- 更多网络例句与多连通域相关的网络例句 [注:此内容来源于网络,仅供参考]
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Some curvilinear grid generation examples show that the proposed adjusting factors ideal grids can be formed for simple connected regions and connected regions with complex boundary. The curvilinear grids near boundaries are orthogonal ...
实例检验表明,该调节因子能够对复杂边界的单连通域或多连通域的水域生成理想的曲线网格,即边界处网格正交,内部网格分布能够适应物理量场的变化情形。
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By using a perfect data structure, automatic generation of triangle mesh on multi-connected plane domain becomes as simple as simply connected plane domain first time without virtual line and other technical.
本文采用合理的数据组织结构,首次在不添加辅助线和不增加编程难度的前提下,使多连通域的剖分和单连通域的剖分有机地结合到一起,简单自然地解决了多连通域的三角剖分问题。
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In this paper, a modified multi-zone coupling method is presented for simulating the integrated flowfield of annual combustors, the SIMPLE-ENC algorithm is presented to achieve higher accuracy, and the wall function method in arbitrary curvilinear coordinates for treating near wall region is given here.
针对燃烧室多连通域的特点,本文采用分区法生成网格,并且提出了一种即时传递信息的改进多区域耦合法求解燃烧室整体流场,该法已成功地应用于涡扇和涡轴发动机环形燃烧室整体流场计算;本文提出了计算流场的SIMPLE-ENC算法,显著提高了流场计算的收敛速度;本文详细描述了壁面函数在空间任意曲壁上的应用方法。
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There exists a transcendental entire function〓suchthat f has a Baker domain U which contains infinitely many singularities of〓.
定理3.1设f是一个具有有穷个极点的超越亚纯函数,则f的每一个多连通Baker域循环一定含有〓的奇异点。
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In chapter 4, the relation between Fatou components of a transcendental meromorphic function or a transcendental meromorphic solution of some differential equation and the set of singular values is discussed, the main considered question is the relation between wandering domains or Baker domains and the set of singular values.
第四章讨论了超越亚纯函数或微分方程超越亚纯解Fatou分支与奇值集的关系问题,主要是研究游荡域或Baker域与奇值集的关系,得到在一定条件下,某些超越亚纯函数的多连通游荡域以及某些微分方程超越亚纯解的Baker域必定含有奇值。
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During the pre-processing of the finite element analysis, the interactive subdivision method which combines the computer's high efficiency with human's intelligence is realized. The dummy node method, which is used to solve the subdivision problem about multiply connected region and the region with isolated verge combining the optimization algorithm in topology, is brought forward for the first time in this dissertation.
在有限元分析的前处理中,本文实现了既充分利用计算机的高效性又融合了人工干预的灵活性的交互式网格生成算法,并且首次提出虚拟节点法,结合图论优化算法解决了多连通域及包含孤立边界的任意形状目标区域的网格自动生成问题。
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Cross section is a set of polygons and for this reason some relative algorithms for polygon are studied firstly. New algorithms for orientation and inclusion test for simple polygon are proposed. And Ghosh's convex hull algorithms for simple polygon and convex polygons, Subramanian's triangulation algorithm for arbitrary planar domain and O'Rourke's intersection algorithm for convex polygons are modified to make them more robust.
断层轮廓为简单多边形,首先对多边形的一些相关算法进行了研究,提出了一种判断简单多边形方向及点在多边形内外的新方法,改进了Subramanian的平面多连通域的三角划分方法、Ghosh的多边形的凸包及多个多边形的凸包算法和O'Rourke的凸多边形的求交算法。
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Then, in the procedure of triangulation, we introduce the concept of front splitting and discontinus increasing, so that the procedure can be used to form triangular elements within muti-connected domains with arbitrary boundaries and nodes without any regularity.
然后,在将内部结点和边界结点连成三角形的阵面法中提出了生成阵面增长和分裂的概念,使得该方法能够适应于结点疏密程度变化很大的任意边界内的三角形网格的生成,并能够自动处理多连通域问题。
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After basic theory and definings of Voronoi diagram and also parameterized bisectors have been analyzed,two main algorithms of simple-connected at present have been compared;adjust the algorithm of initialization and data construct so as to obtain the algorithm could used in practice; extand the idea of wavefront-propagation algorithm to computing multi-connected voronoi diagram.
通过对Voronoi图的基本理论、定义和参数化平分线公式的分析,以及对两种主要单连通域Voronoi图算法的比较,作者改进了初始化算法和数据结构,得到便于工程应用的单连通域Voronoi算法,并将波阵面传播的思想扩展应用到多连通域的Voronoi图计算,形成新的多连通域问题算法。
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MFC Library has been utilized for design and storage contours,bisectors,innermost points and offseting segments based on OOP,realezed consistency on algorithm and unification on data structure under simple-connected and multi-connected condition.
利用MFC类库的优势,采用面向对象的方法设计和存储相关轮廓段、平分线、内点以及偏置线等,实现了单连通域和多连通域在算法上的一致性和在存储结构上的统一性。
- 更多网络解释与多连通域相关的网络解释 [注:此内容来源于网络,仅供参考]
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multiply connected domain:复连通域
multiply connected body 多连通体 | multiply connected domain 复连通域 | multiply connected region 多连通区域,多连通域
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multiply connected region:多连通域
multiplier 倍增器 | multiply connected region 多连通域 | multiply periodic motion 多重周期运动
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multiply periodic motion:多重周期运动
multiply connected region 多连通域 | multiply periodic motion 多重周期运动 | multiply twinned particle 多重孪晶粒子