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Cloud and radiative heating profiles associated with the boreal summer intraseasonal oscillation

机译:与夏季夏季北方季节内振荡有关的云和辐射加热曲线

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摘要

The cloud water content (CW) and radiative heating rate (QR) structures related to northward propagating boreal summer intraseasonal oscillations (BSISOs) are analyzed using data from A-train satellites in conjunction with the ERA-Interim reanalysis. It is found that the northward movement of CW- and QR anomalies are closely synchronized with the northward movement of BSISO precipitation maxima. Commensurate with the northward propagating BSISO precipitation maxima, the CW anomalies exhibit positive ice (liquid) CW maxima in the upper (middle/low) troposphere with a prominent tilting structure in which the low-tropospheric (upper-tropospheric) liquid (ice) CW maximum leads (lags) the BSISO precipitation maximum. The BSISO-related shortwave heating (QSW) heats (cools) the upper (low) troposphere; the longwave heating (QLW) cools (heats) the upper (middle/low) troposphere. The resulting net radiative heating (QRN), being dominated by QLW, cools (heats) the atmosphere most prominently above the 200 hPa level (below the 600 hPa level). Enhanced clouds in the upper and middle troposphere appears to play a critical role in increasing low-level QLW and QRN. The vertically-integrated QSW, QLW and QRN are positive in the region of enhanced CW with the maximum QRN near the latitude of the BSISO precipitation maximum. The bottom-heavy radiative heating anomaly resulting from the cloud-radiation interaction may act to strengthen convection.
机译:使用来自A列车卫星的数据并结合ERA-Interim重新分析,分析了与北向传播的北半球夏季季节内振荡(BSISO)相关的云水含量(CW)和辐射加热速率(QR)结构。发现CW-和QR异常的北移与BSISO降水最大值的北移紧密同步。与向北传播的BSISO降水最大值相对应,CW异常在对流层上(中/低)表现出正冰(液)CW最大值,并具有明显的倾斜结构,其中对流层低(对流层)液态(冰)CW最大超前(滞后)BSISO最大降水量。 BSISO相关的短波加热(QSW)加热(冷却)对流层的上层(低层);长波加热(QLW)冷却(加热)上部(中/低)对流层。最终的净辐射加热(QRN)受QLW支配,最明显地冷却(加热)了200 hPa以上(低于600 hPa以下)的大气层。对流层中上层的增强云似乎在增加低层QLW和QRN中起关键作用。垂直积分QSW,QLW和QRN在增强CW区域为正,最大QRN接近BSISO降水最大值的纬度。由云辐射相互作用引起的底部重辐射热异常可能起到加强对流的作用。

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