对流通风的变化,以提高紧凑型荧光筒灯的效率

M. Siminovitch, C. Zhang, N. Kleinsmith
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引用次数: 2

摘要

作者展示了一系列的通风配置和技术,从一个未经修改的紧凑型荧光筒灯作为控制装置,通过一系列的通风策略,到一个高效筒灯的发展,在对流通风中结合了一个新的角度概念。通过这种新的通风设计,可以实现近25%的光输出增加,而不会产生与某些通风几何形状相关的光学损失。使用对流通风作为一种有效的热管理技术的关键问题是最大限度地发挥通风配置的热优势,同时减少或消除由夹具或反射器外壳中的开口产生的光学损耗。通过在特定夹具内正确设计和定位对流通风几何形状,可以在不影响光学效率的情况下获得热效率夹具的所有优点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Variations in convective venting to increase the efficiency of compact fluorescent downlights
The authors demonstrate a sequence of venting configurations and techniques, from an unmodified compact fluorescent downlight as a control fixture, through a series of venting strategies, to the development of a highly efficient downlight that incorporates a new angular concept in convective venting. With this new venting design, an increase in light output of nearly 25% can be attained without the optical losses generally associated with some venting geometries. The key issue in using convective venting as an effective thermal management technique is to maximize the thermal advantages of the venting configuration while reducing or eliminating the optical losses produced by openings in the envelop of the fixture or reflector. With the proper design and positioning of a convective venting geometry within a particular fixture, all of the benefits of a thermally efficient fixture can be obtained without compromise in optical efficiency.<>
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