Risk-Adaptive Set-Based Design and Applications to Shaping a Hydrofoil

The paper presents a framework for set-based design under uncertainty and demonstrates its viability through designing a super-cavitating hydrofoil of an ultrahigh speed vessel. The framework achieves designs that safely meet the requirements as quantified precisely by superquantile measures of risk...

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Veröffentlicht in:Journal of mechanical design (1990) 2017-10, Vol.139 (10)
Hauptverfasser: Royset, J. O, Bonfiglio, L, Vernengo, G, Brizzolara, S
Format: Artikel
Sprache:eng
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Zusammenfassung:The paper presents a framework for set-based design under uncertainty and demonstrates its viability through designing a super-cavitating hydrofoil of an ultrahigh speed vessel. The framework achieves designs that safely meet the requirements as quantified precisely by superquantile measures of risk (s-risk) and reduces the complexity of design under uncertainty. S-risk ensures comprehensive and decision-theoretically sound assessment of risk and permits a decoupling of parametric uncertainty and surrogate (model) uncertainty. The framework is compatible with any surrogate building technique, but we illustrate it by developing for the first time risk-adaptive surrogates that are especially tailored to s-risk. The numerical results demonstrate the framework in a complex design case requiring multifidelity simulation.
ISSN:1050-0472
1528-9001
DOI:10.1115/1.4037623