Optimization of Lidar Boundary Layer Height Retrieval

S. Palm, J. Spinhirne
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Abstract

A highly significant application for lidar sounding of the atmosphere is the retrieval of the height of the planetary boundary layer (PBL). The PBL height is an important factor in the transport of energy from the surface to the free troposphere and is directly related to the initiation and development of mesoscale events. Thus PBL height is a very useful input and validation parameter for Global Circulation Models. Currently there is no effective passive retrieval technique for PBL height. However the detection of PBL height from lidar aerosol scattering has been widely demonstrated. A primary consideration for lidar PBL height retrieval is the minimal detectability in terms of either atmospheric scattering structure or lidar system signal to noise sensitivity. Global measurements of PBL height from space borne lidar systems are envisioned. A primary consideration is how reliably PBL height may be detected for given lidar system parameters. The cost of a space borne system may be significantly reduced by minimizing telescope size and transmitted laser power.
激光雷达边界层高度反演的优化
大气激光雷达探测的一个非常重要的应用是行星边界层高度的反演。边界层高度是地表向自由对流层输送能量的重要因素,直接关系到中尺度事件的发生和发展。因此,边界层高度是全球环流模式非常有用的输入参数和验证参数。目前还没有有效的PBL高度被动反演技术。然而,利用激光雷达气溶胶散射探测边界层高度已经得到了广泛的应用。激光雷达PBL高度反演的主要考虑因素是大气散射结构或激光雷达系统信号对噪声灵敏度的最小可探测性。设想了星载激光雷达系统对PBL高度的全球测量。首先要考虑的是在给定的激光雷达系统参数下,探测PBL高度的可靠性。空间载系统的成本可以通过最小化望远镜尺寸和传输激光功率而显著降低。
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