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971.
José Carlos de Araújo 《地球表面变化过程与地形》2007,32(13):2005-2018
A new equation to assess hillslope sediment production, based on physical and probabilistic approaches, is presented. The equation, which allows the computation of the delivery ratio for every event, considers the physical variables of travel distance, stream power, settling velocity and gross erosion. The probability density function that arises from the new formulation is solved using the principle of maximum entropy. Based on data from five watersheds in both tropical and temperate zones, the new delivery parameter Kv is calibrated and associated with vegetation cover and conservation practice. The proposed equation is rationally based in relation to parameter Kv. The entropy‐based equation was applied to assess sediment yield in two other experimental watersheds, showing good predictability for the set (mean absolute error of 20·8%). No systematic error was found in the analysed data. The entropy‐based equation showed good predictability for long‐term sets of data and for high‐erosivity events, but did not perform well for the low‐erosivity ones. Copyright © 2007 John Wiley & Sons, Ltd. 相似文献
972.
Coastal erosion is an immense economic and social problem that has been receiving increased attention in recent years. A number of devices have been developed to determine the sediment stability in coastal areas: laboratory and field flumes; a range of different erosion devices; shear vanes and fall cone penetrometers. The cohesive strength meter (CSM) erosion device was developed to determine in situ the temporal and spatial variations in the erosion threshold of muddy intertidal sediments. Technological developments have enabled considerable improvements to be made to the original design over the last 15 years. 相似文献
973.
A vane fitted to a standard shear vane tester is described, the purpose of which is to obtain better measurements of the rheological properties of soft, surficial, intertidal muds (and consequently, variations in their erodability). Specifications and geometry of this vane are presented. The computation procedure is detailed, so that the methodology can be applied to any vane tester. The main improvement is a greater vertical resolution, typically less than 1 cm. Sets of direct measurements with this equipment and correlation with dry densities for three intertidal mudflats (estuaries and bay) are presented. 相似文献
974.
Subsidence history and forming mechanism of anomalous tectonic subsidence in the Bozhong depression, Bohaiwan basin 总被引:1,自引:0,他引:1
MüLLER R. Dietmar 《中国科学D辑(英文版)》2007,50(9):1310-1318
The Bozhong depression of the Bohaiwan basin belongs to a family of extensional basins in East China, but is quite different from other parts of the basin. The Cenozoic subsidence of the depression is controlled by a combination of lithospheric thinning and polycyclic strike-slip movements. Three episodic rifts have been identified, i.e. Paleocence-early Eocene, middle-late Eocene and Oligocene age. The depression underwent syn-rift and post-rift stages, but two episodic dextral movement events of the strike-slip faults modify the subsidence of the Bozhong depression since the Oligocene. The early dextral movement of the Tan-Lu fault associated with crustal extension resulted in accelerated subsidence during the time of deposition of the Dongying Formation with a maximum thickness of 4000 m. A late reactivation of dextral movement of the Tan-Lu fault began in late Miocene (about 12 Ma), which resulted in the intense subsidence of Minghuazhen Formation and Quaternary. In addition, dynamic mantle convection-driven topography also accelerated the post-rift anomalous subsidence since the Miocene (24.6 Ma). Our results indicate that the primary control on rapid subsidence both during the rift and post-rift stages in the Bozhong depression originates from a combination of multiple episodic crustal extension and polycyclic dextral movements of strike-slip faults, and dynamic topography. 相似文献
975.
CHEN QuanHong LI WenHou GAO YongXiang GUO YanQin FENG JuanPing ZHANG DaoFeng CAO HongXia LIANG JiWei 《中国科学D辑(英文版)》2007,50(Z2):47-58
The deep-lake facies of the Yanchang Formation represents a large outflowing lake basin in the Ordos area. Its deposition can be divided into four stages lake genetic and expanding stage, peak stage, inversion stage and dying stage. All the stages are obviously consistent with the evolution of depositional environment and the paleoclimate in the region. The study indicates that the lake basin has evolution fluctuations from highstand to lowstand for four times in its evolution history, and the deposition center of the lake has not obviously moved, staying along the Huachi-Yijun belt. The deep lake sedimentary system mainly consists of deep water deltas and turbidite fans during the entire evolution course of the lake basin in the Late Triassic. The former mainly developed on the slope of steep shore of the delta in the early period of the deep-water expansion and gradually experienced a big shift from deep-water deltas to shallow-water platform delta. And the latter appeared almost in all the above stages and had two types of turbidite fans, slope-moving turbidite fans and slump turbidite fans. The slope-moving turbidite fans have relatively complete facies belts overlapping one another vertically and consist of the slope channel of inter fans, the turbidite channel, inter turbidite channel and turbidite channel front of middle fans and outer fans (or lakebottom plain). However, the slide-moving turbidity fans are formed in the deep lake with their microfacies difficult to be distinguished, and only the center microfacies and edge microfacies can be determined. The two types of the turbidity fans are similarly distributing in the near-root-slope and far-root-slope regions. The deep-lake deposition governs the distribution of the hydrocarbon and reservoir, while the slope-moving turbidite fans are excellent reservoirs for oil-gas exploration due to their great thickness, widespread distribution and accumulation properties. 相似文献
976.
977.
中国含油气盆地构造分析主要进展与展望 总被引:4,自引:2,他引:4
本文简要总结了中国含油气盆地构造分析的主要进展。中国区域大地构造理论特别是板块构造理论,对于指导盆地构造研究起了重要作用。通过各种地球物理探测方法,揭示了中国含油气盆地的上地幔结构,地壳结构、基底结构与盖层构造的关系。中国含油气盆地在地质历史中的演化过程十分复杂,伸展盆地、前陆盆地、走滑盆地、克拉通盆地和叠合具有各自独特的地球动力学系统。构造样式分析是盆地构造分析的重要方面,直接与寻找油气圈闭有关,可以划分出伸展构造、挤压构造、走滑构造、反转构造和潜山-披覆构造等。断裂和不含油气盆地中的重要构造要素,控制着油气运聚成藏、叠合盆地多期成盆、多期改造造成的复杂构成图像,是中国含油气盆地的重要特色之一。展望21世纪 中国油气盆地构造分析,需要重点关注的是:叠合盆地形成演化和地球动力学过程分析;盆-山耦合过程的深部-浅部耦全过程分析;盆地三维构造精细描述和盆地模拟技术,盐构造和天然气构造分析。 相似文献
978.
福建三明盆地工程地质条件对三明市工程建设和城市规划起决定性作用。三明盆地是个构造断陷盆地,地质构造复杂,岩土体工程地质条件复杂,应根据不同建筑场地合理规划工程建设,确定工程勘察手段及工作量,确保工程建设经济、合理及安全。 相似文献
979.
塔里木盆地满西地区海相油气成藏规律 总被引:4,自引:0,他引:4
满西地区是塔里木盆地海相油气藏的主要富集区之一,侧向运移是该区油气成藏的一个重要特征。该区油气藏的形成和分布主要受控干古隆起背景、东河砂岩优质输导层的展布以及中一新生代(尤其是晚喜马拉雅期)构造变动等三大因素。古隆起背景的存在是该区油气藏形成和富集的关键。研究表明,哈得逊古隆起及其斜坡上倾部位是满西地区油气聚集成藏的最有利地区,石炭系东河砂岩是油气富集的主要层位,东河砂岩地层圈闭和地层一构造复合型圈闭是油气藏形成的主要类型。认为满西地区大中型油气田的勘探应以哈得逊古隆起及其西斜坡为重点。 相似文献
980.
针对现有防洪效益计算模型所需资料多、计算复杂等问题,本文在符合防洪效益特点的宏观假定基础上,提出了防洪效益计算的洪水频率面积系数和洪水频率严重系数,并用水文学和数理统计的有关原理导出了流域防洪系统效益计算的宏观模型。算例研究的结果表明:模型理论上合理,实际应用简单,可操作性强。 相似文献