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951.
To overcome smoothness inconsistencies in depth contours interpolated from sounding data, this paper proposes a smoothing method based on the fitting of multi-segment Bezier curves considering navigational safety. The basic principle of this method is the division of a generated depth contour into a series of bends categorized as either convex bends or concave bends. Different smoothing strategies are designed for different bends while considering the safety constraint. Convexity-preserving Bezier curves are used to fit convex bends. For concave bends, the line segment of the bend is utilized as a boundary to construct a control polygon within the interior of the bend, after which a Bezier curve is constructed based on the polygon. Experiments with real data are implemented, and the results are compared with those of other methods. The results show that the smoothing procedure for depth contours with angularities is effective and respects the safety constraint; moreover, the shape characteristics are preserved, and high positional accuracy is achieved. In addition, the proposed smoothing method is free of topological inconsistencies. 相似文献
952.
本文利用SRTM3高分辨率的数字高程模型(DEM)对广东省已建成的12部新一代天气雷达分别进行地形阻挡分析。结果表明,在低仰角(0.5°)的观测结果中,韶关、连州以及肇庆雷达受地形阻挡较严重,深圳、阳江、梅州和汕尾的雷达也有大面积阻挡区域,其余雷达的覆盖效果均很好。随着扫描仰角的抬高,地形对雷达波束的阻挡有所减弱。从第4个仰角 (3.4°)开始,所有雷达均无地形阻挡。在海拔5 km范围内12部雷达可以完全覆盖广东全省,大部分地区至少有4部雷达重叠。离地3 km和海拔3 km的雷达覆盖情况均显示,除广东省北部和西北部极少部分地区没有雷达覆盖外,大部分地区均有2部以上雷达覆盖,珠江三角洲入海口一带甚至有4~6部雷达重叠。在离地2 km范围内,广东省雷达组网能够有效覆盖广东省大部分区域。在离地1 km范围内,广东省北部和西北部雷达覆盖效果不太理想,存在较大的空白区。在离地高度2 km和海拔高度3 km以上,雷达组网基本可以覆盖广东全境,因此可以认为广东省雷达的总体布局较好。 相似文献
953.
室内外一体化导航路网的快速生成与更新对面向行人的跨场景导航具有重要意义。当前研究主要关注单一场景下的导航路网构建,对于跨室内外场景的导航路网自动生成研究较少。本文基于对偶图思想与二维平面多边形中轴变换(Medial Axis Transform)算法,提出一种室内外一体化导航路网自动生成方法,并以某建筑CAD平面图及周边路网环境为基础数据进行了实例研究。结果表明:该方法能够根据原始数据的几何、拓扑、语义信息自动构建导航路网,并支持室内外跨场景的最短路径查询,在最短路径查询效率上较传统分场景寻路模型整体提升10.18%;相较单一场景下的导航路网,一体化导航路网可结合语义信息将室内及室外导航路网有机统一起来,解决跨场景寻求最优路径的问题,为最优路径规划的相关研究提供了新的思路。 相似文献
954.
大民屯凹陷压力场特征及其成因机制探讨 总被引:1,自引:0,他引:1
异常地层压力是沉积盆地中的常见现象,其与成烃成藏关系密切。本文以欠压实带的有无、欠压实的幅度大小、持续的深度范围,将大民屯凹陷泥岩压实类型分为4种,即强烈欠压实型、欠压实型、局部欠压实型以及正常压实型。利用测井、地质和钻井资料,运用等效深度法分析了该区现今异常压力的展布特征并探讨了其成因机制。5条超压分布剖面揭示大民屯凹陷的超压体系在凹陷内分布较广泛,纵向上基本可分为上、中、下3套压力体系。①纵向上,上部即Es23段及其以上地层基本为正常压力系统;中部即Es33段为弱超压系统;下部即Es43和Es4地层为强超压系统。②横向上,超压在洼陷中心强烈发育,到斜坡和隆起带渐渐演变为正常压力。压实不均衡和生烃作用是大民屯凹陷超压发育的主要机制。 相似文献
955.
956.
957.
Numerical simulations using momentum source wave-maker applied to RANS equation model 总被引:2,自引:0,他引:2
For Navier-Stokes equation model using the VOF scheme, Lin and Liu (Lin, P. and Liu, P.L.-F. (1999). Internal wave-maker for Navier-Stokes equations models. J. Waterw. Port Coast. Ocean Eng., 125 (4), 207–215.) developed an internal wave-maker method for which a mass source function of the continuity equation was used to generate target wave trains. Using this internal wave-maker method, various numerical experiments have been conducted without any problems due to waves reflected by a wave-maker. In this study, an internal wave-maker method using a momentum source function was proposed. Various numerical simulations in two and three dimensions were performed using the momentum source wave-maker applied to the RANS equation model in a CFD code, FLUENT. To verify their applicability in 2 dimensions, the computational results obtained using the momentum source wave-maker in a channel of constant depth were compared with the results obtained by using the mass source wave-maker and with the analytical solutions. And the results of the present numerical simulations of hydraulic experiments, which represent nonlinear waves on a submerged shoal and breaking waves on a plane beach, were compared with measurements. The comparisons showed good agreements between them. To see their applicability into 3-dimensional cases, the present results in a basin of constant depth were compared with the analytical solutions, and they agreed well with each other. In addition, vertical variation of longshore current was presented by using the 3-dimensional simulation results. 相似文献
958.
本文基于2017年634幅MODIS影像分析了安达曼海3个典型区域的内波空间分布特征,定量统计了波峰线长度、波包面积等特征参数,利用射线追踪法探讨了内波的潜在激发源并推算了内波的生成周期。研究表明,安达曼海北部海域的内波空间尺度较小,前导波波峰线的平均长度约为107 km,平均波包面积约为1 860 km2,内波的传播方向主要为东向以及西南向。安达曼海中部海域内波前导波波峰线的平均长度约为133 km,平均波包面积约为3 503 km2,超过70%的内波沿东偏北方向传播。苏门答腊岛北部海域内波前导波波峰线的平均长度约为131 km,平均波包面积约为2 997 km2,内波的传播方向主要为东向、东北向及东南向。安达曼海共有7个潜在内波激发源,内波的生成时间间隔介于11.5~13 h,具有明显的半日周期特征。 相似文献
959.
海浪破碎使得海面产生飞沫水滴,由于飞沫水滴的存在改变着大气和海洋之间的能量传输。飞沫生产函数一般认为是水滴初始半径和风速的函数,但海浪时刻存在于海-气界面,仅仅考虑海面风的作用,而忽略海浪的影响是不够完善的。白冠覆盖率是海浪破碎的重要特征参数,有研究者发现白冠覆盖率与海面风速和海浪均存在相关性。本文尝试从白冠覆盖率出发,构建飞沫水滴的生成函数参数化方案,将描述不同飞沫水滴半径的飞沫生成函数基于白冠覆盖率参数有机整合,然后结合白冠覆盖率和海浪状态的关系,利用实验室观测数据,分析不同海浪状态条件下海浪对飞沫生成函数的影响。研究结果表明,新的考虑波浪效应的飞沫生成函数可以合理地描述不同海浪状态条件下飞沫水滴的生成过程。 相似文献
960.
A. Hayir B. Seseogullari İ. Kilinc A. Erturk H.K. Cigizoglu M.S. Kabdasli O. Yagci K. Day 《Coastal Engineering》2008
In this paper the tsunamis resulting from a submarine mass failure such as slides and slumps triggered by earthquakes or other environmental effects, which is settled at the bottom of the north eastern Sea of Marmara are examined in one sample region. As the solution method, one hybrid method is developed. The main objective of this method is to combine an analytical solution presenting near-field tsunami amplitudes above the submarine mass failure with a numerical solution indicating the tsunami amplitudes in the coastal regions. For this purpose, one common linear boundary between analytical and numerical solution domains is defined. Movements of Submarine Mass Failures (SMF) are modeled using one simple kinematics source model and the amplitudes of the tsunamis at the region that are closer to the landslide are computed by using the analytical method. SMF is modeled approximately from the bottom geometry, and an average depth is used. Scenarios of SMF are established depending on the velocities and thicknesses of the failure, and near-field tsunami amplitudes are obtained in the open sea during the source time. After the source times, the solutions are found in the numerical region using TELEMAC-2D software system with the mentioned boundary above. In this boundary, the output of the analytical solutions is taken as the boundary conditions or the disturbances for the numerical method. With these disturbances, the numerical method is performed and the amplitudes are calculated in the coastal area. The generation, propagation and coastal amplifications of the tsunamis are illustrated at some certain points and regions both in the open sea and near the coast line. The results have been visualized and discussed. 相似文献