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基于ZigBee技术的石化领域高防爆无线监测系统 被引量:4
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作者 潘巧灵 丁建宁 +1 位作者 王君雯 袁宁一 《常州大学学报(自然科学版)》 CAS 2012年第2期58-63,共6页
石化领域频频发生火灾和爆炸事故,但是现有的监控系统受到环境、成本等各种客观条件的限制,不能很好地满足石化领域的监控要求。而基于ZigBee技术的高防爆无线传感器网络主要采用微控制器MSP430F149和CC2420无线通信芯片相结合的方式进... 石化领域频频发生火灾和爆炸事故,但是现有的监控系统受到环境、成本等各种客观条件的限制,不能很好地满足石化领域的监控要求。而基于ZigBee技术的高防爆无线传感器网络主要采用微控制器MSP430F149和CC2420无线通信芯片相结合的方式进行实时采集数据,当采集到的温度、压力或者可燃气体浓度值超过设定的阈值时,立即发送报警信息,并实时进行智能防爆。点对点跟组网通信测试结果表明通信距离和丢包率均能很好地满足石化领域的监控要求,而数据采集结果也很好地说明了系统运行的稳定准确性。 展开更多
关键词 ZigBee 高防爆 无线传感器网络 MSP430F149 CC2420
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Theory and application of rock burst prevention using deep hole high pressure hydraulic fracturing 被引量:3
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作者 Shan-Kun ZHAO Jun LIU +3 位作者 Xiang-Zhi WEI Chuan-Hong DING Yu-Lei LV Gang-Feng LI 《Journal of Coal Science & Engineering(China)》 2013年第2期136-142,共7页
In order to analyze the mechanism of deep hole high pressure hydraulic fracturing, nonlinear dynamic theory, damage mechanics, elastic-plastic mechanics are used, and the law of crack propagation and stress transfer u... In order to analyze the mechanism of deep hole high pressure hydraulic fracturing, nonlinear dynamic theory, damage mechanics, elastic-plastic mechanics are used, and the law of crack propagation and stress transfer under two deep hole hydraulic fracturing in tectonic stress areas is studied using seepage-stress coupling models with RFPA simulation software. In addition, the effects of rock burst control are tested using multiple methods, either in the stress field or in the energy field. The research findings show that with two deep holes hydraulic fracturing in tectonic stress areas, the direction of the main crack propagation under shear-tensile stress is parallel to the greatest principal stress direction. High-pressure hydraulic fracturing water seepage can result in the destruction of the coal structure, while also weakening the physical and mechanical properties of coal and rock. Therefore the impact of high stress concentration in hazardous areas will level off, which has an effect on rock burst prevention and control in the region. 展开更多
关键词 rock burst deep hole high pressure hydraulic fracturing seepage-stress coupling models stress concentration factor
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