Reliability-based design optimization for pressure shell of remotely operated vehicle with discrete and continuous variables

Shun-Han Yang, Yutao Zhou, D. Song
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引用次数: 2

Abstract

Ring-stiffened cylinder is one of the most structure types in pressure shell of remotely operated vehicle (ROV). In pressure shell optimization design problem, both discrete and continuous variables are involved and uncertainties are ubiquitous in any stage of the ROV development. However, pressure shell of ROV presently designed via the static strength and the rounding method which might result in more redundancy than required. In this paper, reliability-based design optimization (RBDO) with mixed discrete and continuous random variables is proposed to handle the pressure shell design and first-order reliability method (FORM) is used to calculate reliability of the pressure shell performance functions. The effectiveness of the proposed method for pressure shell design is validated by an engineering example.
离散变量和连续变量遥控车辆压力壳可靠性优化设计
环加筋筒是遥控潜水器(ROV)压力壳体中最常见的结构形式之一。在压力壳优化设计问题中,既有离散变量,也有连续变量,不确定性普遍存在于ROV开发的任何阶段。然而,目前ROV的压力壳设计采用静强度法和舍入法,这可能导致冗余度超过要求。本文提出了离散与连续混合随机变量的基于可靠性的设计优化方法(RBDO)来处理压力壳的设计,并采用一阶可靠度法(FORM)计算压力壳性能函数的可靠度。工程实例验证了该方法在压力壳设计中的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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