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361.
班公湖—怒江构造带西段三叠纪—侏罗纪构造—沉积演化 总被引:20,自引:2,他引:20
班公湖-怒江构造带西段在大地构造位置上处于特提斯构造域东端,横跨班公湖-怒江断裂带。三叠纪-株罗纪期间,其构造-沉积演化经历了大陆初始裂谷(T)、原洋裂谷(J1)、残余弧后盆地(J2-J3)阶段。初始裂谷阶段的拉张是呈南断北超的半地堑式由东向西进行的,逐渐形成地堑式原洋裂谷盆地。中晚侏罗世,南部新特提斯洋壳开始北各俯冲,产生的区域挤压应力使原洋裂谷逐渐封闭,裂谷盆地的小洋壳表现出以南向俯冲为主的双向式腑冲,同时伴生区域热沉降,盆地具残余弧后盆地的性质。该阶段,羌南地区发育碳酸盐岩为主的稳定陆缘沉积,冈度斯-念青唐古拉板片北部则形成广泛南超的近源碎屑沉积。 相似文献
362.
资源勘查图件计算机辅助编绘系统的结构分析与开发策略研究 总被引:7,自引:1,他引:7
如何站在信息系统的高度来进行资源图件计算机辅助编绘系统的快速开发,是资源信息系统领域计算机应用的一个重要研究课题。在结构分析的基础上,将资源图件计算机辅助编绘系统划分为图形数据库,应用图形系统和基础图形系统3个基本部分。对于复杂资源图件的计算机辅助编绘,需要地矿点源信息系统的支持。在基础图形系统上进行专业编绘程序的二次开发是高效建立图件编绘系统的最佳途径,并需注意GIS集成应用,三维可视化,人工智能和参数化设计等方法的运用,而系统平台开发是复杂应用的高级阶段。该思想可应用于煤及油气勘探,工程开发,矿区管理及区域地质等诸多领域的软件开发中。 相似文献
363.
东乡铜矿断裂带构造地球化学及找矿标志 总被引:4,自引:2,他引:4
东乡铜矿区主要断裂带SiO2明显为带入组分,K^ ,Na^ ,Ca^2 ,Mg^2 属带出组分,Fe^3 /Fe^2 比值相对较低,成矿元素Cu,Pb,Zn,Ag,Au,As,Sb,Mo,Sn含量增高,属于明显的带入组分,可作为储矿断裂的找矿标志。 相似文献
364.
岩石边坡系统是一典型灰色系统,其变形发展过程可以用灰色预测模型完成。尽管传统GM(1,1)模型预测有很多成功的实例,但是也存在一些预测偏差过大的情况,必须对其进行优化。逐步迭代法GM(1,1)模型不仅收敛速度快,而且与原始数据库序列的凹凸性保护一致。利用自编的计算程序对马步坎边坡预测测点G1沉降和开裂进行预测分析,结果表明逐步迭代法GM(1,1)优化模型计算精度较传统GM(1,1)模型和背景构造法GM(1,1)优化模型高,较好地反映了岩石边坡的变形趋势。 相似文献
365.
晓天—磨子潭断裂流体包裹体的均一温度、盐度和捕俘压力研究结果表明:晓天—磨子潭断裂中石英脉中流体主要来自浅部,有多期次流体包裹体,流体包裹体的均一温度分为三个区间:140~180℃、190~240℃和270~340℃,反映了至少经历了三次强烈的流体活动。流体包裹体的盐度<10%,捕获压力<1.350×108Pa。总体上越靠近晓天—磨子潭断裂,包裹体的均一温度和盐度越高,捕获压力越大,局部地区的差异,能从断裂对流体控制上得到合理的解释;另外,流体包裹体的均一温度、盐度和捕获压力,在不同的显微构造,围岩性质、构造环境和时空范围中,发生不同的变化。一方面多次构造活动和热事件的驱动流体活动,另一方面流体的活动,降低了岩石脆—韧性变形的温压条件,促进了岩石的变形。 相似文献
366.
This work presents a novel neural network‐based approach to detect structural damage. The proposed approach comprises two steps. The first step, system identification, involves using neural system identification networks (NSINs) to identify the undamaged and damaged states of a structural system. The partial derivatives of the outputs with respect to the inputs of the NSIN, which identifies the system in a certain undamaged or damaged state, have a negligible variation with different system errors. This loosely defined unique property enables these partial derivatives to quantitatively indicate system damage from the model parameters. The second step, structural damage detection, involves using the neural damage detection network (NDDN) to detect the location and extent of the structural damage. The input to the NDDN is taken as the aforementioned partial derivatives of NSIN, and the output of the NDDN identifies the damage level for each member in the structure. Moreover, SDOF and MDOF examples are presented to demonstrate the feasibility of using the proposed method for damage detection of linear structures. Copyright © 2001 John Wiley & Sons, Ltd. 相似文献
367.
The paper presents a numerical investigation aimed at evaluating the improvements achievable through devices for passive seismic protection of buildings based on the use of shape memory alloys (SMA) in place of conventional steel or rubber devices. To get some generality in the results, different resisting reinforced concrete plane frames were analysed, either protected or not. ‘New’ and ‘existing’ buildings were considered depending on whether seismic provisions are adopted in the building design or not. Base isolation and energy dissipation were equally addressed for both conventional and innovative SMA‐based devices. Fragility analyses were performed using specific damage measures to account for comparisons among different damage types; the results were then used to estimate quantitatively the effectiveness of the various protection systems. More specifically, the assessment involved a direct comparison of the damage reduction provided by each protection system with respect to the severe degradation experienced by the corresponding non‐protected frame. Structural damage, non‐structural damage and damage to contents were used on purpose and included in a subsequent phase of cost analysis to evaluate the expected gains also in terms of economic benefits and life loss prevention. The results indicate that base isolation, when applicable, provides higher degrees of safety than energy dissipation does; moreover, the use of SMA‐based devices generally brings about better performances, also in consideration of the reduced functional and maintenance requirements. Copyright © 2002 John Wiley & Sons, Ltd. 相似文献
368.
Structural vibration control using active or passive control strategy is a viable technology for enhancing structural functionality and safety against natural hazards such as strong earthquakes and high wind gusts. Both the active and passive control systems have their limitations. The passive control system has limited capability to control the structural response whereas the active control system depends on external power. The power requirement for active control of civil engineering structures is usually quite high. Thus, a hybrid control system is a viable solution to alleviate some of the limitations. In this paper a multi‐objective optimal design of a hybrid control system for seismically excited building structures has been proposed. A tuned mass damper (TMD) and an active mass driver (AMD) have been used as the passive and active control components of the hybrid control system, respectively. A fuzzy logic controller (FLC) has been used to drive the AMD as the FLC has inherent robustness and ability to handle the non‐linearities and uncertainties. The genetic algorithm has been used for the optimization of the control system. Peak acceleration and displacement responses non‐dimensionalized with respect to the uncontrolled peak acceleration and displacement responses, respectively, have been used as the two objectives of the multi‐objective optimization problem. The proposed design approach for an optimum hybrid mass damper (HMD) system, driven by FLC has been demonstrated with the help of a numerical example. It is shown that the optimum values of the design parameters of the hybrid control system can be determined without specifying the modes to be controlled. The proposed FLC driven HMD has been found to be very effective for vibration control of seismically excited buildings in comparison with the available results for the same example structure but with a different optimal absorber. Copyright © 2002 John Wiley & Sons, Ltd. 相似文献
369.
370.
张北地震区三维构造特征 总被引:7,自引:0,他引:7
地震层析成像结果揭示了张北地震区的构造特征。震源区周围分布有相交的北北西和北东向低速异常带。极震区正下方壳内存在高速异常的坚固体 ,其周围被多条低速异常带围限。区域构造具备了大量积累应变能和向高应力区传递应变能的孕震构造特征 ,北北西和北东向的隐伏断裂共同构成了区域的发震构造。该震区在中新生代以来有过多期岩浆活动 ,震中区周围分布有几个新第三纪的火山口。极震区米家沟附近火山的三维剖分图给出了该火山从地表到壳内 10km深度的速度图像 ,中新生代的火山岩浆活动对该区域孕震构造的形成起了重要作用。 相似文献