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Radiative budget and cloud radiative effect over the Atlantic from ship-based observations

机译:舰载观测资料显示大西洋上空的辐射预算和云辐射效应

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The aim of this study is to determine cloud-type resolved cloud radiative budgets and cloud radiative effects from surface measurements of broadband radiative fluxes over the Atlantic Ocean. Furthermore, based on simultaneous observations of the state of the cloudy atmosphere, a radiative closure study has been performed by means of the ECHAM5 single column model in order to identify the model's ability to realistically reproduce the effects of clouds on the climate system. An extensive database of radiative and atmospheric measurements has been established along five meridional cruises of the German research icebreaker Polarstern. Besides pyranometer and pyrgeometer for downward broadband solar and thermal radiative fluxes, a sky imager and a microwave radiometer have been utilized to determine cloud fraction and cloud type on the one hand and temperature and humidity profiles as well as liquid water path for warm non-precipitating clouds on the other hand. Averaged over all cruise tracks, we obtain a total net (solar + thermal) radiative flux of 144 W m~(-2) that is dominated by the solar component. In general, the solar contribution is large for cirrus clouds and small for stratus clouds. No significant meridional dependencies were found for the surface radiation budgets and cloud effects. The strongest surface long-wave cloud effects were shown in the presence of low level clouds. Clouds with a high optical density induce strong negative solar radiative effects under high solar altitudes. The mean surface net cloud radiative effect is -33 W m~(-2). For the purpose of quickly estimating the mean surface longwave, shortwave and net cloud effects in moderate, subtropical and tropical climate regimes, a new parameterisation was created, considering the total cloud amount and the solar zenith angle. The ECHAM5 single column model provides a surface net cloud effect that is more cooling by 17 W m~(-2) compared to the radiation observations. This overestimation in solar cooling is mostly caused by the shortwave impact of convective clouds. The latter show a large overestimation in solar cooling of up to 114 W m~(-2). Mean cloud radiative effects of cirrus and stratus clouds were simulated close to the observations.
机译:这项研究的目的是通过对大西洋上空宽带辐射通量的表面测量来确定云型分辨的云辐射预算和云辐射效应。此外,基于对阴天大气状态的同时观测,已通过ECHAM5单柱模型进行了辐射封闭研究,以识别该模型真实再现云对气候系统影响的能力。沿德国研究破冰船Polarstern的五次子午航行建立了广泛的辐射和大气测量数据库。除了用于向下传播的太阳辐射和热辐射通量的总辐射表和总辐射表之外,还利用天空成像仪和微波辐射计确定云的比例和云的类型,并确定温度和湿度曲线以及用于温暖不降水的液态水路径。另一方面。在所有巡航轨道上取平均值,我们得出的总净(太阳+热)辐射通量为144 W m〜(-2),由太阳分量决定。通常,卷云的太阳贡献较大,而层云的太阳贡献较小。对于表面辐射预算和云效应,没有发现明显的子午依存关系。在存在低水平云的情况下,显示出最强的表面长波云效应。具有高光密度的云在高太阳高度下会产生强烈的负太阳辐射效应。平均表面净云辐射效应为-33 W m〜(-2)。为了快速估计中度,亚热带和热带气候模式下的平均表面长波,短波和净云效应,考虑了总云量和太阳天顶角,创建了一个新的参数化方法。 ECHAM5单柱模型提供了一个表面网云效应,与辐射观测相比,该效应要高17 W m〜(-2)。太阳冷却的这种高估主要是由对流云的短波影响引起的。后者显示了高达114 W m〜(-2)的太阳冷却的高估。接近观测值模拟了卷云和层云的平均云辐射效应。

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