設計工学・システム部門講演会講演論文集
Online ISSN : 2424-3078
セッションID: 1113
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1113 流量制約を考慮した非圧縮粘性流れのレベルセット法に基づくトポロジー最適化
久保 世志矢地 謙太郎山田 崇恭泉井 一浩西脇 眞二
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Historically, fluidic devices such as switches, amplifiers, and oscillators, have an advantage, compared with electronic devices, in terms of maintenance-free operation and operating life. Therefore, prior to the great progress in electronic technologies that has occurred during the past several decades, the structure and function of fluidic devices were the subject of extensive research. Recently, fluidic devices are again attracting significant attention, stimulated by progress in the development of MEMS technologies. In this study, to develop an energy-efficient structure for a MEMS-scale fluidic device, we apply a topology optimization method to an optimal design problem for a steady-state incompressible viscous flow field. We use a level set-based topology optimization method incorporating the concept of the phase field method for the topology optimization so that clear boundaries between the solid and fluid domains are expressed in the optimal configurations. To generalize the topology optimization problem for a fluid regime, generalized expressions of the primary and adjoint problems were formulated concretely, to minimize viscous energy dissipation under an outflow rate inequality constraint. Two numerical examples, for pipe bend flow and three-terminal flow, are provided to demonstrate the usefulness of the proposed level set-based topology optimization method.
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© 2013 一般社団法人 日本機械学会
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