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Flow–heat topology optimization of internally cooled high temperature applications using a voxelization approach for domain initialization

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DataCite Commons2024-05-22 更新2024-08-19 收录
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https://tandf.figshare.com/articles/dataset/Flow_heat_topology_optimization_of_internally_cooled_high_temperature_applications_using_a_voxelization_approach_for_domain_initialization/25879084/1
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资源简介:
A method is presented for obtaining topology optimized designs for internally cooled high temperature applications, using a flexible geometry description, by means of a voxelization methodology and a novel boundary detection algorithm. A conjugate heat transfer approach is taken; the physics is described by a Stokes–Brinkman model for the flow, weakly coupled with a convection–diffusion model for the heat transfer. A practically relevant optimization formulation, consisting of a maximum temperature objective with a mass flow constraint, is used, and applied to an industrial-relevant non-trivial geometry resembling a guide vane in a gas turbine. Temperatures and velocities from the optimized design are compared with the response from a Stokes flow model with body-fitted mesh and a high-fidelity Reynolds-averaged Navier–Stokes model. A comparison of the performance from a mixed and a penalty approach for solving the flow problem is included. The voxelization approach shows good promise for handling complex design domains.
提供机构:
Taylor & Francis
创建时间:
2024-05-22
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