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Cloud radiative effect, cloud fraction and cloud type at two stations in Switzerland using hemispherical sky cameras

机译:使用半球型天文相机在瑞士的两个站点进行云辐射效应,云分数和云类型

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pstrongAbstract./strong The current study analyses the cloud radiative effect during the daytime depending on cloud fraction and cloud type at two stations in Switzerland over a time period of 3 to 5 years. Information on fractional cloud coverage and cloud type is retrieved from images taken by visible all-sky cameras. Cloud-base height (CBH) data are retrieved from a ceilometer and integrated water vapour (IWV) data from GPS measurements. The longwave cloud radiative effect (LCE) for low-level clouds and a cloud coverage of 8??oktas has a median value between 59 and 72span class="thinspace"/spanWmsupa??2/sup. For mid- and high-level clouds the LCE is significantly lower. It is shown that the fractional cloud coverage, the CBH and IWV all have an influence on the magnitude of the LCE. These observed dependences have also been modelled with the radiative transfer model MODTRAN5. The relative values of the shortwave cloud radiative effect (SCEsubrel/sub) for low-level clouds and a cloud coverage of 8??oktas are between a??90 and a??62span class="thinspace"/span%. Also here the higher the cloud is, the less negative the SCEsubrel/sub values are. In cases in which the measured direct radiation value is below the threshold of 120span class="thinspace"/spanWmsupa??2/sup (occulted sun) the SCEsubrel/sub decreases substantially, while cases in which the measured direct radiation value is larger than 120span class="thinspace"/spanWmsupa??2/sup (visible sun) lead to a SCEsubrel/sub of around 0span class="thinspace"/span%. In 14 and 10span class="thinspace"/span% of the cases in Davos and Payerne respectively a cloud enhancement has been observed with a maximum in the cloud class cirrocumulusa??altocumulus at both stations. The calculated median total cloud radiative effect (TCE) values are negative for almost all cloud classes and cloud coverages./p.
机译:> >摘要。本研究根据瑞士两个站点在3到5年的时间段内,根据白天的云量和云类型分析白天的云辐射效应。从可见的全天候摄像机拍摄的图像中检索有关分数云覆盖率和云类型的信息。云高高度(CBH)数据从云高仪中检索,综合水蒸气(IWV)数据从GPS测量中检索。低层云的长波云辐射效应(LCE)和云覆盖度为8 ?? oktas时,中值介于59和72之间 class =“ thinspace”> Wm a ?? 2 。对于中高层云,LCE明显较低。结果表明,分数云覆盖率,CBH和IWV均会影响LCE的大小。这些观察到的依赖性也已通过辐射转移模型MODTRAN5进行了建模。低层云的短波云辐射效应(SCE rel )的相对值和8 ?? oktas的云覆盖率在a ?? 90和a ?? 62 class =“ thinspace“> %。同样在这里,云越高,SCE rel 值的负值越小。如果测得的直接辐射值低于120 class =“ thinspace”> Wm a ?? 2 (隐太阳)的阈值,则SCE rel < / sub>大大降低,而直接辐射测量值大于120 class =“ thinspace”> Wm a ?? 2 (可见太阳)的情况会导致SCE rel 约为0 class =“ thinspace”> %。在达沃斯和佩耶尔纳,分别有14%和10%的病例发生了云增强,在这两个站的卷云cirrocumulusa ?? altocumulus都达到了最大值。计算得出的几乎所有云类别和云覆盖率中值云总辐射效应(TCE)值为负。

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