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New technique for retrieval of atmospheric temperature profiles from Rayleigh-scatter lidar measurements using nonlinear inversion

机译:利用非线性反演从瑞利散射激光雷达测量中检索大气温度剖面的新技术

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摘要

The conventional method of calculating atmospheric temperature profiles using Rayleigh-scattering lidar measurements has limitations that necessitate abandoning temperatures retrieved at the greatest heights, due to the assumption of a pressure value required to initialize the integration at the highest altitude. An inversion approach is used to develop an alternative way of retrieving nightly atmospheric temperature profiles from the lidar measurements. Measurements obtained by the Purple Crow lidar facility located near The University of Western Ontario are used to develop and test this new technique. Our results show temperatures can be reliably retrieved at all heights where measurements with adequate signal-to-noise ratio exist. A Monte Carlo technique was developed to provide accurate estimates of both the systematic and random uncertainties for the retrieved nightly average temperature profile. An advantage of this new method is the ability to seed the temperature integration from the lowest rather than the greatest height, where the variability of the pressure is smaller than in the mesosphere or lower thermosphere and may in practice be routinely measured by a radiosonde, rather than requiring a rocket or satellite-borne measurement. Thus, this new technique extends the altitude range of existing Rayleigh-scatter lidars 10-15 km, producing the equivalent of four times the power-aperature product.
机译:由于假定在最高高度初始化积分所需的压力值,使用瑞利散射激光雷达测量值计算大气温度分布的传统方法存在局限性,必须放弃在最大高度获取的温度。使用反演方法来开发从激光雷达测量中检索夜间大气温度剖面的另一种方法。由位于西安大略大学附近的Purple Crow激光雷达设施获得的测量结果被用于开发和测试这项新技术。我们的结果表明,在具有足够信噪比的测量条件下,可以在所有高度可靠地恢复温度。开发了一种蒙特卡洛技术,可为检索到的夜间平均温度分布图提供系统和随机不确定性的准确估计。这种新方法的优点是能够从最低高度而不是最大高度播种温度积分,在这种情况下,压力的变化性小于中层或较低层的热层,实际上可以通过探空仪进行常规测量,而不是需要火箭或卫星测量。因此,这项新技术将现有的瑞利散射激光雷达的高度范围扩展了10-15公里,相当于功率乘积的四倍。

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