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SVELTNESS, FREEDOM TO MORPH, AND THE CONSTRUCTAL DESIGN OF MULTI-SCALE FLOW STRUCTURES

机译:灵活性,变形自由度以及多尺度流结构的结构设计

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摘要

This paper reviews recent progress on constructal theory and design. The emphasis is on the development of multi-scale, nonuniformly distributed flow structures that offer increased compactness (e.g., heat transfer density). Examples are counterflow heat exchangers with tree-shaped hot and cold streams, and tree architectures on a disc. Every flow system has a global property called sveltness (Sv), which is the ratio between its external (global) length scale and its internal length scale (V~(1/3)), where V is the volume occupied by all the ducts. Emphasis is placed on the development of simple strategies for decreasing the computational cost required by the development of such structures. The generation of multi-scale flow configurations is a process that can be projected on a diagram having global performance on the abscissa and degrees of freedom on the ordinate. This process rules the development (evolution) of all flow configurations for systems with global objective, global constraints and freedom to morph.
机译:本文回顾了结构理论和设计的最新进展。重点是发展多尺度,不均匀分布的流动结构,该结构可提供更高的紧凑性(例如,传热密度)。示例是带有树形热流和冷流的逆流热交换器,以及圆盘上的树结构。每个流系统都有一个称为“ sveltness(Sv)”的全局属性,它是其外部(全局)长度比例与其内部长度比例(V〜(1/3))之间的比率,其中V是所有管道所占的体积。重点放在简单策略的开发上,以减少这种结构开发所需的计算成本。多尺度流配置的生成是可以投影到在横坐标上具有全局性能而在纵坐标上具有自由度的图上的过程。这个过程控制着具有全局目标,全局约束和变形自由度的系统的所有流配置的开发(演化)。

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