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981.
海泡石用途广泛。在我国境内已有 13个省 (区 )发现这一矿产。赣、湘、苏、陕等地海泡石占全国已知海泡石储量的 80 %以上。海泡石矿床多产于地台沉积坳陷带边缘 ,成矿时代主要为二叠纪和第三纪 ,矿床分为沉积型 (陆相沉积、海相沉积、火山沉积 )和热液型两大类 相似文献
982.
南黄海盆地特殊的地震地质条件导致准确获得海相地层速度存在困难。基于本区的多道地震资料,联合使用多数据质控速度分析、初至波层析反演及层控网格层析反演3种方法,提取出了较为可靠的海相中-古生界速度信息。结合提取的地震速度及下扬子区已有钻井信息,总结了南黄海主要海相地层的速度分布。本区海相地层速度整体呈高低相间分布结构,存在速度的突变和倒转。海相下构造层速度高,不同地层间速度差异较小。由于海相下构造层无钻井资料约束,获得的速度信息仍存在不确定性。 相似文献
983.
Fouling diatoms are a main component of biofilm,and play an important role in marine biofouling formation. We investigated seasonal variations in fouling diatom communities that developed on glass slides immersed in seawater,on the Yantai coast,northern Yellow Sea,China,using microscopy and molecular techniques. Studies were conducted during 2012 and 2013 over 3,7,14,and 21 days in each season. The abundance of attached diatoms and extracellular polymeric substances increased with exposure time of the slides to seawater. The lowest diatom density appeared in winter and the highest species richness and diversity were found in summer and autumn. Seasonal variation was observed in the structure of fouling diatom communities. Pennate diatoms Cylindrotheca,Nitzschia,Navicula,Amphora,Gomphonema,and Licmophora were the main fouling groups. Cylindrotheca sp. dominated in the spring. Under laboratory culture conditions,we found that Cylindrotheca grew very fast,which might account for the highest density of this diatom in spring. The lower densities in summer and autumn might result from the emergence of fouling animals and environmental factors. The Cylindrotheca sp. was identified as Cylindrotheca closterium using18 S rDNA sequencing. The colonization process of fouling diatoms and significant seasonal variation in this study depended on environmental and biological factors. Understanding the basis of fouling diatoms is essential and important for developing new antifouling techniques. 相似文献
984.
轨迹子段匹配是轨迹数据挖掘的重要手段,针对其计算复杂度较高、受噪声影响大的问题,提出了一种融合自适应希尔伯特地理网格编码的多层级轨迹编码树结构,在可接受的建树代价下,形成了从轨迹整段到最小片段的层次化组织形式和子段从属关系表达结构,并在轨迹片段编码树的基础上,设计了相似子段匹配算法,将复杂的空间计算转化为空间编码的字符串前缀匹配操作,极大地降低轨迹子段匹配的计算复杂度。实际轨迹数据的实验表明,在不影响匹配准确率的前提下,提出的子段匹配方法的效率与基于经典距离的相似性度量方法相比,有超过一个数量级的性能提升。 相似文献
985.
986.
987.
牙形石广泛分布于寒武纪至三叠纪的海洋里。三叠纪牙形石的种类、形态、大小和产出频率受海水盐度、深度、温度和水动力条件等因素控制,不同的牙形石生态特征即牙形石相反映不同的沉积环境,所以,根据三叠纪牙形石相和牙形石特征属种的丰度,不但可区分三叠纪不同的沉积相区(台地相区、台地边缘相区、盆地相区),恢复三叠纪古地理面貌,而且可划分出牙形石生物地理区。中国早三叠世牙形石归属特提斯生物大区亚洲生物省,并可进一步划分出两个生物亚省和若干生态区。 相似文献
988.
989.
The definition of active block is given from the angles of crustal deformation and strain. The movement and strain parameters of active blocks are estimated according to the unified velocity field composed of the velocities at 1598 GPS stations obtained from GPS measurements carried out in the past years in the Chinese mainland and the surrounding areas. The movement and strain conditions of the blocks are analyzed. The active blocks in the Chinese mainland have a consistent E-trending movement component, but its N and S components are not consistent. The blocks in the western part have a consistent N-trending movement and the blocks in the eastern part have a consistent S-trending movement. In the area to the east of 90°E, that is the area from Himalayas block towards NE, the movement direction of the blocks rotates clockwisely and the movement rates of the blocks are different. Generally, the movement rate is large in the west and south and small in the east and north with a difference of 3 to 4 times between the rates in the west and east. The distributions of principal compressive strain directions of the blocks are also different. The principal strain of the blocks located to the west of 90oE is basically in the SN direction, the principal compressive strain of the blocks in the northeastern part of Qingzang plateau is roughly in the NE direction and the direction of principal compressive strain of the blocks in the southeastern part of Qingzang plateau rounds clockwisely the east end of Himalayas structure. In addition, the principal strain and shear strain rates of the blocks are also different. The Himalayas and Tianshan blocks have the largest principal compressive strain and the maximum shear strain rate. Then, Lhasa, Qiangtang, Southwest Yunnan (SW Yunnan), Qilian and Sichuan-Yunan (Chuan-Dian) blocks followed. The strain rate of the blocks in the eastern part is smaller. The estimation based on the stain condition indicates that Himalayas block is still the area with the most intensive tectonic activity and it shortens in the NS direction at the rate of 15.2±1.5 mm/a. Tianshan block ranks the second and it shortens in the NS direction at the rate of 10.1±0.9 mm/a. At present, the two blocks are still uprising. It can be seen from superficial strain that the Chinese mainland is predominated by superficial expansion. Almost the total area in the eastern part of the Chinese mainland is expanded, while in the western part, the superficial compression and expansion are alternatively distributed from the south to the north. In the Chinese mainland, most EW-trending or proximate EW-trending faults have the left-lateral or left-lateral strike-slip relative movements along both sides, and most NS-trending faults have the right-lateral or right-lateral strike-slip relative movements along both sides. According to the data from GPS measurements the left-lateral strike-slip rate is 4.8±1.3 mm/a in the central part of Altun fault and 9.8±2.2 mm/a on Xianshuihe fault. The movement of the fault along the block boundary has provided the condition for block movement, so the movements of the block and its boundary are consistent, but the movement levels of the blocks are different. The statistic results indicate that the relative movement between most blocks is quite significant, which proves that active blocks exist. Himalayas, Tianshan, Qiangtang and SW Yunnan blocks have the most intensive movement; China-Mongolia, China-Korea (China-Korea), Alxa and South China blocks are rather stable. The mutual action of India, Pacific and Philippine Sea plates versus Eurasia plate is the principal driving force to the block movement in the Chinese mainland. Under the NNE-trending intensive press from India plate, the crustal matter of Qingzang plateau moves to the NNE and NE directions, then is hindered by the blocks located in the northern, northeastern and eastern parts. The crustal matter moves towards the Indian Ocean by the southeastern part of the plateau. 相似文献
990.
现浇薄壁管桩是处理大面积软土地基的一项新技术,目前已在沿海软土地区高速公路建设中得到了一定的应用,但其产生的时间较短,开展的研究相对较少,利用Plaxis岩土工程有限元软件对现浇薄壁管桩(PCC桩)的工作特性、荷载传递规律及其影响因素、加固机理等方面进行了详细的分析,结果表明,桩外壁摩阻力随桩深近乎呈线性分布,桩内壁摩擦力只在桩下端一定长度内有所发挥,桩芯土体具有较好的闭塞效应,研究成果具有较大的指导意义. 相似文献