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Satellite-based estimate of global aerosol–cloud radiative forcing by marine warm clouds

机译:海洋温暖云对全球气溶胶-云辐射强迫的卫星估算

摘要

Changes in aerosol concentrations affect cloud albedo and Earth’s radiative balance. Aerosol radiative forcing from pre-industrial time to the present due to the effect of atmospheric aerosol levels on the micro- and macrophysics of clouds bears the largest uncertainty among external influences on climate change. Of all cloud forms, low-level marine clouds exert the largest impact on the planet’s albedo. For example, a 6% increase in the albedo of global marine stratiform clouds could offset the warming that would result from a doubling of atmospheric CO_2 concentrations. Marine warm cloud properties are thought to depend on aerosol levels and large-scale dynamic or thermodynamic states. Here we present a comprehensive analysis of multiple measurements from the A-Train constellation of Earth-observing satellites, to quantify the radiative forcing exerted by aerosols interacting with marine clouds. Specifically, we analyse observations of co-located aerosols and clouds over the world’s oceans for the period August 2006–April 2011, comprising over 7.3 million CloudSat single-layer marine warm cloud pixels. We find that thermodynamic conditions—that is, tropospheric stability and humidity in the free troposphere—and the state of precipitation act together to govern the cloud liquid water responses to the presence of aerosols and the strength of aerosol–cloud radiative forcing.
机译:气溶胶浓度的变化会影响云的反照率和地球的辐射平衡。由于大气气溶胶水平对云的微观和宏观物理的影响,从工业化前的时间到现在的气溶胶辐射强迫在气候变化的外部影响中具有最大的不确定性。在所有云形式中,低层海洋云对地球的反照率影响最大。例如,全球海洋层状云的反照率增加6%可以抵消由于大气中CO_2浓度增加一倍而引起的变暖。人们认为海洋暖云的性质取决于气溶胶水平和大规模动态或热力学状态。在这里,我们对来自地球观测卫星的A火车星座的多个测量值进行全面分析,以量化气溶胶与海洋云相互作用所施加的辐射强迫。具体来说,我们分析了2006年8月至2011年4月期间在全球海洋中共存的气溶胶和云的观测结果,其中包括730万个CloudSat单层海洋暖云像素。我们发现热力学条件,即对流层的稳定性和自由对流层的湿度,与降水状态共同作用,控制着云液态水对气溶胶的存在以及气溶胶-云辐射强迫的响应。

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