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811.
史津梅  许维俊  徐亮  金欣  朱玉军 《冰川冻土》2019,41(6):1359-1366
利用2005-2013年青海省东部农业区14个县的雷电、雷电灾害、人口数量和生产总值等资料,采用《雷电灾害风险评估技术规范》(DB 50/214-2006)中的雷电灾害易损性风险评估指标,分析了该地的雷电灾害风险及区划,该风险区划对青海省东北农业区防御雷电灾害规划具有很好的参考价值,也是制定科学合理的雷电防护技术路线的重要依据:青海省东部农业区9年间共出现雷电3 801 d,最早出现在3月下旬,最晚结束在11月上旬,雷电出现最多地区为大通县;雷电灾害共出现47次,最早出现在4月,10月份结束,发生最多在6月份,盛夏7月雷电灾害却少,西宁市和湟源县雷电灾害出现最多,湟中县雷电造成的人员伤亡最多,共伤亡11人,大部分在山间劳作的村民和牧民,与青海省东部农业区发生的其它气象灾害相比,雷电灾害最容易造成人员和牲畜伤亡。雷电灾害风险以西宁市为中心,向四周扩散逐渐降低,北部地区相对高于南部地区,西宁市、大通县遭受雷电灾害的可能性程度最大,乐都县虽然近9年没有上报的雷电灾情,但它的雷电灾害风险并不低。  相似文献   
812.
The Qilian orogen along the NE edge of the Tibet‐Qinghai Plateau records the evolution of Proto‐Tethyan Ocean that closed through subduction along the southern margin of the North China block during the Early Paleozoic. The South Qilian belt is the southern unit of this orogen and dominated by Cambrian‐Ordovician volcano‐sedimentary rocks and Neoproteozoic Hualong complex that contains similar rock assemblages of the Central Qilian block. Our recent geological mapping and petrologic results demonstrate that volcano‐sedimentary rocks show typical rock assembles of a Cambrian‐early Ordovician arc‐trench system in Lajishan Mts. along the northern margin of the Hualong Complex. Island arc rocks including basalt, andesite, dacite, rhyolite, and breccia is in fault contact with ophiolite complex consisting of mantle peridotite, serpentinite, gabbro, dolerite, plagiogranite, and basalt. Accretionary complexes are tectonically separated from the ophiolite‐arc rocks, with various rock assemblages spatially. They consist of pillow basalt, basalt breccia, tuff, chert, and limestone blocks with a seamount origin within the scaly shale in Dingmaoshan and Donggoumeikuang areas, and basalt, chert, and sandstone blocks within muddy shale matrix and mélange at Lajishankou area. Abundant radiolarians occur in red chert, and trilobite, brachiopod, and coral fossils occur within Dingmaoshan limestone blocks. Although partial basalt or chert blocks are highly disrupted, duplex, thrust fault, rootless intrafolial fold, tight fold, and penetrative foliation are well‐developed at Donggoumeikuang area. Spatially, accretionary complexes lie structurally beneath ophiolite complex and above the turbidites of the Central Qilian block. Ophiolite and accretionary complexes are also overlapped by late Ordovician molasse deposits sourced from Cambrian arc‐trench system and the Central Qilian block. These observations demonstrate that a Cambrian‐early Ordovician trench‐arc system within the South Qilian belt formed during the early Paleozoic southward subduction of the South Qilian Ocean collided with the Central Qilian block prior to the late Ordovician.  相似文献   
813.
为探讨中国东部地区变化环境下水循环演变机制,通过水文站网加密观测、构建不同特征试验流域等方法,揭示了不同土地利用和不同城镇化水平下水文要素分布及响应规律。结果表明:①小流域内场次极端降雨局部差异较大,主要受到微地形和风向的影响。②鄞江镇试验流域水位涨幅和单位雨量水位涨幅均高于天然画龙溪试验流域,主要受到了流域大小和城镇化率等因素的影响。③城镇用地和耕地土壤水消退过程较快,林地退水过程相对较慢;浅层10cm、20cm和40cm土壤含水率对降雨滞后响应时间分别为0~0.25h、0.25~0.75h和0.5~0.75h,而深层(60cm和80cm)土壤含水率由于受到优势流的影响,响应较为复杂,响应时间变动范围较大。④小流域地下水对降雨的响应存在滞后性,响应时间为6.5~12h。  相似文献   
814.
Using the GPS velocity data from 27 stations around the Eastern Kunlun fault as constraints,we first invert the slip velocities of the Eastern Kunlun fault,the north boundary fault of the Qaidam basin,the Mani-Yushu fault and the Margai Caka fault before the Kekexili MS8.1 earthquake with a 3-D elastic half-space dislocation model. The deformation field calculated from the slip movement of these faults can be considered the deformation background field of the earthquake. Based on the deformation background field with tectonic implications,we have obtained the strain field and earthquake moment accumulation field. The results show that there are two obvious high moment accumulation rate regions,one of which is the Dongdatan-Xidatan segment of the Eastern Kunlun fault where the M_S8.1 earthquake occurred in 2001.  相似文献   
815.
多孔径瞬变电磁场物理模拟   总被引:1,自引:0,他引:1       下载免费PDF全文
为了提高瞬变电磁法对地探测精度,提出了一种新颖的瞬变电磁装置一多孔径发射装置,并进行了多孔径瞬变电磁场物理模拟观测.分别使用四孔径发射装置和常规回线发射装置,进行不同收一发距情况下的一次场观测,并对铜板在不同埋藏深度情况下的二次响应进行观测,通过比较两种不同装置下的响应曲线和计算观测数据误差,最终发现使用四孔径发射装置可使一次场强度提高34%,可使二次场强度提高31%.结论表明,多孔径发射源可以改变电磁场的空间分布,认为瞬变电磁场存在类相干现象.研究成果对提高瞬变电磁的探测精度具有很重要的意义.  相似文献   
816.
鲜水河断裂作为青藏高原东南部现今运动最为强烈的活动构造,因历史上一系列大震(如1786年康定7级地震、1816年炉霍7级地震和1973年炉霍7.6级地震等)的发生而一向备受关注。本文基于跨越鲜水河断裂道孚段和干宁段的两条密集型GPS剖面自2005年以来的高精度地壳运动观测资料(其中4站为连续GPS观测,23站为每年一期的非连续GPS观测),揭示出鲜水河断裂在汶川8.0级地震之前,一直保持着强烈而稳定的左旋(~10.4±1.0mm/a)兼轻微拉张(~0.3±1.2mm/a)运动。汶川地震的发生,使鲜水河断裂干宁段和道孚段近断层两侧分别发生了量值达13mm和4mm的侧向拉伸,并使干宁—道孚段发生了量值达2.5~10mm的右旋位错,因此,对其现今的左旋运动方式施加了短暂的反向抑制,但汶川地震后,鲜水河断裂的运动状况很快恢复了以往的态势。我们的研究结果表明,汶川地震的发生,使鲜水河断裂的应变积累有所消减,故在一定程度上降低了该断裂未来的地震危险性水平。另外,青藏高原东南部的GPS速度场和鲜水河断裂两侧的应变分析显示,鲜水河断裂所表现的强烈左旋差异运动是由其南侧"流滑带"的东南向逃逸远大于北侧松潘地块的轻微东南向运动所致。  相似文献   
817.
为了提高JOPENS系统的运行质量,探讨分析该系统安装配置过程中遇到的问题、地震台站数据流终端的日常故障分析、数据库方面的故障维护,并结合实际工作,提出具体解决方案,为测震台网技术工作提供指导.  相似文献   
818.
地壳应变率计算的传统方式是将GPS站点组成三角形进行计算,因Matlab与GMT在构造Delaunay三角网时采用不同的算法,对于同一套数据生成结果有明显的差异.通过研究Matlab与GMT构建三角网结果输出的数据格式,利用Perl语言编写程序将两套结果进行转换,实现Matlab与GMT软件在绘制Delaunay三角网时的相互转化并构建同样的三角网结果,绘图时再结合GMT的地形底图,取得了较好的表达效果.  相似文献   
819.
In February 2006, a large amount of unknown floating microorganisms appeared in the Hailang River (HR) in the City of Hailin, Heilongjiang Province, China. The microorganisms caused the river water fouling and threatened the clean water supply of the city. To identify the unknown floating organisms, morphological and histological inspection, PCR, cloning and sequence analysis were conducted. The results revealed that the unknown floating organisms in the river were a novel species that likely belonged to oomycetes in Saprolegniales. The organisms were named Saprolegnia sp. HL0602.  相似文献   
820.
The Silk Road Economic Belt and the 21st-Century Maritime Silk Road Initiative, abbreviated as the Belt and Road Initiative, is a primary development strategy of China’s future international cooperation. Especially, the energy resource cooperation, including oil and gas resources cooperation, is an important part of this initiative. The Belt and Road has undergone complicated geological evolution, and contains abundant mineral resources such as oil, gas, coal, uranium, iron, copper, gold and manganese ore resources. Among these, Africa holds 7.8% of the world’s total proven oil reserves. The oil and gas resources in Africa are relatively concentrated, with an overall low exploration degree and small consumption demand. Nigeria and Libya contain the most abundant oil resources in Africa, accounting for 2.2% and 2.9% of the world’s total reserves, respectively. Nigeria and Algeria hold the richest natural gas resources in Africa, occupying 2.8% and 2.4% of the world’s total reserves, respectively. Africa’s oil and gas resources are mainly concentrated in Egypt, Sultan and Western Sahara regions in the northern Africa, and the Gulf of Guinea, Niger River and Congo River area in the western Africa. The Russia–Central Asia area holds rich petroleum resources in Russia, Kazakhstan, Turkmenistan and Uzbekistan. The potential oil and gas areas include the West Siberia Basin, East Siberia Basin and sea continental shelf in Russia, the northern and central Caspian Basin in Kazakhstan, the right bank of the Amu-Darya Basin, the East Karakum uplift and the South Caspian Basin in Turkmenistan, and the Amu–Daria Basin, Fergana Basin, Afghan–Tajik Basin and North Ustyurt Basin in Uzbekistan. The Middle East oil and gas resources are mainly distributed in the Zagros foreland basin and Arabian continental margin basin, and the main oil-producing countries include Saudi Arabia, Iran and Iraq. The Asia Pacific region is a new oil and gas consumption center, with rapid growth of oil and gas demand. In 2012, this region consumed about 33.6% of the world’s total oil consumption and 18.9% of the world’s total natural gas consumption, which has been ranked the world’s largest oil and gas consumption center. The oil and gas resources are concentrated in China, Indosinian, Malaysia, Australia and India. The abundant European proven crude oil reserves are in Norway, Britain and Denmark and also rich natural gas resources in Norway, Holland and Britain. Norway and Britain contain about 77.5% of European proven oil reserves, which accounts for only 0.9% of the world’s proven reserves. The Europe includes main petroliferous basins of the Voring Basin, Anglo–Dutch Basin, Northwest German Basin, Northeast German–Polish Basin and Carpathian Basin. According to the analysis of source rocks, reservoir rocks, cap rocks and traps for the main petroliferous basins, the potential oil and gas prospecting targets in the Belt and Road are mainly the Zagros Basin and Arabic Platform in the Middle East, the East Barents Sea Basin and the East Siberia Basin in Russia–Central Asia, the Niger Delta Basin, East African rift system and the Australia Northwest Shelf. With the development of oil and gas theory and exploration technology, unconventional petroleum resources will play an increasingly important role in oil and gas industry.  相似文献   
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