Observations Regarding Use of Advanced CFD Analysis, Sensitivity Analysis, and Design Codes in MDO.

Abstract

Observations regarding the use of advanced computational fluid dynamics (CFD) analysis, sensitivity analysis (SA), and design codes in gradient-based multidisciplinary design optimization (MDO) reflect our perception of the interactions required of CFD and our experience in recent aerodynamic design optimization studies using CFD. Sample results from these latter studies are summarized for conventional optimization (analysis-SA codes) and simultaneous analysis and design optimization (design code) using both Euler and Navier-Stokes flow approximations. The amount of computational resources required for aerodynamic design using CFD via analysis-SA codes is greater than that required for design codes. Thus, an MDO formulation that utilizes the more efficient design codes where possible is desired. However, in the aerovehicle MDO problem, the various disciplines that are involved have different design points in the flight envelope; therefore, CFD analysis-SA codes are required at the aerodynamic 'off design' points. The suggested MDO formulation is a hybrid multilevel optimization procedure that consists of both multipoint CFD analysis-SA codes and multipoint CFD design codes that perform suboptimizations.

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Document Details

Document Type
Technical Report
Publication Date
Mar 01, 1996
Accession Number
ADA309459

Entities

People

  • Arthur C. Taylor Iii
  • Gene J.w. Hou
  • Perry A. Newman

Tags

DTIC Thesaurus Topics

  • Computational Fluid Dynamics
  • Dynamics
  • Fluid Dynamics
  • Fluid Mechanics
  • Observation
  • Optimization
  • Perception
  • Physics
  • Sensitivity

Fields of Study

  • Engineering

Readers

  • Computational Fluid Dynamics (CFD)
  • Operations Research
  • Software Engineering