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201.
A two-dimensional horizontal finite element numerical model (RMA-2) was applied to a 24 km river channel-floodplain reach in West Germany. Initial results indicate that finite element schemes may successfully estimate inundation in large-scale floodplain applications. Potentially, the resulting detailed velocity vector distributions and identification of inundation zones throughout storm events could provide an insight into the present day sedimentary environment on the floodplain.  相似文献   
202.
讨论了模拟GPS精密测量系统误差的一些主要问题.文中用了两个实例,一个是南美洲某油田地面沉陷监测网,另一个是美国超级超导对撞机GPS地面控制网.  相似文献   
203.
A numerical simulation of gas flow during coal/gas outbursts   总被引:2,自引:0,他引:2  
Summary A model of the gas flow in airways during an instantaneous outburst of coal and gas is formulated and solved numerically using MacCormack's explicit finite-difference scheme. This model is based on the assumption that geological structures, in-situ stresses and high-gas-pressure gradients play important roles in initiating an outburst, with the gas content and gas-pressure gradients being the most dominant factors. The fluid-dynamic processes that occur after an outburst are computed by the numerical integration of the complete time-dependent Navier-Stokes equations. The mixture velocity, the density and the gas-concentration profiles in both time and space domains (immediately after an outburst) are presented. The global results are useful in gaining an improved understanding of gas-flow patterns during coal/gas outbursts and in determining the range of the disturbance so that effective methods of control can be developed.Nomenclature a speed of sound - C gas concentration (mass) - C v specific heat at constant volume - C p specific heat at constant pressure - CFL Courant-Friedrichs-Lewy number - E total energy of the mixture - F the vector defined in Equation 27 - G the vector defined in Equation 28 - h entropy - h i entropy at inlet - J xi diffusion flux in the i-direction - k thermal conductivity of a gas - M Mach number - P pressure of a mixture (the partial pressure of gas) - P gas pressure - P a atmospheric pressure  相似文献   
204.
王亚秀 《内陆地震》1994,8(4):310-314
运用CT技术中的傅利叶重建法,根据任意所给的两个初始速度模型,用几组平行射线束进行扫描,采集走时数据,并利用走时数据反演速度图象.反演结果与初始模型比较两者基本相符合。由此证明,傅利叶重建法在一定条件下可以用来反演地壳速度结构,并可得到较好的结果.这种方法是CT技术应用于地学研究的一种新的尝试.  相似文献   
205.
206.
传统的聚类分析方法利用数据对平均值的偏差,研究变量之间的相互关系。当它应用于区域化变量的分类时,因缺乏对区域化变量的空间结构的考虑,对合理解释区域化变量之间的相互关系不利。空间聚类分析方法比较好地解决了这个问题。本文介绍了该方法的基本原理及其算法,并说明了它在非条件模拟及在某矿区中的应用情况  相似文献   
207.
Different mathematical models of river planform changes exist or are being developed. They are reviewed here by discussing a two-dimensional depth-averaged model, various meander models and a model for the braided Brahmaputra-Jamuna River in Bangladesh. Much emphasis is placed on topics where further research is needed. It is concluded that the models help in understanding the underlying processes, but cannot yet be considered generally valid and easy-to-use software packages. In the hands of experienced geomorphologists or river engineers, however, some of the models do already form valuable tools which allow better predictions of future river planforms.  相似文献   
208.
This paper describes software to accompany McCarroll, D. 1993. ‘Modelling late-Holocene snow-avalanche activity: incorporating a new approach to lichenometry’, Earth Surface Processes and Landforms 18 , 527–539; and McCarroll, D., Matthews, J. A. and Shakesby, R. A. 1995. ‘Late-Holocene snow-avalanche activity in southern Norway: interpreting lichen-size-frequency distributions using an alternative to simulation modelling’, Earth Surface Processes and Landforms 20 , 465–471.  相似文献   
209.
In the study of flash-flood occurrence in small catchments the lack of flow measurements is often one of the main limiting factors. Prior to estimating the forecasting potentialities and techniques for such events, an accurate reconstruction of past event flood dynamics is first required. This issue is here addressed by analyzing, with the use of a distributed hydrological model, the hydrometeorological conditions in which a severe flash-flood occurred, on October 1992, on a 48 square kilometers catchment in the Arno basin. Such an event was caused by the persistence of intense convective clusters on the background of widespread rain bands of frontal origin. The distributed hydrological model here adopted is devoted to simulate the evolution and the variability of the primary processes involved in the runoff cycle. Together with the hydrological model structure, other particular aspects of the event reconstruction procedure are discussed: the managing and processing of the information coming from different sensors, with different temporal and spatial resolutions; the identification of local precipitation dynamics (frontal or convective) within small areas of integrated radar and rain gauges data fields; the interpolation of rain gauge data on the basis of the radar-estimated spatial correlation. The results of the distributed modeling, concerning the estimate of the flood wave at various sites, are compared with analogous results obtained with simpler lumped models.  相似文献   
210.
Seismogenicmodelofearthquakesingroups intectonicblockandanalysisforsomefeaturesofearthquakeprecursoryfieldGuo-MinZHANG;Lu-Min...  相似文献   
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