为了研究瓦斯压力对煤样力学性质的影响,以RMT-150C型岩石力学试验机为载体,研发单轴压缩条件下含瓦斯煤岩受载变形破坏试验装置,设计不同瓦斯压力下煤样单轴压缩试验,并采用岩石破裂与失稳分析系统(rock fracture process analysis,RFP...为了研究瓦斯压力对煤样力学性质的影响,以RMT-150C型岩石力学试验机为载体,研发单轴压缩条件下含瓦斯煤岩受载变形破坏试验装置,设计不同瓦斯压力下煤样单轴压缩试验,并采用岩石破裂与失稳分析系统(rock fracture process analysis,RFPA)2D软件通过设置不同渗透参数,实现不同瓦斯压力煤样单轴压缩条件下受载破坏模拟试验。结果显示:1)室内试验发现,随着瓦斯压力的增加,煤样的抗压强度与弹性模量均呈降低趋势,瓦斯压力由0 MPa增加到2 MPa,煤样的抗压强度和弹性模量分别降低58.78%和49.03%;2)煤样的破坏是由微裂隙的发育、发展直至贯通形成宏观裂隙导致的;3)随着不同瓦斯瓦力的增加,模拟试样的峰值强度和弹性模量都呈现降低的趋势,模拟结果与试验结果表现的规律一致。展开更多
The possibility of using of a pair of compression piston - cylinder with the unique performance features for the conversion of hydrocarbons are discusses. The experimental facility enables working in the pressure rang...The possibility of using of a pair of compression piston - cylinder with the unique performance features for the conversion of hydrocarbons are discusses. The experimental facility enables working in the pressure range that would be unattainable in diesel engines. The necessary degree of compression is managed and maintained by the computer system with a feedback.展开更多
文摘The possibility of using of a pair of compression piston - cylinder with the unique performance features for the conversion of hydrocarbons are discusses. The experimental facility enables working in the pressure range that would be unattainable in diesel engines. The necessary degree of compression is managed and maintained by the computer system with a feedback.