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VANDAL GLASS HEAT DISTRIBUTION AND THE EFFECT OF GLASS GAP ADJUSTMENTS IN OUTDOOR DIGITAL DISPLAY COMPONENTS

机译:户外数字显示组件中的静脉玻璃热分布和玻璃间隙调整的影响

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The use of computational fluid dynamics/heat transfer (CFD/HT) software has become common in exploring the thermal and hydrodynamic behavior of many electronic products. Well-designed CFD/HT models are very valuable for driving the product design, but accurate models can be difficult to develop in some cases for a practical use. Manufacturing Resources International (MRI) uses CFD/HT modeling to predict the display limitations of outdoor digital displays under various hazardous environmental conditions. Both the surrounding ambient temperature and solar irradiance are the major contributors to temperature rise inside outdoor digital displays, but most CFD/HT software packages are limited in simulating solar irradiance through semi-transparent materials and multiple surfaces. Therefore, the contribution from solar irradiance must be treated with care when creating a CFD/HT model especially when an optimum number of mesh elements is to be used to minimize the necessary processing power and solution computation time. In the current study, we employ true solar testing to determine how much solar irradiance passes through the vandal glass assembly. In lieu of defining the solar irradiance as a heat flux, a methodology to determine the power that should be imposed on the sun-exposed vandal glass is described. As outdoor digital displays face harsher thermal challenges compared to the displays that are deployed indoors, it is necessary to come up with a display design that can best benefit from the cooling effect. There are numerous parameters that can be adjusted to optimize the display in terms of its thermal performance but in particular, this paper explores the effect of adjusting the gap distance between the vandal glass and the liquid crystal display (LCD) to see how the maximum LCD temperature and fan performance are influenced.
机译:计算流体动力学/传热(CFD / HT)软件的使用在探索许多电子产品的热和流体动力学行为方面变得普遍。精心设计的CFD / HT型号对于推动产品设计非常有价值,但在某些情况下,在某些情况下可以难以开发精确的模型。制造资源国际(MRI)使用CFD / HT模型来预测各种危险环境条件下室外数字显示器的显示限制。周围的环境温度和太阳辐照度都是室外数字显示器内部温度升高的主要贡献者,但大多数CFD / HT软件包在模拟通过半透明材料和多个表面的太阳辐照度。因此,当使用要使用最佳数量的网格元件时,必须使用诸如创建CFD / HT模型时,必须小心处理来自太阳辐照度的贡献,以便使用最佳的网格元件来最小化必要的处理能力和解决方案计算时间。在目前的研究中,我们采用真正的太阳能测试来确定太阳辐照度通过破坏玻璃组件。代替将太阳辐照度定义为热通量,描述了确定应施加在太阳暴露的破坏玻璃上的功率的方法。与室外数字显示器相比,与在室内部署的显示器相比,户外呈现骚扰热挑战,有必要提出一个可以最好地受益于冷却效果的显示设计。有许多参数可以调整以在其热性能方面进行优化显示器,但特别是,本文探讨了调节破坏玻璃和液晶显示器(LCD)之间的间隙距离的效果,以了解最大LCD温度和风扇性能受到影响。

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