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Measurement of atmospheric CO2 column concentrations to cloud tops with a pulsed multi-wavelength airborne lidar

机译:用脉冲多波长空气传播激光雷达测量大气CO2柱浓度云上的云层

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We have measured the column-averaged atmospheric CO2 mixing ratio to a variety of cloud tops by using an airborne pulsed multi-wavelength integrated-path differential absorption (IPDA) lidar. Airborne measurements were made at altitudes up to 13km during the 2011, 2013 and 2014 NASA Active Sensing of CO2 Emissions over Nights, Days, and Seasons (ASCENDS) science campaigns flown in the United States West and Midwest and were compared to those from an in situ sensor. Analysis of the lidar backscatter profiles shows the average cloud top reflectance was ~5% for the CO2 measurement at 1572.335nm except to cirrus clouds, which had lower reflectance. The energies for 1μs wide laser pulses reflected from cloud tops were sufficient to allow clear identification of CO2 absorption line shape and then to allow retrievals of atmospheric column CO2 from the aircraft to cloud tops more than 90% of the time. Retrievals from the CO2 measurements to cloud tops had minimal bias but larger standard deviations when compared to those made to the ground, depending on cloud top roughness and reflectance. The measurements show this new capability helps resolve CO2 horizontal and vertical gradients in the atmosphere. When used with nearby full-column measurements to ground, the CO2 measurements to cloud tops can be used to estimate the partial-column CO2 concentration below clouds, which should lead to better estimates of surface carbon sources and sinks. This additional capability of the range-resolved CO2 IPDA lidar technique provides a new benefit for studying the carbon cycle in future airborne and space-based CO2 missions.
机译:我们测量了柱平均大气中的二氧化碳通过使用机载脉冲多波长集成路差分吸收(IPDA)激光雷达混合比的多种云层的。机载测量,在海拔高达13公里CO2排放量超过夜,天是2011年,2013年和2014年美国航空航天局的有源传感期间提出,并且飞行在美国西部和中西部四季(上升)科学活动和相比,这些来自于原位传感器。的激光雷达后向散射曲线示出了分析的平均云顶部反射率在1572.335nm所述CO2测量除了卷云,其具有较低的反射率〜5%。用于从云层反射的宽为1μs的激光脉冲的能量足以允许CO 2吸收线的形状的明确确定,然后以允许大气柱CO2的检索从飞机到云毛条超过90%的时间。比起那些在地上做,这取决于云顶粗糙度和反射率时,从CO2测量云层的检索有最小的偏差,但较大的标准偏差。测量结果表明这个新功能可以帮助解决二氧化碳水平和垂直梯度的氛围。当与附近的全柱测量到地面使用的,CO2测量云层可以用来估计所述的部分列CO2浓度低于云,这应该引起的表面碳源和汇的更好的估计。这种额外的范围内,解决CO2激光雷达IPDA技术的能力提供了新的效益在未来机载和天基CO2任务研究碳循环。

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