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巧用一题多解培养思维的灵活性——以极坐标问题的教学为例
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作者 蔡鹏 《甘肃教育》 2018年第18期124-124,共1页
一题多解能培养学生思维的广阔性,使学生在数学学习的过程中开阔思路,灵活思维,并能让学生将所学过的知识和方法融会贯通,大大提升学生分析问题和解决问题的能力.因此,在平时的学习过程中,教师要多鼓励学生研究题型,尽可能一题多解.
关键词 数学教学 一题多解 极坐标问题
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Finite Element Method Formulation in Polar Coordinates for Transient Heat Conduction Problems 被引量:1
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作者 Piotr Duda 《Journal of Thermal Science》 SCIE EI CAS CSCD 2016年第2期188-194,共7页
The aim of this paper is the formulation of the finite element method in polar coordinates to solve transient heat conduction problems. It is hard to find in the literature a formulation of the finite element method(F... The aim of this paper is the formulation of the finite element method in polar coordinates to solve transient heat conduction problems. It is hard to find in the literature a formulation of the finite element method(FEM) in polar or cylindrical coordinates for the solution of heat transfer problems. This document shows how to apply the most often used boundary conditions. The global equation system is solved by the Crank-Nicolson method. The proposed algorithm is verified in three numerical tests. In the first example, the obtained transient temperature distribution is compared with the temperature obtained from the presented analytical solution. In the second numerical example, the variable boundary condition is assumed. In the last numerical example the component with the shape different than cylindrical is used. All examples show that the introduction of the polar coordinate system gives better results than in the Cartesian coordinate system. The finite element method formulation in polar coordinates is valuable since it provides a higher accuracy of the calculations without compacting the mesh in cylindrical or similar to tubular components. The proposed method can be applied for circular elements such as boiler drums, outlet headers, flux tubes. This algorithm can be useful during the solution of inverse problems, which do not allow for high density grid. This method can calculate the temperature distribution in the bodies of different properties in the circumferential and the radial direction. The presented algorithm can be developed for other coordinate systems. The examples demonstrate a good accuracy and stability of the proposed method. 展开更多
关键词 FEM polar coordinate system numerical methods transient heat conduction power boilers
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