沿曲面上曲线的矢量的测地线平行传递

S. Zalevsky, I. Pelevanuk
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摘要

本文研究了在曲面上构造大地平行向量的一种方法。解决这个问题可以让我们在表面上建立一个切比雪夫网格模型。切比雪夫网格的模型称为应用于表面的网格框架。它具有这种网格的特性,细胞的边长相当短。由于在机械工程中越来越多地使用具有网格结构的纤维复合材料,因此迫切需要在表面上建立切比雪夫网格模型。切比雪夫网格保持任意弯曲切比雪夫的特性可用于构造复杂技术形式的曲面图案。切比雪夫网格中一类直线与另一类直线交点处的切向量在测地线上平行。因此,在曲面上沿任意曲线构造这样的向量,将允许在所选网格族的任意选择方向上获得切比雪夫网格的模型。本文提出了在给定曲面上沿给定曲线进行测地线平行矢量传递的方法。这条曲线是由这个方向族给出的线性曲面的拉伸线(喉)。提出的构造程序允许相对少量的计算来获得鸭线方向的矢量场。减小线性结构参数可以提高施工精度。由于计算的最终结果是创建切比雪夫网格模型并获得网格涂层图案,因此在相应计算程序的代码中嵌入了根据曲面曲率调整施工参数的可能性。
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GEODESICALLY PARALLEL TRANSFER OF A VECTOR ALONG THE CURVE ON THE SURFACE
The paper considers one of the ways to construct geodetically parallel vectors on a curved surface. Solving this problem allows us to build a model of the Chebyshev grid on the surface. The model of the Chebyshev grid is called a mesh frame applied to the surface. It has the properties of this grid with a fairly short side length of the cell. The urgency of building a model of Chebyshev mesh on surfaces is due to the increasing use in mechanical engineering of fibrous composite materials that have a mesh structure. The property of the Chebyshev grid to remain Chebyshev with arbitrary bending can be used to construct a surface pattern of a complex technical form. The tangent vectors to the lines of one family of the Chebyshev grid drawn at their points of intersection with the lines of the second family are geodesically parallel. Therefore, the construction of such vectors along an arbitrary curve on the surface will allow to obtain a model of the Chebyshev grid in an arbitrarily chosen direction of the selected grid family. The method of geodesically parallel vector transfer along a given curve on the surface is proposed in the work. This curve is the line of stretching (throat) of the linear surface given by this family of directions. The proposed construction procedure allows for a relatively small number of calculations to obtain a vector field of the directions of the duck lines. Construction accuracy can be increased by reducing the linear construction parameter. Since the final result of the calculations is to create a model of the Chebyshev grid and obtain a pattern of mesh coating, the possibility of adjusting the construction parameters depending on the curvature of the surface is embedded in the code of the corresponding calculation program.
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