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Experimental Research on the Properties of “Solid–Gas” Coupling Physical Simulation Similar Materials and Testing by Computer of Gas in Coal Rock

机译:“煤气”耦合物理模拟性质的实验研究与煤岩中的气体计算机计算机

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摘要

On the basis of research into solid similar materials, a similarity criterion applying to “solid–gas” coupling of gas in coal rock is presented according to the “solid–fluid” coupling similarity theory. With sand as the aggregate and paraffin and oil as the cementing agents, a kind of materials suitable for “solid–gas” coupling simulation experiment is developed. Through lots of experiments, physical mechanics of similar materials are tested, such as compressive strength, brittle parameter, and permeation rate. By resorting to the self-developed device, tests are also made on the seepage of specimens of similar materials containing cementing agents of different contents. The findings indicate that with the continuous rise of paraffin content, the compressive strength of materials is increasing accordingly, and the seepage is decreasing gradually; and the change of oil content helps eliminate the shortcoming that compressive strength is changing significantly when only paraffin is used. Rocks of different strengths and different seepages can be simulated through the reasonable adjustment of the proportions of paraffin and oil by computer. Under the precondition that mechanical parameters meet requirements of simulated rocks, the paper conducts a comparison between and experimental analysis of the seepage velocities of the developed new material and the original solid similar material, and draws the conclusion that the developed material can remarkably reduce the seepage velocity of gas in it. Meanwhile, the material is also applied to the model experiment of coal mining, and effectively reveals the relationship between gas seepage rate and overlying rock movement.
机译:在研究固体类似材料的基础上,根据“固体流体”耦合相似理论,提出了应用于煤岩中气体的“固液”耦合的相似性标准。用砂作为骨料和石蜡和油作为胶结剂,开发了一种适用于“固液”偶联模拟实验的材料。通过大量的实验,测试类似材料的物理机制,例如压缩强度,脆性参数和渗透率。通过求助于自主研发的装置,还在含有不同内容物的固井剂的类似材料的渗透上进行测试。结果表明,随着石蜡含量的连续上升,材料的抗压强度相应地增加,渗流逐渐减小;并且油含量的变化有助于消除缺陷,当使用石蜡时,抗压强度显着变化。可以通过合理调整计算机通过计算机的比例来模拟不同优点和不同渗漏的岩石。在机械参数满足模拟岩石的要求的前提下,该纸张进行了开发新材料的渗流速度与原始固体相似材料的渗流速度的比较和实验分析,并得出了发达的材料可以显着减少渗流的结论它的气体速度。同时,该材料也适用于煤矿的模型实验,有效地揭示了气体渗流率与覆盖岩运动之间的关系。

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