유한요소해석과 기하학적 모델링의 연동에 기초한 쉘 곡면의 형상 최적 설계
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In the present study, an integrated framework of geometric modeling, analysis, and design optimization is
proposed. Geometric modeling is based on B-spline surface representation. Geometrically-exact shell finite
element is implemented in analysis module. Control points of the surface are selected as design variables for
optimization, which can make the interaction easier between analysis and surface representation. Sequential
linear programming(SLP) is adopted for the shape optimization of surfaces. For the computation of shape
sensitivities, semi-analytical method is used. The developed integrated framework should serve as a powerful
tool for the geometric modeling, analysis, and shape design of surfaces.