期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
烟花爆竹用烟火药剂时间—压力测试研究 被引量:1
1
作者 张光辉 谭爱喜 +2 位作者 江资成 邱昭树 肖家勇 《检验检疫学刊》 2010年第4期9-11,共3页
根据联合国《关于危险货物运输的建议书——试验手册》(小橙皮书)的要求,建立了烟火药剂时间-压力测试系统,对不同烟火药剂进行了测试,获得的试验结果对黑药、白药判定提供了试验数据,为烟花爆竹危险性分级提供了依据。
关键词 烟火药 时间—压力测试 黑药 白药 危险性分级
下载PDF
Rules for confidence intervals of permeability coefficients for water flow in over-broken rock mass 被引量:7
2
作者 Liu Weiqun Fei Xiaodong Fang Jingnian 《International Journal of Mining Science and Technology》 2012年第1期29-33,共5页
Based on the steady-state seepage method, we used the Mechanical Testing and Simulation 815.02 System and a self-designed seepage instrument for over-broken stone to measure seepage properties of water flows in three ... Based on the steady-state seepage method, we used the Mechanical Testing and Simulation 815.02 System and a self-designed seepage instrument for over-broken stone to measure seepage properties of water flows in three types of crushed rock samples. Three methods of confidence interval in describing permeability coefficients are presented: the secure interval, the calculated interval and the systemic interval. The lower bound of the secure interval can be applied to water-inrush and the upper bound can solve the problem of connectivity. For the calculated interval, as the axial pressure increases, the length of confidence interval is shortened and the upper and lower bounds are reduced. For the systemic interval, the length of its confidence interval, as well as the upper and lower bounds, clearly vary under low axial pressure but are fairly similar under high axial pressure. These three methods provide useful information and references for analyzing the permeability coefficient of over-broken rock. 展开更多
关键词 Over-broken rock mass Permeability coefficient Secure interval Calculated interval Systemic interval
下载PDF
Effect of aeration on fast gas pressure tests
3
作者 CHEN Yu-jia JIANG Cheng-lin LI Xiao-wei TANG Jun WANG Chen YANG Fei-long WANG Fa-kai ZHANG Chao-jie DENG Shu-hua 《Mining Science and Technology》 EI CAS 2009年第6期756-760,共5页
Given the problem of the long time required for testing gas pressure, we propose a fast-test method in which we used a technique of fast borehole sealing and air replenishing. Based on the characteristics of gas emiss... Given the problem of the long time required for testing gas pressure, we propose a fast-test method in which we used a technique of fast borehole sealing and air replenishing. Based on the characteristics of gas emission from boreholes to be tested, we built a theoretical model for calculating parameters during the process of increasing natural pressure and aeration. Using this model, we investigated the effect of different aeration conditions on velocity of pressure tests. The result shows that: 1) aerating air into boreholes can speed up gas pressure tests and 2) the more similar the pressure of the aerated air to the original gas pressure, the smaller the gas volume absorbed by coal and the shorter the time needed in pressure test. A case study in the Lu’an mining area shows that the time needed for gas pressure test is only 4 h using our method of aeration and 29 h under conditions of increasing natural pressure, saving time by 86.2%. This case study also indicates that, by using the aeration method, only one hour is needed for gas pressure to reach a stable state, which breaks the record of the shortest time needed for gas pressure tests in China. 展开更多
关键词 AERATION gas pressure fast test aeration pressure adsorption quantity
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部