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51.
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地震前兆复杂性成因机理研究的讨论(一):地震前兆复杂性的表现形式 总被引:10,自引:2,他引:8
通过国内外成功与失败的震例分析,介绍了地震前兆共性的一面,如在台网具有一定监测能力的地区,如果发生6级以上地震,震前总能或多或少地观测到异常现象。地震越大震前异常越多,分布越广,持续时间越长,异常幅度也较大,同时章着重对前兆复杂性的表现形式进行了较系统的归纳,整理,主要从以下几方面进行了分析,异常与地震关系的不确定性,主要表现在除了“有异常有地震”和“无异常无地震”的理论情况外,还存在“有异常无 相似文献
53.
本文以共线剪切裂纹的归并为例,研究裂纹系的动态相互作用.实验结果表明:在张破裂的意义上,小间距共线剪切裂纹的内端部实际上是阻碍结构,通过迂回弯曲的张破裂归并.本文提出一种估计张破裂扩展途径的近似方法,利用张应力破裂判据找出了潜在的破裂扩展途径的第一近似,较好地模拟了共线裂纹的破裂途径,和现有的数值模拟方法比较,可以大大缩短机时,简化计算程序,保证精确度.本研究结出了岩石剪切破裂“隧道效应”(即破裂跳过障碍体,而障碍体本身不破坏)的机理,还给出了脆性介质在摩擦、磨损过程中碎屑产生的机理. 相似文献
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矿体产于平掌组变质绿片岩中,NW向F3断裂破碎带控矿。边缘向中央品位增高。研究构造延伸和矿源可扩大远景。 相似文献
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油气田裂缝密度定量研究方法 总被引:1,自引:0,他引:1
本文首先简要评述了目前研究裂缝方法的优缺点。用实例介绍了裂缝密度的定量估计方法,这种方法能将岩芯资料和地震资料有机地结合起来。应用这种方法不但能预测区域性裂缝及油气分布规律,而且能回答所获得成果的正确程度。 相似文献
58.
Experimental and numerical investigation of groundwater head losses on and nearby short intersections between disc-shaped fractures 下载免费PDF全文
Discrete fracture models are used for investigating precise processes of groundwater flow in fractured rocks,while a disc-shaped parallel-plates model for a single fracture is more reasonable and efficient for computational treatments.The flow velocity has a large spatial differentiation which is more likely to produce non-linear flow and additional head losses on and nearby intersections in such shaped fractures,therefore it is necessary to understand and quantify them.In this study,both laboratory experiments and numerical simulations were performed to investigate the total head loss on and nearby the intersections as well as the local head loss exactly on the intersections,which were not usually paid sufficient attention or even ignored.The investigation results show that these two losses account for 29.17%-84.97%and 0-73.57%of the entire total head loss in a fracture,respectively.As a result,they should be necessarily considered for groundwater modeling in fractured rocks.Furthermore,both head losses become larger when aperture and flow rate increase and intersection length decreases.Particularly,the ratios of these two head losses to the entire total head loss in a fracture could be well statistically explained by power regression equations with variables of aperture,intersection length,and flow rates,both of which achieved high coefficients of determination.It could be feasible through this type of study to provide a way on how to adjust the groundwater head from those obtained by numerical simulations based on the traditional linear flow model.Finally,it is practicable and effective to implement the investigation approach combining laboratory experiments with numerical simulations for quantifying the head losses on and nearby the intersections between disc-shaped fractures. 相似文献
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东川拖布卡金矿矿化层位与找金方向 总被引:10,自引:3,他引:7
超大型拖布卡金矿的发现,表明东川地区具备找金前景.“黑层”是金的成矿前提,断裂加蚀变是成矿必备条件,基性与中性岩脉在容矿层中的侵位,是找富金的重要标志.金成矿全过程应是多旋回(晋宁、华力西、燕山、喜马拉雅山)成矿作用,且受剪切破碎带控制的黑层型金矿. 相似文献
60.
A numerical procedure to determine the equivalent permeability tensor of a fractured rock is presented, using a stochastic REV (Representative Elementary Volume) concept that uses multiple realizations of stochastic DFN (Discrete Fracture Network) models. Ten square DFN models are generated using the Monte Carlo simulations of the fracture system based on the data obtained from a site characterization program at Sellafield, Cumbria, UK. Smaller models with varying sizes of from 0.25 m×0.25 m to 10 m×10 m are extracted from the generated DFN models and are used as two-dimensional geometrical models for calculation of equivalent permeability tensor. The DFN models are also rotated in 30º intervals to evaluate the tensor characteristics of calculated directional permeability. Results show that the variance of the calculated permeability values decreases significantly as the side lengths of the DFN models increase, which justifies the existence of a REV. The REV side length found in this analysis is about 5 m and 8 m with 20% and 10% acceptable variations, respectively. The calculated directional permeability values at the REV size have tensor characteristic that is confirmed by a close approximation of an ellipse in a polar plot of the reciprocal of square roots of the directional permeability.
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Ki-Bok MinEmail: Phone: +46-8-7907919Fax: +46-8-7906810 |