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1.
This paper presents the results of engineering geological investigations and tunnel support design studies, carried out at the Sulakyurt dam site, northeast of Ankara, Turkey. The Sulakyurt dam will be used for flow control and water storage for irrigation projects. Studies were carried out both in the field and the laboratory. Field studies include engineering geological mapping, intensive discontinuity surveying, core drilling and sampling for laboratory testing. The diversion tunnel will be driven in rock mass, consisting of granite and diorite. Empirical, analytical and numerical methods were combined for safe tunnel design. Rock mass rating (RMR), Rock mass quality (Q) and Geological strength index (GSI) systems were used for empirical rock mass quality determination, site characterization and support design. The convergence–confinement method was used as analytical method and software called Phase2, a 2D finite element program, was utilized as numerical method. According to the results acquired from the empirical, analytical and numerical methods, tunnel stability problems were expected in both granite and diorite rock masses. The support system, suggested by empirical methods, was applied and the performance of suggested support system was evaluated by means of numerical modelling. It was concluded that the suggested support systems were adequate, since after applying the suggested support system to granite and diorite, tunnel deformation and the yielded elements around the tunnel decreased significantly. Thus, it is suggested that for more reliable support design empirical, numerical and analytical methods should be combined.  相似文献   
2.
The Hope Slide, which occurred on January 9, 1965, involved an estimated 47-Mm3 of meta-volcanics and intrusive rocks. Previous workers reported the presence of tectonic structures (faults and shear zones) along the failure surface at the Hope Slide. These tectonic features were investigated in detail to assess their effects on rock-mass quality and the related implications for slope stability. This paper integrates basic field and laboratory concepts from structural and engineering geology. Subdividing the failure area into structural domains allowed distinct discontinuity sets to be associated with specific tectonic structures. The Geological Strength Index (GSI) was used to estimate the rock-mass damage related to the tectonic structures. Low GSI values were seen to outline tectonic damage zones. Point-load tests were used to characterise the compressive strength of rocks adjacent to the tectonic structures. Strength anisotropy, tentatively attributed to damage caused by a large shear zone, was observed in greenstone samples. Seepage zones along the failure surface were observed preferentially along shallow discontinuities that dipped downslope and in rock masses of good quality (GSI > 40). An alternative morphology of the slope failure is proposed by distinguishing between the extent of the surficial damage due to the rock-slope failure and the zone of failed material (depletion zone). For the first time, a kinematic mechanism for the Hope Slide is proposed, based on a preliminary 3-dimensional block model. A pre-1965 DEM was produced from estimates of material lost and gained as reported by previous workers. The pre-1965 DEM revealed that the tectonic structures recognised during fieldwork bounded the material that failed in the 1965 event.  相似文献   
3.
Estimation of Block Sizes for Rock Masses with Non-persistent Joints   总被引:2,自引:3,他引:2  
Summary  Discontinuities or joints in the rock mass have various shapes and sizes. Along with the joint orientation and spacing, the joint persistence, or the relative size of the joint, is one of the most important factors in determining the block sizes of jointed rock masses. Although the importance of joint persistence on the overall rock mass strength has long been identified, the impact of persistence on rock strength is in most current rock mass classification systems underrepresented. If joints are assumed to be persistent, as is the case in most designs, the sizes of the rock blocks tend to be underestimated. This can lead to more removable blocks than actually exist in-situ. In addition, a poor understanding of the rock bridge strength may lead to lower rock mass strengths, and consequently, to excessive expenditure on rock support. In this study, we suggest and verify a method for the determination of the block sizes considering joint persistence. The idea emerges from a quantitative approach to apply the GSI system for rock mass classification, in which the accurate block size is required. There is a need to statistically analyze how the distribution of rock bridges according to the combination of joint orientation, spacing, and persistence will affect the actual size of each individual block. For this purpose, we generate various combinations of joints with different geometric conditions by the orthogonal arrays using the distinct element analysis tools of UDEC and 3DEC. Equivalent block sizes (areas in 2D and volumes in 3D) and their distributions are obtained from the numerical simulation. Correlation analysis is then performed to relate the block sizes predicted by the empirical equation to those obtained from the numerical model simulation. The results support the concept of equivalent block size proposed by Cai et al. (2004, Int. J. Rock Mech. Min. Sci., 41(1), 3–19).  相似文献   
4.
掩星弯角资料同化在一次暴雨过程中的应用   总被引:1,自引:0,他引:1  
使用GPS掩星弯角资料和NCEP预报场资料,采用GSI(Grid-point Statistical Interpolation)变分同化系统,对同化掩星弯角资料前后的分析场以及数值预报结果进行详细比较,分析了弯角资料同化对2012年7月21日北京特大暴雨预报结果的影响。结果表明,同化掩星弯角资料对初始场中的温度、湿度产生明显影响,500 hPa和700 hPa温度调整中心量值达到0.5℃和-0.6℃,700 hPa湿度调整中心最大量值达-0.14 kg·kg-1;同化过程改变了强降水发生前流场结构,明显提高了强降水中心位置、雨带走向及范围、降水强度的预报准确性;由降水TS评分可知,200 mm以上大暴雨模拟改善效果明显,但对弱降水预报效果较差。  相似文献   
5.
岳超 《安徽地质》2015,(1):73-75
基于全站仪的数字测图是获取地理空间信息数据的重要手段,由于全站仪品牌不同,其数据格式区别较大,且不能直接导入到成图软件中。本文对徕卡系列全站仪数据存储所采用的GSI-8格式进行了分析,介绍了GSI-8转CASS7.0所需的*.dat格式的原理,给出了程序实现的核心代码,利用实例数据对数据格式转换模块进行了验证。本文所介绍的文件格式转换方法对于测量中其它数据格式的转换具有一定的参考意义。  相似文献   
6.
为了准确确定岩体力学参数,通过综合分析多种地质强度指标(GSI)量化方法,提出了一种改进的GSI值量化和修正方法。首先,利用测线法估算结构面平均间距(d)和岩体块度指数(RBI)的改进型岩体块度率(RBR),根据岩体三维结构面网络,获得岩体体积节理数(Jv)和岩体结构等级(SR),然后采用上述参数和结构表面条件(SCR)及结构表面特性参数(Jc)进行了GSI值的定量化处理。为了克服GSI体系的缺点,考虑结构面产状和地下水对岩体力学性质的影响,提出了GSI值的修正方法和公式。以某铅锌矿体的矿岩体为例,根据改进的GSI值量化和修正方法及Hoek-Brown强度准则来确定矿岩体力学参数,通过与原位变形试验的对比分析,验证了该方法的精确性和可行性。该方法为从室内岩石力学试验合理地获取节理岩体力学参数提供了理论及实现的依据。  相似文献   
7.
孙闯  张向东  刘家顺 《岩土力学》2013,34(10):2954-2960
基于Hoek-Brown强度准则及量化GSI围岩评级系统,分析岩体强度弱化行为,总结出确定岩体峰值及峰后强度参数的方法,提出应变软化模型的简化计算方法,并以FLAC3D数值模拟软件为工具,采用收敛-约束法对深埋大断面隧道支护结构及围岩稳定性进行分析,计算出支护结构安全系数。通过分析得出:随着围岩应力释放,岩体软化参数随之减小,岩体强度弱化行为突出;高地质强度GSI指标(GSI=75)的岩体虽然强度弱化程度较大,但围岩的变形量仍然较小,而低GSI指标(GSI=25)的岩体表现出了理想弹塑性行为;提出的简化Hoek-Brown应变软化模型适合应用于隧道中岩质相近区段围岩的研究;采用收敛-约束法对隧道支护结构的稳定性进行分析,可为隧道工程的初期支护优化设计及安全性评价提供参考。  相似文献   
8.
宋佳琨  陈耀登  陈丹 《气象学报》2021,79(3):477-491
相比冬季大范围静稳条件下的污染堆积过程,秋季气象条件更加复杂和局地化,气象条件模拟不确定性给秋季气溶胶模拟带来了更大难度,且目前研究较少考虑气象-气溶胶因素在线模拟和联合同化。使用WRF/Chem模式和格点统计差值(GSI)三维变分同化系统,2015年10月进行了为期1个月的气象-气溶胶资料联合同化及模拟试验,并基于此讨论了气象-气溶胶资料联合同化对秋季PM2.5浓度模拟的影响。结果表明,WRF/Chem模式可以模拟出秋季污染天气过程,但对华北平原和中东部地区存在高估、西北部存在低估现象;同化地面PM2.5浓度观测资料可以改进对PM2.5浓度的模拟,上述两个地区的偏差均得到订正,6 h预报偏差均降低至6 μg/m3以内;重点针对华北地区的分析表明,秋季PM2.5污染过程与特殊气象条件(湿度升高、风场辐合、区域输送)密切相关,因此在地面PM2.5观测资料同化基础上增加常规气象资料同化,能进一步提高对华北平原气象-污染过程的表达,PM2.5浓度预报相关系数从0.86提高至0.89。气象-气溶胶联合资料同化能更加准确地模拟秋季气溶胶污染过程,为更好地开展污染成因和在气象预报框架下开展气象-气溶胶相互影响研究提供了基础。   相似文献   
9.
采用常规生物学方法和统计回归分析,研究了养殖曼氏无针乌贼卵巢成熟系数(GSI)的变化规律和个体生殖力与其主要形态指标之间的相互关系.结果表明,曼氏无针乌贼春苗100日龄时GS/达到最高(12.2%±3.25%),秋苗140日龄时GSI达到最高(13.7%±3.69%).曼氏无针乌贼秋苗的体质量相对生殖力(F<,W>)极...  相似文献   
10.
利用全站仪测量碎部点是目前1∶500数字地籍碎部测量主要的作业方法。为了节省外业设站、定向时间,提高作业效率,可通过中纬全站仪采集测站点到碎部点的距离与角度等数据(下文称GSI数据),再用Visual Basic 6.0编写程序,根据测站点坐标及GSI数据生成CASS9.1绘图坐标文件。相关测量实例证明了上述编程可达到预期效果。  相似文献   
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