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石灰岩损伤演化的化学热力学及动力学模型 被引量:7
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作者 王建秀 朱合华 +1 位作者 唐益群 杨立中 《同济大学学报(自然科学版)》 EI CAS CSCD 北大核心 2004年第9期1126-1130,共5页
隧道开挖排水后 ,地下水动力学及化学环境的改变可能使石灰岩围岩化学损伤的演进过程加速 ,为定量化评价此作用 ,引入了化学热力学和化学动力学的理论和方法 .建立化学热力学模型 ,通过吉布斯自由能变化判定隧道水化学损伤能否自发进行 ... 隧道开挖排水后 ,地下水动力学及化学环境的改变可能使石灰岩围岩化学损伤的演进过程加速 ,为定量化评价此作用 ,引入了化学热力学和化学动力学的理论和方法 .建立化学热力学模型 ,通过吉布斯自由能变化判定隧道水化学损伤能否自发进行 ,为在工程中是否需要考虑化学损伤及进行损伤场的计算提供依据 .将轻微改造后的裂隙概化为平行板模型 ,采用Plummer Wigley Parkhurst方程建立定量评价化学损伤的化学动力学模型 .根据实际情况取定化学反应的阶数 ,通过质量守恒定律计算出裂纹在迹长及隙宽方向的变化 ,得到化学损伤定量演化的公式 . 展开更多
关键词 碳酸岩隧道 裂隙围岩 化学损伤演化 化学热力学 化学动力学
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Mechanical properties of deep sandstones under loading rate effect 被引量:4
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作者 ZHANG Jun-wen DING Lu-jiang +2 位作者 SONG Zhi-xiang FANWen-bing WANG Shan-yong 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第6期1933-1944,共12页
The advance speed of the working face in coal mines can significantly affect the fluctuation frequency of abutment pressure in front of the coal body.Moreover,it has a certain correlation with the change of axial load... The advance speed of the working face in coal mines can significantly affect the fluctuation frequency of abutment pressure in front of the coal body.Moreover,it has a certain correlation with the change of axial loading rate in coal and rock mechanics test.Therefore,uniaxial compression tests under various loading rates of 0.05,0.1,0.15,0.25,0.5 MPa/s were conducted using 2000 kN triaxial testing machine and PCI-2 acoustic emission test system to study the loading rate effect on the mechanical properties of deep sandstones.The results show that 1)the peak strength and elastic modulus of the deep sandstone increase with the loading rate increasing;2)with the loading rate increasing,the deep sandstone transforms from plastic-elastic-plastic to plastic-elastic and moreover,the failure mode gradually transfers from type I to type III;3)With the loading rate increasing,the total input strain energy,elastic strain energy,and dissipated strain energy generally increase;4)the damage variable presents the evolution characteristics of inverted“S”shape with time,and with the loading rate increasing,the damage degree of the deep sandstone is aggravated.The conclusion obtained can provide the theoretical basis for the stability control of the surrounding rock in deep engineering. 展开更多
关键词 loading rate effect failure mode energy evolution damage evolution mechanical properties deep sandstone
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