Atmospheric Temperature Determination from High Resolution Laser Absorption Measurements

C. Korb, J. Kalshoven, G. Schwemmer, M. Dombrowski
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引用次数: 1

Abstract

Remote measurements of atmospheric temperature have been demonstrated using a high resolution two-frequency laser technique. In addition, a new technique for measuring the temperature dependence of collision broadened line widths is described. Temperature is one of the most important atmospheric state variables needed for weather forecasting and modeling. Remote measurements of temperature with current satellite passive sensors is limited to accuracies of the order of 2.5K with vertical resolution on the order of 5-10 km. This limits the applicability of this data, particularly m the lower atmosphere. Simulations have shown that the use of high resolution pulsed lasers in a range resolved mode (LIDAR) could lead to significant improvements in both accuracy, 1K, and vertical resolution, 2 km, respectively.(1)
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用高分辨率激光吸收测量法测定大气温度
利用高分辨率双频激光技术对大气温度进行了远程测量。此外,还介绍了一种测量碰撞加宽线宽度温度依赖性的新技术。温度是天气预报和建模所需的最重要的大气状态变量之一。目前卫星无源传感器对温度的远程测量精度限制在2.5K左右,垂直分辨率在5-10公里左右。这限制了这些数据的适用性,特别是在低层大气中。模拟表明,在距离分辨模式(LIDAR)中使用高分辨率脉冲激光器可以显著提高精度(1K)和垂直分辨率(2 km)。
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