Ma Chunde, Wang Zihe, Xu Jiaqing, Tan Guanshuang, Lv Zhihai, Zhu Quanqi
School of Resources and Safety Engineering, Central South University, Changsha 410083, China.
Institute of Mechanics for Engineering Materials, Advanced Research Center, Central South University, Changsha 410083, China.
Sensors (Basel). 2022 Sep 7;22(18):6776. doi: 10.3390/s22186776.
In this study, a measurement system for gas generation of coal-rock under temperature-pressure coupling was developed by adding gas extraction, collection, and flow-monitoring devices to the original stainless-steel liquid seepage pipeline of an MTS-815 rock triaxial testing machine, which can be used to study the production mechanism of coalbed methane in a real geological environment. The system has the functions of axial loading, confining pressure loading, continuous heating, gas gathering, etc., and has the advantages of good air tightness, high accuracy and stability, long-term loading and heating, and controllable single variables. The preliminary test for the gas production of anthracite in the Shaanxi Formation of the Qinshui Basin under temperature-pressure coupling was carried out by the developed test system. The results show that the test system can provide accurate and effective measurement means for the study of gas production by coal-rock deformation and is expected to provide effective help for the control and exploitation of coalbed methane.
在本研究中,通过在MTS - 815岩石三轴试验机原有的不锈钢液体渗流管道上增加瓦斯抽采、收集和流量监测装置,开发了一种温度 - 压力耦合作用下煤岩瓦斯生成测量系统,该系统可用于研究真实地质环境中煤层气的生成机制。该系统具有轴向加载、围压加载、连续加热、瓦斯聚集等功能,具有气密性好、精度高、稳定性好、长期加载和加热、单变量可控等优点。利用所开发的试验系统对沁水盆地山西组无烟煤在温度 - 压力耦合作用下的产气情况进行了初步试验。结果表明,该试验系统可为煤岩变形产气研究提供准确有效的测量手段,有望为煤层气的防治与开采提供有效帮助。