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Mixed Nonprobabilistic Reliability-Based Optimization Method for Heat Transfer System With Fuzzy and Interval Parameters

机译:基于模糊和区间参数的混合非概率可靠性传热系统优化方法

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By combining the nonprobabilistic reliability theory with optimization design approach, this paper proposes a mixed reliability-based optimization method for the heat transfer system design with both fuzzy and interval parameters in material property, external load, and boundary condition. Fuzzy variables are used to represent subjective uncertainties associated with expert opinions; whereas, interval variables are adopted to quantify objective uncertainties with limited information. Based on the level-cut strategy, the mixed uncertain problem is transformed into a pure interval problem first. Then, a modified reliability analysis method using an interval ranking strategy and integral operation is presented to precisely assess the system safety possibility. Subsequently, a mixed reliability-based optimization model with fuzzy and interval parameters is established, which is a nested optimization problem with huge computational cost. A subinterval perturbation method is eventually presented for temperature field prediction, which can replace the inner loop optimization and improve the computational efficiency. A transient heat conduction example about a three-layer thermal structure verifies the superiority of the proposed model and method for mixed reliability analysis and optimization in practical engineering.
机译:通过将非概率可靠性理论与优化设计方法相结合,提出了一种基于混合可靠性的传热系统设计优化方法,该方法具有材料属性,外部载荷和边界条件的模糊参数和区间参数。模糊变量用于表示与专家意见相关的主观不确定性;然而,采用区间变量来量化信息有限的客观不确定性。基于降级策略,混合不确定性问题首先转换为纯间隔问题。然后,提出了一种使用区间排序策略和积分运算的改进的可靠性分析方法,以精确评估系统安全可能性。随后,建立了具有模糊和区间参数的基于混合可靠性的优化模型,这是一个嵌套的优化问题,具有巨大的计算成本。最终提出了一种用于温度场预测的子区间扰动方法,该方法可以代替内环优化并提高计算效率。关于三层热结构的瞬态热传导实例验证了所提出的模型和方法在实际工程中进行混合可靠性分析和优化的优越性。

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