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complex geometry中文是什么意思

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  • Design of graphical interfaces , design of menus , design of dialog boxes and design of plotting program is investigated . then visualized interface and visualized system of disposing data is appended for " nonlinear finite element ultimate analysis of reinforced concrete thin slabs with complex geometry & boundary condition " finally , according to the research , some feasible advice is put forward for engineering design
    对图形界面的设计、菜单的设计、对话框设计、绘图程序的设计等进行了探索,为“复杂几何形状和边界条件钢筋混凝土薄板非线性有限元极限分析程序” ,添加了可视化的界面和数据前后处理的可视化系统。
  • All models can predict the attached and little separation flows . for the high angle - of - attack separated flows with distinct history effects , the j - k and k - g models perform better than b - l model . for multi - body and multi - block mesh system , model k - g , which does not need the distance normal - to - wall , performs much better adaptability for complex geometries
    所有模型都可以很好地模拟附体及和小分离流动;对于具有明显上游历程效应的大迎角分离流动, j一k和k - s模型的模拟能力较强;对于多体干扰和多块网格系统, k - s模型无需计算网格单元至物面的垂直距离,具有较强的适应能力,且计算效果最佳。
  • And then , according to finite element theory of reinforced concrete , the main calculating program of " nonlinear finite element ultimate analysis of reinforced concrete thin slabs with complex geometry & boundary condition " is made by using the triangle layered - assembled element of elastic thin slabs and the stress - strain relation by considering concrete as anisotropic material under effecting by two - way stress , and the concrete material model presented by darwin and pechnold , and the yield criterion of concrete presented by kupfer and gerstle
    然后根据钢筋混凝土有限元理论,以三角形分层组合式的弹性薄板弯曲单元为基础,考虑混凝土为各向异性材料在双向应力作用下的本构关系,采用darwin和pechnold的混凝土材料模型和kupfer与gerstle等人研究的混凝土破坏准则,编制了“复杂几何形状和边界条件钢筋混凝土薄板非线性有限元极限分析程序”中的核心计算程序。
  • On the basis of the traditional elasticity theory , nonlinear theory , ultimate theory and theory of reinforced concrete slabs with simple - supported condition , this paper analyzes the whole process of reinforced concrete thin slabs in the loading test of distributing static load , on the objects of reinforced concrete thin slabs with complex geometry , complex boundary condition and distributing of reinforce bars . and then analyzes the load capacity under the effecting of static load
    本文在传统的钢筋混凝土弹性理论、非线性理论和极限理论以及在简单支承条件下的钢筋混凝土板理论的基础上,以复杂几何形状、边界条件及配筋形式的钢筋混凝土薄板为研究对象,对其在静力分配梁加载下的加荷试验的全过程进行分析,并对其在静荷作用下的受力性能进行分析。
  • Through the research in this thesis , following conclusion can be drew : on the condition of nearly incompressible limit , the n - s equations can be recovered by the lb method ' s models with 2 - order numerical precision ; computational efficiency in simulating flow fields can be improved effectively by perfection of the lb method ' s theory ; development of parallel computation can contribute to the simulation of large - scale flow field with complex geometry
    通过本文的研究,可得出如下结论: lb方法的模型在接近不可压缩的条件下能够以二阶精度逼近n - s方程; lb方法理论的完善能够有效地提高流场模拟的计算效率;并行计算的发展有利于lb方法模拟大尺度的复杂流场。
  • The vacuum infusion molding process ( vimp ) is becoming increasingly popular as a new type of liquid composites molding process for the production of large composite parts with complex geometry , whose outstanding process properties make it the most competitive manufacturing technology with high quality and low cost
    真空注射成型工艺(简称vimp )是一种制备大型、加筋异型、几何形状复杂构件的复合材料液体模塑成型新技术。 vimp优越的工艺性能使其成为当今国际上炙手可热的高性能低成本复合材料制造技术。
  • The strategy of multi - block grid system makes it possible to proceed for structured grid when dealing with great complex geometries , like several components , et al . in order to reduce the computational complexity and computational costs , the fields are solved with " ghost " cells . the implementations with " ghost " cells largely improve the computational efficiency at computers with vetorizing capabilities
    采用多块网格技术实现了多部件复杂外形的高质量粘性结构网格生成,拓展了结构网格处理复杂外形的适用范围;采用虚拟网格技术实现了分区计算中流场信息的统一管理,降低了编程难度,极大地提高了计算机矢量运算的效率。
  • The computational fluid dynamics ( cfd ) has been rapidly developed with the application of unstructured grids which makes it easier to generate the grids for complex geometries by controlling the background girds , it is pretty easy to refine the size and distribution of unstructured grids the computation accuracy of flow over complex geometries can be greatly enhanced due to the improvement of grid quality
    通过控制背景网格,使非结构网格的尺度及疏密分布随物面几何外形易于调整,与结构化网格相比,针对复杂外形的非结构网格质量的根本改善大大提高了复杂外形绕流的流场计算精确度,这一网格生成方法已经显示出是一种强有力的cfd技术。
  • In this article , constituting some the equations which reflect the flow law and building and applying many mathematical models of physical and chemical reactions in the the plasma ignition : applying k - two equations turbulence model to calculate the turbulence parameter supplying simplied reaction systerm model and applying eddy break - up model and p - i thermal radiation model . with these reasonable simplied modles , numerically simulating the flow field in the plasma ignition . during the numerical simulation , applying the body - fitted coordinates for the complex geometry of the computional field ; using the mixing format to disperse the equations ; applying simplec algorithm method to solve the equations ; using above models and methods , it can get flow field distribution ; including temperature , pressure , turbulent kinetic energy and its dissipation rate , turbulent viscosity , velocity , density . these results are significant to design and improve the plasma ignition
    本文旨在通过构造反映等离子点火器内部流动规律的基本方程组,建立描述等离子点火器内部的复杂物理化学过程机制数学模型:模拟等离子发生器内部燃烧的-双方程湍流流动模型;模拟气体燃料在燃烧时中化学反应的简单化学反应系统模型;模拟等离子点火器内部湍流预混燃烧的漩涡破碎模型;模拟等离子点火器高温燃气及其壁面的p - i辐射换热的模型等等,对模型进行一定的合理的简化,然后数值模拟等离子点火器内部流场的流动。
  • Solving the elliptic grid generation together with an algebraic method marching along the normal - to - wall direction , viscous grids around complex geometries are generated . the inner - layer grids with the algebraic method is othogonality and easy to control the distance to the wall . according to the hilgenstock , the source items are calculated to control the othogonality and spacing of grid lines on boundaries
    法向外推方法生成的内层代数网格具有很好的正交性,可随意控制网格至物面距离,确保边界层内有足够多且密的网格;外层网格采用hilgenstock方法,根据网格线角度和距离与期望值之间的误差不断进行源项修正,实现网格对边界正交性和距离的双重控制,保证了网格的合理分布并具有较高的质量。
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  • 百科解释
In mathematics, complex geometry is the study of complex manifolds and functions of many complex variables. Application of transcendental methods to algebraic geometry falls in this category, together with more geometric chapters of complex analysis.
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Last modified time:Mon, 18 Aug 2025 00:29:56 GMT

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