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981.
周厚云  汤静  袁道先 《中国岩溶》2011,30(3):341-347
对于采自川东北诺水河溶洞群的石笋SJ3,采用2%的HNO3和HF+HNO3两种溶样方法分析测试了其稀土元素(REE)含量。结果表明:虽然多数石笋中存在碎屑物质,SJ3的少数样品在采用2%的HNO3溶解后有明显的残留物存在,但采用HF+HNO3全部溶解样品得到的SJ3的REE含量与采用稀HNO3溶样得到的结果并没有显著的差别。这表明SJ3的REE可能主要不是直接来自于地表土壤中难溶的硅酸盐矿物,而可能是土壤风化释放的REE通过吸附在颗粒/胶体态物质的表面,经过岩溶地下水的搬运而沉积到SJ3中。由此认为,采用稀酸溶样基本上可以将石笋SJ3的REE释放出来。   相似文献   
982.
综合运用岩石学、矿物学和地球化学方法,对石油充注鄂尔多斯盆地东南缘三叠系延长组砂岩储层后的成岩反应系 统进行了研究,揭示了石油充注对储层成岩环境的改变在一定程度上影响了本区储层成岩作用的演化。研究表明,该区延 长组长石砂岩储层在石油充注后有机酸和CO2大量出现,pH值降低,促进了岩石骨架颗粒长石的溶解,导致了次生孔隙的发 育,增强了储层的储集性能,但未能增加石英的溶解度;但是由于含油饱和度偏低,石油的充注使成岩环境的变化仅在很 小程度上抑制伊利石的生长,并没有完全阻止伊利石的生长,伊利石“搭桥”胶结孔隙,一定程度上降低了储层的储集性 能;同时石油的充注也使成岩早期形成的碳酸盐胶结物出现溶解,当成岩温度>100℃时,有机质热演化产生较高的CO2分 压,缓冲了pH值使含铁碳酸盐大量沉淀从而使储层致密化。石油充注对储层的这些影响对下一步的储层评价提供了重要依 据。  相似文献   
983.
采用共振柱试验方法,研究了固结比对土最大动剪切模量的影响并给出了土最大动剪切模量的建议公式。通过对砂土、粉质黏土和粉土的系统试验,提出了不同固结比下土最大动剪切模量与固结比kc-1呈指数形式的增长模式,不同于Hard in公式最大动剪切模量与固结比kc呈直线形式的增长模式。同时给出了计算不同固结比下砂土、粉质黏土和粉土最大动剪切模量的建议公式,并与Hard in公式进行了对比,结果表明,固结比对土最大动剪切模量影响程度明显比Hard in公式要大,固结比对粉质黏土和粉土最大动剪切模量的影响程度要比对砂土的影响程度更大。  相似文献   
984.
岩土工程中存在许多不确定性,建筑物抗震规范设计中的标准设计谱实际代表着一种平均结果,并没有考虑到场地土体非线性参数的变异性。文中采用数值模拟的方法研究了土非线性参数变异性对标准设计谱的影响。给出了考虑土非线性参数变异性的概率设计谱。结果表明,土非线性参数变异性对标准设计谱的影响显著;粘性土和无粘性土的动剪切模量比对标准设计谱的影响决定于土非线性参数的概率水准,同时也取决于概率设计谱的频段;烈度7度、8度和9度下土体动剪切模量比变异性使标准设计谱平台最大变化50%、80%和100%,阻尼比变异性使标准设计谱平台最大变化40%、45%和60%。  相似文献   
985.
吉林夹皮沟金矿带黄铁矿热电性及热爆裂特征   总被引:4,自引:2,他引:2  
通过对夹皮沟金矿带主要载金矿物黄铁矿的热电性和热爆裂特征分析,确定了主成矿世代及各世代矿化类型,预测了深部探矿的可能性。黄铁矿以电子型(N型)为主,极少有空穴型(P型),N型热电系数分布于-347.3~-6.2 μV·℃-1,P型热电系数介于17.4~193.5 μV·℃-1, 成矿温度集中于258.8~319.2 ℃, 剥蚀率为50.260%~50.485%。爆裂曲线反映中低温(<280 ℃)矿化没有高温(>290 ℃)矿化好。综合分析认为,夹皮沟金矿带矿化分早期高温世代(热电系数峰值为-120 μV·℃-1,成矿温度峰值为320 ℃)和晚期中低温世代(热电系数值峰值为-210 μV·℃-1,成矿温度峰值为270 ℃)。前者包括石英脉型与蚀变岩型,在矿体走向与夹皮沟主断裂一致及相交的矿区中均有发育;后者属石英脉型,主要在矿体走向与夹皮沟主断裂相交的矿区发育,叠加于高温世代热液矿化之上。高温热液矿化世代是主成矿世代,但有叠加的部位矿化增强。  相似文献   
986.
It is well known that the slip rate of Kunlun Fault descends at the east segment, but little known about the Awancang Fault and its role in strain partitioning with Kunlun Fault. Whether the sub-strand(Awancang Fault) can rupture simultaneously with Kunlun Fault remains unknown. Based on field investigations, aerial-photo morphological analysis, topographic surveys and 14C dating of alluvial surfaces, we used displaced terrace risers to estimate geological slip rates along the Awancang Fault, which lies on the western margin of the Ruoergai Basin and the eastern edge of the Tibetan plateau, the results indicate that the slip rate is 3mm/a in the middle Holocene, similar to the reduced value of the Kunlun Fault. The fault consists of two segments with strike N50° W, located at distance about 16km, and converged to single stand to the SE direction. Our results demonstrate that the Awancang fault zone is predominantly left-lateral with a small amount of northeast-verging thrust component. The slip rates decrease sharply about 4mm/a from west to east between the intersection zone of the Awancang Fault and Kunlun Fault. Together with our previous trenching results on the Kunlun Fault, the comparison with slip rates at the Kunlun fault zone suggests that the Awancang fault zone has an important role in strain partitioning for east extension of Kunlun Fault in eastern Tibet. At the same time, the 15km long surface rupture zone of the southeast segment was found at the Awancang Fault. By dating the latest faulted geomorphologic surface, the last event may be since the 1766±54 Cal a BP. Through analysis of the trench, there are four paleoearthquake events identified recurring in situ on the Awancang Fault and the latest event is since (850±30)a BP. The slip rate of the Awancang Fault is almost equivalent to the descending value of the eastern part of the east Kunlun Fault, which can well explain the slip rate decreasing of the eastern part of the east Kunlun Fault(the Maqin-Maqu segment)and the characteristics of the structure dynamics of the eastern edge of the Tibet Plateau. The falling slip rate gradient of the eastern Kunlun Fault corresponds to the geometric characteristic. It is the Awancang Fault, the strand of the East Kunlun Fault that accommodates the strain distribution of the eastward extension of the east Kunlun Fault. This study is helpful to seismic hazard assessment and understanding the deformation mechanism in eastern Tibet.  相似文献   
987.
为了给兰州乃至西北地区的地震安全性评价和重大工程抗震设计提供参考,在兰州地区选取4个不同类别场地,完成由10家单位参加、使用不同仪器剪切波速现场测试误差专项实验,研究该地区剪切波速实测误差分布规律,讨论测试误差对地表加速度反应谱影响的统计特征,并给出该地区剪切波速测试误差评价。结果表明:兰州地区各单位剪切波速测试误差具有明显规律性,测试误差绝大部分符合标准正态分布,且误差大小不随深度和场地类别而改变;兰州地区波速测试水平优于全国平均水平,Ⅰ类、Ⅱ类和Ⅲ类场地的剪切波速测试精度较高,偏差较小,其平均标准差可以定为10%;就兰州地区而言,其1倍波速测试标准差引起PGA最大偏差为25%,2倍标准差为50%;给定波速测试误差下反应谱变化程度与输入波形相关,输入波频率成分与场地频率成分接近的地震输入下,误差影响较大,反之则影响较小。  相似文献   
988.
Because of the strong uplift of the Qilian Shan since late Cenozoic,the drainage basins that are derived from the mountains have undergone strong tectonic deformation.So the typical geomorphology characteristics of these drainage basins may indicate the strong tectonic movement in the region.For example,the Shule River drainage basin,which originates from the western part of the Qilian Shan owns unique geomorphology characteristics which may indicate the neotectonic movement. Stream networks of the Shule drainage basin extracted from the DEM data based on GIS spatial analysis technology are graded into five levels using Strahler classification method.Four sub-catchments,numbered 1,2,3 and 4 are chosen for detailed analysis.Furthermore,the four sub-catchments,the hypsometric integral curves,Hack profiles,SL index and average slope of the Shule drainage basin are determined by GIS tools.In addition,we analyzed the slope spectrum of the Shule drainage basin. The average elevation of the Shule drainage basin is very high,however,the slope of the drainage basin is very low,the gentle slope occupies so large area proportion that the slope spectrum shows a unimodal pattern and a peak value is in low slope region (0°~5°),so tectonic movement has a strong influence on the drainage basin.Under the intensive impact of the tectonic movement of the active fault and regional uplift,the hypsometric integral curve is sigmoid,revealing that the Shule drainage basin is in the mature stage.The Hack profile is on a convex,the longitudinal profile is best fitted by linear fitting and the abnormal data of the SL index of the Shule River has a good fit with the section through which the active fault traverses,that means the tectonic movement of the active fault has strong influence on the river's SL index.It is worth noting that lithologic factors also have great impact on the river geomorphology in some sections. According to the above analysis,we recognize that in the interior of active orogen,the evolution of river geomorphology usually is influenced by tectonic movement and reveals the regional neotectonics in turn.  相似文献   
989.
Using quantitative geomorphic factors for regional active tectonic evolution is becoming more and more popular. Qilian Mountains-Hexi Corridor which locates in the northern edge of Qinghai-Tibet plateau is the most leading edge of the plateau's northward extension. The uplift rate of all segments and the intensity of influence from tectonic activity are the important evidences to understand the uplift and extension of the plateau. Heihe River Basin is located at the northern piedmont of the western segment of Qilian Mountains, the development of the rivers is influenced by the tectonic activity of the Qilian Mountains, and the unique river morphology is important carriers of the regional tectonic uplift. Geomorphologic indexes such as hypsometric integral, geomorphologic comentropy and river longitudinal profiles were extracted by GIS tools with free access to the Shuttle Radar Topography Mission(SRTM)DEMs, and according to the different expression of the geomorphological indexes in the Heihe River Basin, we divided the drainage basin into two parts and further compared them to each other. Recent studies reveal that obvious differences exist in the landscape factors(hypsometric integral, geomorphology entropy and river profiles)in the east and west part of the Heihe Basin. The structural intensity of the west part is stronger than that of the east, for example, in areas above the main planation surface on the western part, the average HI value is 0.337 8, and on the eastern part the HI value is 0.355. Accordingly, areas under the main planation surface are just on the contrary, indicating different structural strength on both sides. Similar phenomenon exists in the whole drainage basins. Furthermore, by comparing the fitting river profiles with the real river profiles, differential uplift is derived, which indicates a difference between west and east(with 754m on the western part and 219m on the east). Comprehensive comparison and analysis show that the lithologic factors and precipitation conditions are less influencing on the geomorphic factors of the study area, and the tectonic activities, indicated by field investigation and GPS inversion, are the most important element for geomorphic evolution and development. The variation of the geomorphologic indexes indicates different tectonic strength derived from regional structures of the Qilian Shan.  相似文献   
990.
高强防寒保温泡沫混凝土研制与工程应用   总被引:1,自引:1,他引:0  
袁克阔 《冰川冻土》2016,38(2):438-444
复杂地层寒区隧道填充材料需兼具防寒保温、抗震和优化支护等性能,为解决常规泡沫混凝土在复杂地层寒区隧道应用中存在的不足,通过正交试验得到了自制泡沫混凝土的最佳配合比,研制了一种高强防寒保温泡沫混凝土.通过室内试验,研究了所制泡沫混凝土的保温性能和冻融劣化特征,并采用数值分析方法探讨了西藏嘎隆拉隧道初衬和二衬之间加设泡沫混凝土垫层后的温度场变化规律.结果表明:该泡沫混凝土具有较好的保温性能和抗冻融损伤性能,同时强度、延性较普通泡沫混凝土都有明显改善.数值计算结果显示,当在初衬和二衬之间增设泡沫混凝土垫层时,其相应位置的温度变幅由不设置时的4.5℃变为2℃,最低温度由1℃提高到了3℃,表明加设所研制泡沫混凝土垫层对于阻止围岩受到隧道内冷空气的侵害具有非常显著的效果.  相似文献   
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