white cement, calcium carbonate, and paraffin are glue; silicone oil and iron powder are regulators. The effects of different mixing ratios on the compressive strength, permeability coefficient, and specific gravity were studied using a single factor analysis method. The main components controlling the material properties were determined through numerous laboratory tests. The experimental results show that the new material strength is controlled by cement, paraffin, and calcium carbonate. Its permeability coefficient can be adjusted by altering the ratio of silicone oil and paraffin. Its specific gravity is mainly affected by iron powder. The new material can simulate low-strength and medium-strength rock materials with different permeabilities, and it can effectively solve the problem that mechanical properties and nonhydrophilic properties cannot be satisfied simultaneously. The material was successfully applied in geological model tests of fault water inrush.
机译:正确选择类似材料是地质力学模型测试的关键。根据相似性理论,开发了一种用于流体固耦合模型试验的新型类似材料,以解决低相似性和稳定性差的问题。将类似的材料与碳酸钙,白色水泥,石蜡,石英砂,硅油,滑石和铁粉混合。石英砂和滑石粉是主要材料;白色水泥,碳酸钙和石蜡是胶水;硅氧烷油和铁粉是稳压因子。使用单因素分析方法研究了不同混合比对抗压强度,渗透系数和比重的影响。通过许多实验室测试确定控制材料特性的主要组分。实验结果表明,新材料强度由水泥,石蜡和碳酸钙控制。可以通过改变硅油和石蜡的比例来调节其渗透系数。其比重主要受铁粉的影响。新材料可以模拟具有不同渗透性的低强度和中强岩材料,可以有效地解决了不能同时满足机械性能和非水性特性的问题。该材料成功应用于故障涌水的地质模型试验。

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