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Mechanism of energy limit equilibrium of rock burst in coal mine 被引量:4
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作者 Wang Jiong Yan Yubiao +2 位作者 Jiang Zhengjun Qi Ping Chen Chen 《Mining Science and Technology》 EI CAS 2011年第2期197-200,共4页
With the increase of mining depth,the effect of rock burst on coal mining is becoming more and more obvious and the rock burst mechanism becomes more and more complicated.Scholars from many countries had put forward d... With the increase of mining depth,the effect of rock burst on coal mining is becoming more and more obvious and the rock burst mechanism becomes more and more complicated.Scholars from many countries had put forward different mechanisms,but no one gave a reasonable explanation to the mechanism of rock burst.In this paper,based on the energy theories,we studied the energy limit equilibrium(ELE) of coal mine rock burst The coal seam with rock burst is divided into energy limit equilibrium zone(ELEZ)(A) and elastic zone(B);we also determined the position where the rock burst occurs,including the roof and floor of coal seams;in addition,we derived the limit width of ELEZ and the mathematic relationship between the limit width and occurrence mechanism of rock burst:the energy difference function(EDF),w(x) = w_j - w_p,because first-order derivative w'(x),is less than 0.So EDF is a monotonically decreasing function.The graph of the energy difference function was also determined, through which we analysed the occurrence mechanism of rock burst. 展开更多
关键词 Rock burst Elastic zone Limit stress Energy limit equilibrium(ELE) Limit energy
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Magnetic Properties of One-Dimensional Ferromagnetic Mixed-Spin Model within Tyablikov Decoupling Approximation
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作者 陈渊 项颖 宋闯闯 《Communications in Theoretical Physics》 SCIE CAS CSCD 2010年第10期747-752,共6页
In this paper, we apply the two-time Green's function method, and provide a simple way to study themagnetic properties of one-dimensional spin-(S, s) Heisenberg ferromagnets.The magnetic susceptibility and correla... In this paper, we apply the two-time Green's function method, and provide a simple way to study themagnetic properties of one-dimensional spin-(S, s) Heisenberg ferromagnets.The magnetic susceptibility and correlationfunctions are obtained by using the Tyablikov decoupling approximation.Our results show that the magnetic susceptibilityand correlation length are a monotonically decreasing function of temperature regardless of the mixed spins.It isfound that in the case of S = s, our results of one-dimensional mixed-spin model is reduced to be those of the isotropicferromagnetic Heisenberg chain in the whole temperature region.Our results for the susceptibility are in agreement withthose obtained by other theoretical approaches. 展开更多
关键词 magnetic property Green's function method mixed-spin model Tyablikov decoupling approximation
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积分第二中值公式成立的充要条件
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作者 杜昌友 朱世余 《重庆师范学院学报(自然科学版)》 1992年第2期78-80,共3页
本文给出了积分第二中值公式成立的充要条件.
关键词 单减函数 积分 第二中值公式
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Optimal thermoelectric figure of merit of Si/Ge core-shell nanowires 被引量:2
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作者 Kaike Yang Andres Cantarero +1 位作者 Angel Rubio Roberto D'Agosta 《Nano Research》 SCIE EI CAS CSCD 2015年第8期2611-2619,共9页
We investigate the thermoelectric energy conversion efficiency of Si and Ge nanowires, and in particular, that of Si/Ge core-shell nanowires. We show how the presence of a thin Ge shell on a Si core nanowire increases... We investigate the thermoelectric energy conversion efficiency of Si and Ge nanowires, and in particular, that of Si/Ge core-shell nanowires. We show how the presence of a thin Ge shell on a Si core nanowire increases the overall figure of merit. We find the optimal thickness of the Ge shell to provide the largest figure of merit for the devices. We also consider Ge core/Si shell nanowires, and show that an optimal thickness of the Si shell does not exist, since the figure of merit is a monotonically decreasing function of the radius of the nanowire. Finally, we verify the empirical law relating the electron energy gap to the optimal working temperature that maximizes the efficiency of the device. 展开更多
关键词 thermoelectric properties Seebeck coefficient silicon and germanium core-shell nanowires
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