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931.
This paper deals with the investigation of the effect of surface stress and conductivity on the propagation of surface wave in isotropic, homogeneous, elastic media under the action of a primary magnetic field. Formulation of the general surface wave propagation problem has been made, and the corresponding frequency equation has been derived. Frequency equations for Rayleigh wave, surface shear wave and Stoneley wave have been deduced from that of general surface wave as special cases. The effects of surface stress and magnetic field on the wave velocities and attenuation factors of Rayleigh wave and surface shear wave are shown by numerical calculations and graphs. Some important wave velocity equations, as obtained by other authors, have been deduced as special cases from the wave velocity equation for Stoneley wave. It is found that the combined effect of surface stress and magnetic field modulates the wave velocity ratios and attenuation factors of Rayleigh wave and surface shear wave to a considerable extent.  相似文献   
932.
The sound-producing mechanism of booming sand has long been a pending problem in the blown sand physics. Based on the earlier researches, the authors collected some silent sand samples from Teng- ger Desert, Australian Desert, Kuwait Desert, beaches of Hainan Island and Japanese coast as well as the soundless booming sand samples from the Mingsha Mountain in Dunhuang to make washing ex- periments. In the meantime the chemical corrosion experiment of glass micro-spheres, surface coating experiment and SEM examination were also conducted. The experimental results show that the sound production of booming sand seems to have nothing to do with the presence of SiO2 gel on the surface of sand grains and unrelated to the surface chemical composition of sand grains but is related to the resonance cavities formed by porous (pit-like) physical structure resulting from a number of factors such as wind erosion, water erosion, chemical corrosion and SiO2 gel deposition, etc. Its resonance mechanism is similar to that of Hemholz resonance cavity. Under the action of external forces, nu- merous spherical and sand grains with smooth surface and porous surface are set in motion and rub with each other to produce extremely weak vibration sound and then become audible sound by human ears through the magnification of surface cavity resonance. However the booming sands may lose their resonance mechanism and become silent sand due to the damping action caused by the invasion of finer particles such as dust and clay into surface holes of sand grains. Therefore, clearing away fine pollutants on the quartz grain surface is an effective way to make silent sand emit audible sound.  相似文献   
933.
This study focuses on how the variability of land surface temperature and vegetation density at the SGP ARM-CART site changes over episodic (day to day) and seasonal time scales using AVHRR satellite data. Four drying periods throughout the year are analyzed. Land surface temperature had an erratic relationship with time exhibiting no deterministic pattern from day-to-day or season-to-season. Furthermore, it did not exhibit spatial pattern persistence. On the other hand, vegetation density had a consistent spatial pattern and temporal decay during average length drying periods (less than 7 days) as well as within a season. However, there were distinct differences in the seasonal pattern of variation between winter and growing seasons. In addition, the paper highlights a methodology to quantify the relationships that exist at the land surface between the primary parameter of interest and the controlling variables.  相似文献   
934.
Strong winds are a characteristic feature of UK upland areas. Despite this, understanding of aeolian processes in upland environments of the UK is limited. This paper presents direct measurements and observations of blanket peat erosion by wind action during a two week period of desiccation in the North Pennines, Northern England. A circular configuration of mass flux sediment samplers was used to collect peat eroded by wind action from 16 cardinal compass directions. Meteorological conditions (wind speed, wind direction, precipitation and temperature) were recorded by an automatic weather station set up adjacent to the site. Surface desiccation led to peat crust erosion and dust deflation. During short (≤1 hour) periods of precipitation, wind‐driven rainfall also caused erosion. Typically, dust flux rates were up to two orders of magnitude lower than recorded during periods of sustained wet weather. Measurements demonstrate the hitherto unreported rapid switch in process regime between wind‐driven rainfall and dry blow deflation in blanket peat environments. Dry blow processes of blanket peat erosion may become more important in UK upland areas if climate change promotes more frequent surface desiccation. Copyright © 2006 John Wiley & Sons, Ltd.  相似文献   
935.
Mappings of the earth surface and their representation in 3D (three‐dimensional) models are commonly used in most recent research. Modeling research, which starts with classical surveying methods, acquires new dimensions matching the modern technologies. 3D models of any object or earth surface can be used in much visual and scientific research. A digital model of the landscape is an important part within creation of geo‐information systems used in the public administration and in the commercial sphere. It is an important tool in applications such as geomorphology, hydrology, geology, cartography, ecology, mining etc. Values of volume in terrains that do not have regular geometric structure can be obtained more accurately by using 3D models of surfaces with respect to developing technology. Basic data of 3D models must indicate 3D coordinates of the surveyed object in the reference frame. Distribution and intensity of points are important factors in modeling earth surfaces. A minimum number of points is desired in defining an object in 3D. Interpolation methods employing different mathematical models are used to obtain 3D models of terrain surfaces. In this study, the effect of interpolation methods in defining a terrain surface is investigated. For this purpose, a uniform surface, hill‐shaped artificial object with a known volume is employed. The 3D surface and volume are calculated by using 12 different interpolation methods. Point distribution, point intensity and accuracy of point measurements are not considered. The same data set was used for all the interpolation methods. The interpolation methods are compared and evaluated based on the results. Copyright © 2007 John Wiley & Sons, Ltd.  相似文献   
936.
VC++6.0环境下GPS接收机串口通信的实现   总被引:3,自引:0,他引:3  
首先简单介绍了GPS接收机串口通信的基本概念,然后通过实例详细介绍了计算机与GPS接收机进行数据传输的两种方法:一种是使用Win32 API通信函数的文件读写方式;另一种是通过VC^ 6.0提供的MSComm控件实现。  相似文献   
937.
三线阵CCD卫星影像的模拟研究   总被引:5,自引:1,他引:5  
在讨论从给定的DEM和相应的正射影像模拟三线阵CCD卫星影像的原理和方法的基础上,通过模拟影像考察两种卫星影像近似核线的适应能力和地球自转效应对同轨立体成像能力的影响,并讨论了从DEM和正射影像确定投影响中心轨迹、姿态模拟、共线方程和影像生成等细节。通过试验验证了模拟影像的正确性,揭示了两种核线定义存在的问题及其改进方法。  相似文献   
938.
遥感和GIS技术在全球海面风速分析中的应用   总被引:5,自引:0,他引:5  
陈戈  方朝阳 《遥感学报》2002,6(2):123-128
将遥感技术和地理信息系统(GIS)技术相结合,建立了一个基于TOPEX卫星的全球海面风速分析的海洋地理信息系统(MGIS)。阐述了全球海面风速分析模型的建立方法,定义了描述风场特征的相关参数,介绍了全球海面风速海洋地理信息系统的结构、功能和工作流程,另外,对系统的3个应用实例进行了地学分析。  相似文献   
939.
基于核空间的多光谱遥感图像分类方法   总被引:5,自引:1,他引:5  
提出了多光谱遥感图像分类方法中解决非线性问题的一种思路。通过引入核空间理论,将在输入空间中不能线性分类的问题映射到一个可以进行线性分类的高维空间,并利用核函数避免了在高维空间中运算的复杂度,较好地解决了非线性分类问题。利用这种思路,本文对一种比较简单的分类算法———自适应最小距离分类方法加以改进,并将其应用于多光谱遥感图像的分类中,提出了一种核函数的选择策略。  相似文献   
940.
利用高分辨率航天遥感影像实现城市3维可视化   总被引:3,自引:0,他引:3  
周杨  徐青 《测绘学院学报》2002,19(2):102-105
利用高分辨率遥感影像提取地物数据,并采取面向对象的空间数据模型对数据进行管理,使用虚拟现实技术对城市景观进行3维重建,然后利用有理函数数学模型表示遥感影像与地面之间的构像关系。使用纹理映射技术,构建具有高度真实感的城市3维景观图。  相似文献   
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