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ANALYTICAL MODEL OF DIURNAL TEMPERATURE FOR A RADOME ENCLOSED ANTENNA

机译:天线罩内封闭天线昼间温度的解析模型

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A critical design consideration for the Haystack Ultrawide-band Satellite Imaging Radar's (HUS1R) with respect to its performance at W-band is thermal distortion. This is because thermal distortion affects the surface accuracy of a parabolic reflector. For example, an extremely tight surface tolerance, -100 microns root-mean-squared, is required to obtain antenna performance efficiency close to 85 percent. Thermal control is one method for mitigating this distortion. Cost effective thermal control relies on a model that rapidly and accurately predicts the antenna's temperature. This work develops a simplified analytical model to predict the surface temperature of a metal antenna based on external diurnal temperature variations. The thermal energy balance of the radome/antenna captures the radome enclosed antenna temperature transients. This study also includes a parametric investigation to quantify the sensitivity of the model with respect to convection coefficients. The developed model generates results for four months, (February, April, August, and October). We compare some of these results to experimental measurements.
机译:Haystack超宽带卫星成像雷达(HUS1R)在W波段性能方面的关键设计考虑因素是热失真。这是因为热变形会影响抛物面反射镜的表面精度。例如,要获得接近85%的天线性能效率,就需要非常严格的表面公差,即-100微米均方根。热控制是减轻这种变形的一种方法。具有成本效益的热控制依赖于可以快速准确地预测天线温度的模型。这项工作开发了一个简化的分析模型,可以根据外部昼夜温度变化来预测金属天线的表面温度。天线罩/天线的热能平衡捕获了天线罩封闭的天线温度瞬变。这项研究还包括参数研究,以量化模型对流系数的敏感性。开发的模型产生四个月(2月,4月,8月和10月)的结果。我们将其中一些结果与实验测量结果进行了比较。

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