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Fiber optic distributed temperature sensing for the determination of air temperature

机译:光纤分布式温度感应器,用于确定空气温度

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摘要

This paper describes a method to correct for the effect of solar radiation in atmospheric distributed temperature sensing (DTS) applications. By using two cables with different diameters, one can determine what temperature a zero diameter cable would have. Such a virtual cable would not be affected by solar heating and would take on the temperature of the surrounding air. With two unshielded cable pairs, one black pair and one white pair, good results were obtained given the general consensus that shielding is needed to avoid radiation errors (WMO, 2010). The correlations between standard air temperature measurements and air temperatures derived from both cables of colors had a high correlation coefficient (ir/isup2/sup=0.99) and a RMSE of 0.38 °C, compared to a RMSE of 2.40 °C for a 3.0 mm uncorrected black cable. A thin white cable measured temperatures that were close to air temperature measured with a nearby shielded thermometer (RMSE of 0.61 °C). The temperatures were measured along horizontal cables with an eye to temperature measurements in urban areas, but the same method can be applied to any atmospheric DTS measurements, and for profile measurements along towers or with balloons and quadcopters.
机译:本文介绍了一种校正大气分布温度感测(DTS)应用中太阳辐射影响的方法。通过使用两条直径不同的电缆,可以确定零直径电缆的温度。这样的虚拟电缆不会受到太阳加热的影响,并且会影响周围空气的温度。使用两对非屏蔽电缆,一对黑线对和一对白线对,获得了良好的效果,因为人们普遍认为需要屏蔽以避免辐射误差(WMO,2010)。两种颜色的电缆得出的标准空气温度测量值与空气温度之间的相关性具有较高的相关系数( r 2 = 0.99),而RMSE为0.38°C对于3.0毫米未经校正的黑色电缆,其RMSE为2.40°C。一条细的白色电缆测得的温度接近用附近的屏蔽温度计(RMSE为0.61°C)测得的气温。温度是沿着水平电缆测量的,着眼于城市地区的温度测量,但是相同的方法可以应用于任何大气DTS测量,以及沿塔楼或气球和四轴飞行器的轮廓测量。

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