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21.
陕西省夏季降水量的长期变化趋势   总被引:3,自引:0,他引:3  
庞文保  杨文峰 《高原气象》1997,16(3):326-330
对榆林、西安、汉中夏季降水量的历年变化进行分析,并用灰色拓扑方法作了趋势预测。分析表明,关中的初夏旱和伏旱突出,半湿润地区的西安夏季多年平均降水量比半干旱地区的榆林还少。自1951年以来,陕西省夏季降水量的总趋势是:关中、陕南有下降趋势,而陕北下降趋势不明显。另外,关中、陕南的夏季降水还存在连续几年多雨或连续几年少雨的时段,而陕北则呈现出少雨年和多雨年交替出现的高频振荡。  相似文献   
22.
二道沟矿床绢云母的^39Ar/^40Ar年龄及其地质意义   总被引:9,自引:0,他引:9  
庞奖励  裘愉卓 《矿物学报》1997,17(4):442-447
本文通过对绢云母39Ar-40Ar坪年龄的研究,得到二道沟金矿床的成矿年龄为140±2.8Ma;从年代学方面证实了金矿化与对面沟花岗闪长岩无直接关系,而与火山岩和次火山岩有密切的关系;该矿床是-岩浆热液为主要来源而混入有一部分大气降水的浅成低温热液型金矿床。  相似文献   
23.
恢复烃源岩古地层压力和对于研究其生留排烃过程具有重要意义。Nakayama[1]等在开展盆地模拟研究时应用Rubey(1959)和Chapman(197)等人提出的数学地质模型对欠压实地层的古地层压力进行恢复。本文通过对松辽盆地欠压实地层的研究发现欠压实因子随地层厚度、埋深、围岩渗透性等地质条件的不同而改变,在此基础上提出了欠压实地层压力恢复的统计模拟法,克服了目前Nakayama[1]等将地层埋藏过程中的欠压实因子视为常数的不足,从而使计算结果更接近实际。统计模拟法在松辽盆地的应用结果表明了这一方法在实用中的可行性和有效性。  相似文献   
24.
豫西南蒲塘金矿床地质特征及成因探讨   总被引:4,自引:0,他引:4  
蒲塘金矿床属爆破角砾岩型,主成矿期温度236~318℃,主矿体受爆破角砾岩筒控制,含矿围岩蚀变及矿体变化规律明显,黄铁矿及黄铜矿是金的主要载体矿物。矿石中Au-Cu含量呈正消长关系,成矿物质主要来源于花岗岩,从花岗岩的侵入到矿床的形成,大体上经过了晚燕山期浅成初始岩浆侵入-爆破,超浅成强烈爆破及热液成矿三个阶段。  相似文献   
25.
通过9煤层、11煤层、12-1煤 层中 工程对 FE9'断层的 揭露 ,并结合 巷探 、钻探 等手段 ,对 FE9'断层 的空 间 展布有了新 的认 识。对 周边 12-2煤层 的规划 开发、断层样 式的 认识乃 至井 田应力 场分 布的研 究提 供了依 据。  相似文献   
26.
Asynchronous Holocene climatic change across China   总被引:1,自引:0,他引:1  
A review of Holocene climatic variations in different parts of China shows that they were asynchronous. Proxy data from ice cores, pollen, loess, lacustrine sediments, and changes of sea and lake levels demonstrate that many warm and cold oscillations have occurred in China during the Holocene, including a most important climatic event known as the “Holocene optimum,” a milder and wetter period, and that the duration and amplitude of the optimum period, as well as its start and end times, differed in different parts of China. Uplift of the Tibetan plateau over the past millions of years led to the development of the monsoon climate and to complex atmospheric circulation over continental China during the Holocene. As a result, the Holocene optimum began and terminated earlier in high-altitude regions of western China than at lower elevations in eastern China, and the amplitude of the variations was lower in the east. This suggests that the western higher-altitude areas were more sensitive to climatic change than were the eastern lower-altitude areas. Holocene climatic records in the Dunde and Guliya ice cores do not correspond. Inverse δ18O variations between the two cores indicate that the effects of climate and atmospheric processes on the stable isotopes at the two sites differed. The correlation between the isotopic composition of carbonates in lake deposits in western China and climatic variations is similar to that in the ice cores. The climatic resolution in ice cores and lake sediments is higher than that in other media. The lack of precise correspondence of climatic records constructed on the basis of proxy data from different parts of China is a result of the different locations and elevations of the sampling sites, the different resolutions of the source material, and the varied climatic conditions within China. Further work is needed to confirm both the conclusions and the inferences presented here.  相似文献   
27.

According to the theory of elastic mechanics half plane, the mechanical model of roof overburden failure is established. Based on the numerical simulation software FLAC3D, the failure process of roof overburden in 1308 working face is numerically simulated according to the orthogonal experimental design scheme. Matrix analysis and variance analysis are used to analyze and calculate the simulation results to determine the sensitivity of the main control factors to the failure height of overlying rock of mining roof. The results show that: (1) with the increase of mining depth and the advancing distance of working face, the subsidence of roof overburden increases. (2) The order of influence of main controlling factors on roof overburden failure height is: mining depth > working face length > internal friction angle > mining thickness > coal seam dip angle > cohesion > tensile strength. (3) Variance analysis showed that the mining depth height was significant, the working face length and internal friction angle were significant, and the significance of working face length was slightly greater than that of internal friction angle, and other factors were not significant.

  相似文献   
28.
Lei  Chao  Ren  Jianye  Pang  Xiong 《Marine Geophysical Researches》2019,40(2):99-110
Marine Geophysical Research - It is curious that the typical feature of high-velocity layer (HVL) underneath the crust for the magma-rich margin was found in the magma-poor margin of the South...  相似文献   
29.
Previous studies have shown that shallow groundwater in arid regions is often not in equilibrium with near‐surface boundary conditions due to human activities and climate change. This is especially the case where the unsaturated zone is thick and recharge rate is limited. Under this nonequilibrium condition, the unsaturated zone solute profile plays an important role in estimating recent diffuse recharge in arid environments. This paper combines evaluation of the thick unsaturated zone with the saturated zone to investigate the groundwater recharge of a grassland in the arid western Ordos Basin, NW China, using the soil chloride profiles and multiple tracers (2H, 18O, 13C, 14C, and water chemistry) of groundwater. Whereas conventional water balance and Darcy flux measurements usually involve large errors in recharge estimations for arid areas, chloride mass balance has been widely and generally successfully used. The results show that the present diffuse recharge beneath the grassland is 0.11–0.32 mm/year, based on the chloride mass balance of seven soil profiles. The chloride accumulation age is approximately 2,500 years at a depth of 13 m in the unsaturated zone. The average Cl content in soil moisture in the upper 13 m of the unsaturated zone ranges from 2,842 to 7,856 mg/L, whereas the shallow groundwater Cl content ranges from 95 to 351 mg/L. The corrected 14C age of shallow groundwater ranges from 4,327 to 29,708 years. Stable isotopes show that the shallow groundwater is unrelated to modern precipitation. The shallow groundwater was recharged during the cold and wet phases of the Late Pleistocene and Holocene humid phase based on palaeoclimate, and consequently, the groundwater resources are nonrenewable. Due to the limited recharge rate and thick unsaturated zone, the present shallow groundwater has not been in hydraulic equilibrium with near‐surface boundary conditions in the past 2,500 years.  相似文献   
30.
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