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红外辐射探测预测煤矿冲击地压的试验研究
引用本文:郭文奇,张拥军,安里千,于广明,李建辉,彭瑞东.红外辐射探测预测煤矿冲击地压的试验研究[J].煤炭科学技术,2007,35(1):73-77.
作者姓名:郭文奇  张拥军  安里千  于广明  李建辉  彭瑞东
作者单位:1. 中国矿业大学(北京)力学与建筑工程学院,北京,100083;山西煤田地质局,山西,太原,030006
2. 青岛理工大学,山东,青岛,260033
3. 中国矿业大学(北京)力学与建筑工程学院,北京,100083
基金项目:国家自然科学基金 , 国家重点基础研究发展计划(973计划) , 国家自然科学基金
摘    要:利用单轴加载系统和红外热成像技术,对山西水峪矿的煤岩变形过程中的红外辐射变化进行了探测试验研究.研究发现,煤岩表面红外辐射温度随着载荷的增加而出现阶段性变化,裂纹扩展区、应力集中区和破碎区的红外辐射温度变化存在阶段性差异;应力集中区和裂纹扩展区的红外辐射温度比应力松弛区域和破碎区的红外辐射温度高;红外辐射温度变化可以反映出离工作面不同距离处的应力状态,以及应力集中区的范围以及应力转移过程;如果煤岩体红外辐射温度的变化规律是升温-降温-大幅度升温-大幅度降温,则预示着冲击地压发生的危险性.

关 键 词:冲击地压  红外辐射  煤岩变形破裂  应力转移  红外辐射探测  预测  煤矿  冲击地压  试验  研究  pressure  mine  predict  technology  exploration  infrared  radiation  危险性  发生  降温  升温  变化规律  煤岩体  转移过程  应力状态
文章编号:0253-2336(2007)01-0073-05
修稿时间:2006-10-08

Test on infrared radiation exploration technology to predict mine bumping pressure
GUO Wen-qi,ZHANG Yong-jun,AN Li-qian,YU Guang-ming,LI Jian-hui,PENG Rui-dong.Test on infrared radiation exploration technology to predict mine bumping pressure[J].Coal Science and Technology,2007,35(1):73-77.
Authors:GUO Wen-qi  ZHANG Yong-jun  AN Li-qian  YU Guang-ming  LI Jian-hui  PENG Rui-dong
Affiliation:1. School of Mechanics, Archtechure and Civil Engineering China University of Mining and Technology (Beijing
Abstract:With the single axial loading system and the infrared hot image technology,a probing test research on infrared radiation changes of the coal and rock deformation in Shanxi Shuiyu Mine was conducted.The research showed that the infrared radiation temperature on the coal and rock surface would be changed with the increasing of the loadings.There was a stage differential in infrared radiation temperature variation in the cracking developed zone,stress concentrated area and broken zone.The infrared temperature variation can reflect the stress status with different distances to the mining face,the stress concentrated zone area and the stress displacement process.If the variation law of the infrared temperature of the coal and rock is temperature increasing,temperature decreasing,high temperature increasing and high temperature decreasing,it predicts the danger of bumping pressure occurred.
Keywords:bumping pressure  infrared radiation  coal and rock deformation breaking  stress displacement
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