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Generalized curved beam on elastic foundation solved by transfer matrix method

机译:传递矩阵法求解弹性地基上的广义弯曲梁

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A solution of space curved bars with generalized Winkler soil found by means of Transfer Matrix Method is presented. Distributed, concentrated loads and imposed strains are applied to the beam as well as rigid or elastic boundaries are considered at the ends. The proposed approach gives the analytical and numerical exact solution for circular beams and rings, loaded in the plane or perpendicular to it. A well-approximated solution can be found for general space curved bars with complex geometry. Elastic foundation is characterized by six parameters of stiffness in different directions: three for rectilinear springs and three for rotational springs. The beam has axial, shear, bending and torsional stiffness. Numerical examples are given in order to solve practical cases of straight and curved foundations. The presented method can be applied to a wide range of problems, including the study of tanks, shells and complex foundation systems. The particular case of box girder distortion can also be studied through the beam on elastic foundation (BEF) analogy.
机译:提出了一种基于传递矩阵法的广义温克勒空间曲杆解。分布集中的载荷和施加的应变施加到梁上,并且在端部考虑了刚性或弹性边界。所提出的方法为圆形梁和圆环(在平面中或垂直于平面)加载提供了解析和数值精确解。对于具有复杂几何形状的一般空间弯曲钢筋,可以找到一种近似的解决方案。弹性地基的特征在于六个方向在不同方向上的刚度参数:三个用于直线弹簧,三个用于旋转弹簧。梁具有轴向,剪切,弯曲和扭转刚度。给出了数值示例,以解决直基础和弯曲基础的实际情况。所提出的方法可以应用于广泛的问题,包括对水箱,壳体和复杂地基系统的研究。箱梁变形的特殊情况也可以通过类比弹性地基梁(BEF)进行研究。

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