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181.
剪切带倾角尺度律与局部化启动跳跃稳定研究 总被引:9,自引:5,他引:9
研究了剪切带倾角是如何依赖于岩样高度以及剪切带的不稳定性。建立了准脆性材料试件剪切带倾角尺度效应模型,得到了剪切带倾角尺度效应的解析解,且与实验结果比较相符。研究结果表明:剪切带倾角随着试件高度的增加而增加,但其增加幅逐渐减缓,最终趋于稳定值。笔者还对剪应变局部化启动、跳跃和稳定进行了理论分析,解释了实验所观测到的剪切带跳跃现象和砂岩岩样应变局部化较煤样滞后的原因。剪应变局部化是否发生跳跃,关键取决于全程应力-应变曲线软化段是否存在拐点。对于没有拐点的情形,宏观剪切带图案不跳跃。局部化是导致准脆性材料试件剪切带倾角尺度效应的原因。 相似文献
182.
介绍了北京昌平地震台 TJ- 1型钻孔体积应变仪 1 989年 7月~ 2 0 0 0年 1 2月期间的观测结果 ,分析了潮汐响应函数的动态特征及其稳定性。由全序列观测数据调和分析所得 :O1波潮汐因子 VO1=0 .791 6± 0 .0 1 2 8、相位滞后 ΔΦ0 1=1 .9°;K1波潮汐因子 Vk1=0 .6 4 42±0 .0 0 88、相位滞后ΔΦk1=- 4.2°;M2 波潮汐因子 VM2 =0 .6 5 0 0± 0 .0 0 3 8、相位滞后ΔΦM2 =-2 .9°。液态地核振荡因子 A=VO1/VK1=1 .2 2 8,比理论值小 6 .5 %。 相似文献
183.
粘弹性介质中的地震波 总被引:1,自引:0,他引:1
给出了三元件的标准线性粘弹性固体在半平面内传播的地震波的解析解,它是由已知的弹性半平面内的解析解迭粘滞性解而得,从而克服了视地壳为二元件粘弹性体的Voigt模型或Maxell模型的缺点。 相似文献
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186.
Strain and tilt changes measured during a water injection experiment at the Nojima Fault zone, Japan 总被引:2,自引:0,他引:2
Kunio Fujimori Hiroshi Ishii Atsushi Mukai Shigeru Nakao Shigeo Matsumoto Yasuhiro Hirata 《Island Arc》2001,10(3-4):228-234
Abstract In order to make geophysical and geological investigations of the Nojima Fault on Awaji Island, Japan, three boreholes measuring 1800 m, 800 m and 500 m deep were drilled into the fault zone. The fault is one of the seismic source faults of the 1995 Hyogo-ken Nanbu earthquake of M 7.2. A new multicomponent borehole instrument was installed at the bottom of the 800 m borehole and continuous observations of crustal strain and tilt have been made using this instrument since May 1996. A high-pressure water injection experiment within the 1800 m borehole was done in February and March 1997 to study the geophysical response, behavior, permeability, and other aspects of the fault zone. The injection site was located approximately 140 m horizontally and 800 m vertically from the instrument. Associated with the water injection, contraction of approximately 0.7 × 10−7 str (almost parallel to the fault) and tilt of approximately 1 × 10-7 rad in the sense of upheaval toward the injection site were observed. In addition to these controlled experiments, the strainmeter and tiltmeter also recorded daily variations. We interpret strain and tilt changes to be related to groundwater discharge and increased ultra-micro seismicity induced by the injected water. 相似文献
187.
General characteristics of the recent horizontal crustal movement in Chinese mainland 总被引:5,自引:0,他引:5
1 Introduction of GPS observation dataThe Crustal Movement Observation Network of China (CMONOC) is a major scientific project in China organized by China Seismological Bureau and paticipated by the Bureau of Surveying and Mapping of the General Staff, the Chinese Academy of Sciences and the National Bureau of Surveying and Mapping. Based on the observation data of 25 fiducial stations and 56 basic stations in CMONOC (Figure 1 and Table 1), collected from August 26 to September… 相似文献
188.
Model of rigid and elastic-plastic motion in intraplate blocks and strain status of principal blocks in Chinese mainland 总被引:5,自引:1,他引:5
Introduction The Chinese mainland is located in the southeastern part of Eurasia plate and encircled by India, Eurasia, Pacific and Philippine Sea plates. It is one of areas with the strongest tectonic de-formation, especially Qingzang (QinghaiXizang) plateau and NS tectonic zone where the tec-tonic activity is more intensive and intricate. The main part of tectonic activity of Chinese mainland includes a series of tectonic zones and active blocks divided by them. Therefore, the research… 相似文献
189.
A computational method of energy evaluation is derived to study the elastic responses and energy distribution of actively controlled single‐degree‐of‐freedom (SDOF) structures during earthquakes. Contrary to the common perception that applying active control force pumps energy into the structure, the applied control force can actually reduce the energy in the structure by reducing the input energy from earthquakes to the structure. In addition, applying control force can dissipate a large amount of energy in the structure when this control force is applied in the direction opposite to the displacement and velocity responses. To demonstrate this energy mechanism in active controlled structures, the two most popular control algorithms, optimal linear control (OLC) and instantaneous optimal control (IOC) algorithms, are used to calculate the control response and energy spectra. One‐step time delay is incorporated into the algorithms to take into consideration the practical aspect of active control. The effects of different earthquakes and damping ratios on control energy and response spectra are studied. These studies show that both OLC and IOC are very effective in reducing the structural displacement and velocity responses by reducing the input earthquake energy as well as dissipating a large amount of energy in the structure. Copyright © 2001 John Wiley & Sons, Ltd. 相似文献
190.
A. G. Shtukenberg Yu. O. Punin E. Haegele H. Klapper 《Physics and Chemistry of Minerals》2001,28(9):665-674
Optical anomalies (deviations of the symmetry of optical properties from the ideal symmetry of the crystal) occur in many
minerals and synthetic compounds and have been under investigation since the last century. An important feature of optically
anomalous mixed crystals is a high degree of optical inhomogeneity, whereas the optical patterns of mixed crystals without
anomalies are usually rather uniform. This work is devoted to the study of this phenomenon. As a model object we have chosen
mixed alum crystals, which were known for their anomalous birefringence and which revealed the following types of optical
inhomogeneities: (1) sector zoning; (2) concentric zoning; (3) subsector zoning; (4) stripes normal to growth front.
The inhomogeneity of anomalous birefringence of mixed crystals of alums can be explained by superposition of several effects:
mismatch strain, strain along dislocations and growth ordering of isomorphous components. Optical inhomogeneities due to the
sector zoning of crystals and their dislocation structure arise even under stationary growth conditions and stationary micromorphology
of the growing face. Both variable growth conditions and the relief of the growing face strongly intensify the optical inhomogeneity
due to three interrelated factors: (1) a significantly inhomogeneous mismatch strain; (2) a variable degree of ordering of
isomorphous components due to the compositional inhomogeneities; (3) different degrees of ordering of isomorphous atoms caused
by different orientations, heights and velocities of growth steps. These effects lead to the formation of subsector zoning
and zoning superimposed on the optical sector zoning. These optical structures are crossed by birefringent stripes arising
from dislocations.
Received: 29 March 2000 / Accepted: 11 March 2001 相似文献