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When using Transient Geo-Electromagnetics (TEM) unusually slow decaying transients are sometimes observed in the absence of well-conductive objects. Many researchers explain this phenomenon by presence of material with magneto-viscous or superparamagnetic (SPM) properties. The analysis of electromagnetic (EM) field equations in conductive SPM medium is suggested in the present paper. It is shown that in a simplest case of small size single-domain magnetic particles with relative higher potential barrier energy, the SPM-medium is characterized by a very slow decaying exponential transient magnetic field, the level of which is much more as compared to that of due to non-magnetic medium of the same conductivity. This situation is traced up to the late transient time like 0.1 s and more. SPM and Induction fields are in the near zone additive. They depend in a different way on the superparamagnetic and electric properties of the SPM-medium. They also depend in different ways on the transient time and on the size of the transmitter–receiver configuration. These characteristics make it possible to recognize the presence of SPM-effect and to separate these fields.  相似文献   
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王艳芬  王元汉  盛谦 《岩土力学》2006,27(Z1):948-951
采用弹性空间体内部一点受集中力的Kelvin解,推导了拉力型锚索锚固段的附加应力和位移分布的理论公式,并依此推出了锚固段周边的剪应力分布公式。在此基础上,讨论了锚固体、岩土体的力学参数对附加应力、位移和剪应力的影响。结果表明,锚固段周边岩体中的正应力场和位移为锥形,在锚固段的起始点上部形成了压应力场,下部为拉应力场,并以力的作用点为中心快速衰减。锚固段周边剪应力形成了一个锥面,并随远离作用点快速衰减。  相似文献   
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