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The constructal law of organization in nature: tree-shaped flows and body size

机译:自然界中的组织构造定律:树状流动和身体大小

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The constructal law is the statement that for a flow system to persist in time it must evolve in such a way that it provides easier access to its currents. This is the law of configuration generation, or the law of design. The theoretical developments reviewed in this article show that this law accounts for (i) architectures that maximize flow access (e.g. trees), (ii) features that impede flow (e.g. impermeable walls, insulation) and (iii) static organs that support flow structures. The proportionality between body heat loss and body size raised to the power 3/4 is deduced from the discovery that the counterflow of two trees is the optimal configuration for achieving (i) and (ii) simultaneously: maximum fluid-flow access and minimum heat leak. Other allometric examples deduced from the constructal law are the flying speeds of insects, birds and aeroplanes, the porosity and hair strand diameter of the fur coats of animals, and the existence of optimal organ sizes. Body size and configuration are intrinsic parts of the deduced configuration. They are results, not assumptions. The constructal law extends physics (thermodynamics) to cover the configuration, performance, global size and global internal flow volume of flow systems. The time evolution of such configurations can be described as survival by increasing performance, compactness and territory.
机译:构造定律是这样一种陈述,即流动系统要在时间上持久存在,就必须以这样的方式发展,即它可以更容易地获得其潮流。这是配置生成法则或设计法则。本文回顾的理论发展表明,该定律解释了(i)最大化流动通道的建筑(例如树木),(ii)阻碍流动的特征(例如不透水的墙壁,隔热层)和(iii)支持流动结构的静态器官。通过发现两棵树的逆流是同时实现(i)和(ii)的最佳配置的发现,推导出了人体热量损失与提高到3/4的体重之间的比例关系:最大的流体流量和最小的热量泄漏。从构造定律推论出的其他变构示例是昆虫,鸟类和飞机的飞行速度,动物皮毛的孔隙率和发束直径,以及最佳器官大小的存在。车身尺寸和构造是推导构造的内在部分。它们是结果,而不是假设。构造定律扩展了物理学(热力学)以涵盖流动系统的构造,性能,整体尺寸和整体内部流量。此类配置的时间演变可通过提高性能,紧凑性和区域来描述为生存。

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