采用不同阵列鳍片结构的被动冷却系统中挤压铝合金 LED 灯泡的研究

Nitin Namdeo Pawar, Hameshbabu Nanwala
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引用次数: 0

摘要

当今世界,发电和节电都很落后。在照明行业,L.E.D.灯泡被用于照明目的。世界面临的主要问题是通过主动或被动冷却散热器散热。通过使用主动冷却,系统配件可提高整体成本。本文研究了如何通过提高传热系数来增加传热率,从而降低 L.E.D. 灯泡的总体成本。要达到上述预期效果,需要了解各种参数,如孔隙率、传热率、层流、密度和传热模式。其应用领域包括路灯、花园、商场停车场和隆起的装饰灯。十字形翅片阵列是一种合适的替代品,其孔隙率大于 0.85,可在现有灯泡主动冷却系统的冷却时间内产生适当的漩涡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study of Extrude Aluminum Alloy LED Bulb in a Passive Mode of Cooling System with a Different Array of Fin Structure
Nowadays, the world is running behind power generation as well as power saving. In the lighting industry, the L.E.D. bulb is used for lighting purposes. The main problem faced by the world is heat dissipation from a heat sink by active or passive cooling. The system accessories enhance the overall cost by using active cooling. This paper studied that it has been used to reduce the overall cost of L.E.D. bulbs by increasing the heat transfer rate concerning increasing heat transfer coefficient. It needs to understand the various parameters such as porosity, heat transfer rate, laminar flow, density, and heat transfer modes to achieve the above-desired result. Their application is for street lights, gardens, mall parking, and bulging decorative lights. The cross-shape fin array is a suitable replacement with porosity of more than 0.85 for a proper swirl during the cooling time for an active cooling system for an existing bulb.
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