Characteristic length and cooling circle

I. Luiten
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引用次数: 10

Abstract

Modular design, outsourcing and open innovation create a complex network of possible end product embodiments in product design for the consumer market. Analyzing each and every possibility in detail is out of the question as resources are limited and module details are often proprietary information. To meet this challenge the thermal engineer needs a feeling about what will and what will not work out, without getting bogged down in too much detail. This paper presents the concepts of characteristic length and cooling circle as an approximate measure for the extent of heat spreading in beam and in flat thin plate geometries. Beam and flat thin plate geometries are widely used by mechanical designers, and being able to assess how much of the geometry is actually thermally affected by a heat source is of great value in thermal decision making and communication. For both geometries an application is discussed and compared to CFD simulations to assess the validity of the approach.
特性长度和冷却周期
模块化设计、外包和开放式创新为消费者市场的产品设计创造了一个复杂的最终产品实现网络。由于资源有限,并且模块细节通常是专有信息,因此详细分析每种可能性是不可能的。为了应对这一挑战,热能工程师需要在不陷入太多细节的情况下,对什么可行、什么不可行有一种感觉。本文提出了特征长度和冷却圈的概念,作为热在梁和扁薄板几何中传播程度的近似度量。梁和平薄板几何形状被机械设计师广泛使用,能够评估热源对几何形状的实际热影响程度,在热决策和交流中具有重要价值。对这两种几何形状的应用进行了讨论,并与CFD模拟进行了比较,以评估该方法的有效性。
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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