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91.
简要介绍了利用高分辨率卫星影像GeoEye-1的特点针对新疆边境不能实施航空摄影的特殊地带,提出一套利用最少控制点可满足基础测绘要求的技术实施方案. 相似文献
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为了有效去除薄云对高分光学影像造成的干扰,解决传统算法自动化程度低、去薄云效果不理想的问题,提出改进的薄云最优化变换(Improved Haze-Optimized Transformation,IHOT)算法。首先采用暗原色先验知识从薄云影像中自动选取晴空区,运用薄云最优化变换检测薄云,再创新性地利用植被区域云检测精度较高的特点改进检测结果,最终使用虚拟云点法进行薄云去除。利用高分一号影像进行实验,证明该文提出的算法能够有效地去除薄云对高分影像的影响,尤其对人造地物的色彩和纹理信息恢复效果优于传统算法。 相似文献
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95.
Yinhe Luo Jianghai Xia Yixian Xu Chong Zeng Richard D. Miller Qingsheng Liu 《Pure and Applied Geophysics》2009,166(3):353-374
Multichannel analysis of surface waves (MASW) method is a non-invasive geophysical technique that uses the dispersive characteristic
of Rayleigh waves to estimate a vertical shear (S)-wave velocity profile. A pseudo-2D S-wave velocity section is constructed
by aligning 1D S-wave velocity profiles at the midpoint of each receiver spread that are contoured using a spatial interpolation
scheme. The horizontal resolution of the section is therefore most influenced by the receiver spread length and the source
interval. Based on the assumption that a dipping-layer model can be regarded as stepped flat layers, high-resolution linear
Radon transform (LRT) has been proposed to image Rayleigh-wave dispersive energy and separate modes of Rayleigh waves from
a multichannel record. With the mode-separation technique, therefore, a dispersion curve that possesses satisfactory accuracy
can be calculated using a pair of consecutive traces within a mode-separated shot gather. In this study, using synthetic models
containing a dipping layer with a slope of 5, 10, 15, 20, or 30 degrees and a real-world example, we assess the ability of
using high-resolution LRT to image and separate fundamental-mode Rayleigh waves from raw surface-wave data and accuracy of
dispersion curves generated by a pair of consecutive traces within a mode-separated shot gather. Results of synthetic and
real-world examples demonstrate that a dipping interface with a slope smaller than 15 degrees can be successfully mapped by
separated fundamental waves using high-resolution LRT. 相似文献
96.
《中国科学D辑(英文版)》2008,(9)
The authors processed the seismic refraction Pg-wave travel time data with finite difference tomography method and revealed velocity structure of the upper crust on active block boundaries and deep features of the active faults in western Sichuan Province. The following are the results of our investigation. The upper crust of Yanyuan basin and the Houlong Mountains consists of the superficial low-velocity layer and the deep uniform high-velocity layer, and between the two layers, there is a distinct, and gently west-dipping structural plane. Between model coordinates 180-240 km, P-wave velocity distribution features steeply inclined strip-like structure with strongly non-uniform high and low velocities alternately. Xichang Mesozoic basin between 240 and 300 km consists of a thick low-velocity upper layer and a high-velocity lower layer, where lateral and vertical velocity variations are very strong and the interface between the two layers fluctuates a lot. The Daliang Mountains to the east of the 300 km coordinate is a non-uniform high-velocity zone, with a superficial velocity of approximately 5 km/s. From 130 to 150 km and from 280 to 310 km, there are extremely distinct deep anomalous high-velocity bodies, which are supposed to be related with Permian magmatic activity. The Yanyuan nappe structure is composed of the superficial low-velocity nappe, the gently west-dipping detachment surface and the deep high-velocity basement, with Jinhe-Qinghe fault zone as the nappe front. Mopanshan fault is a west-dipping low-velocity zone, which extends to the top surface of the basement. Anninghe fault and Zemuhe fault are east-dipping, tabular-like, and low-velocity zones, which extend deep into the base-ment. At a great depth, Daliangshan fault separates into two segments, which are represented by drastic variation of velocity structures in a narrow strip: the west segment dips westward and the east segment dips eastward, both stretching into the basement. The east margin fault of Xichang Mesozoic basin features a strong velocity gradient zone, dipping southwestward and stretching to the top surface of the basement. The west-dipping, tabular-like, and low-velocity zone at the easternmost segment of the profile is a branch of Mabian fault, but the reliability of the supposition still needs to be confirmed by further study. Anninghe, Zemuhe and Daliangshan faults are large active faults stretching deep into the basement, which dominate strong seismic activities of the area. 相似文献
97.
长江三峡地区全新世环境演变及其古文化响应 总被引:1,自引:1,他引:0
依据长江三峡地区大九湖和玉溪剖面AMS14C测年数据(校正为日历年)建立了约9.3~2ka BP高分辨率多环境代用指标(δ13C、K、腐殖化度、抱粉总浓度、Rb、Sr及Rb/Sr)的变化曲线,并在此基础上与研究区周边反映全新世气候环境变化的不同沉积记录进行综合对比分析.与此同时,本文还通过对研究区古遗址和古洪水层的统计分析,获取了本区新石器以来古文化兴衰变迁和古洪水发生的完整信息.研究结果表明:(1)本区全新世大暖期约出现在7.6~4 ka BP.9.3~7.6 ka BP,本区气候极不稳定,波动幅度大,总体上冷湿,多次出现显著的降温或干旱事件(9.1、8.2和7.7 ka BP前后);4~2 ka BP,本区气候较此前偏干凉,且波动频繁.(2)7.6~ka BP的大暖期分为三个演变阶段:即6~5 ka BP为大暖期的鼎盛期,气候稳定,温暖湿润,植被及生态条件优越,洪水发生频率低;7.6~6 ka BP和5~4 ka BP为大暖期中具有不稳定特征的过渡期,其中5~4 ka BP及4 ka BP前后的降温事件仍较显著,且多发洪水.(3)本区史前古文化的主要形成发展期与大暖期持续阶段相对应,其中耕作业相对发达的大溪文化繁荣期出现在大暖期中的鼎盛阶段(约6~5 ka BP),大溪文化前后处于低潮及表现为衰退现象的古文化则对应气候环境的不稳定期,总体上,研究区古文化响应气候环境变化的主要方式是通过改变其生业结构的途径来实现的. 相似文献
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99.
1 IntroductionThe shallow water equations (SWE) are frequent-ly used as a mathematical model for water flows incoastal areas, lakes, estuaries, etc. Thus, they are animportant tool to simulate a variety of problems relat-ed to coastal engineering, environment, ecology, etc.(Bermúdez et al., 1998). On the basis of solving theone-dimensional (1D) SWE, Hu et al. (2000) have de-veloped a model capable of simulating storm wavespropagating in the coastal surf zone and overtopping asea wall. Ano… 相似文献
100.
高分辨率全球尺度水文模型发展综述 总被引:1,自引:0,他引:1
主要从高分辨率全球尺度水文模型(HRGHM)的发展历程、模型的一般结构与特点、模型数据集的发展和模型所面临的主要问题等几个方面对全球尺度水文模型的发展情况进行了综述。HRGHM能够使水文学家从全球的角度深入了解水资源的产生及循环过程,并且对相关环境问题的解决、气候的模拟与预报以及水资源的管理具有重要的意义。经过几十年的发展和努力,在全球尺度数据集的研究和发展方面已经取得了丰硕的成果,并且在HRGHM的实践中得以应用,但空间数据的缺乏仍然是其发展的最大羁绊。HRGHM所面临的问题除了数据的匮乏还在于非线性问题、尺度问题和确定性问题等水文机理和技术层面的问题。 相似文献