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首页> 外文期刊>Journal of Climate >Factors Limiting Convective Cloud-Top Height at the ARM Nauru Island Climate Research Facility
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Factors Limiting Convective Cloud-Top Height at the ARM Nauru Island Climate Research Facility

机译:限制ARM瑙鲁岛气候研究中心对流云顶高度的因素

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Cumulus congestus clouds, with moderate shortwave albedos and cloud-top temperatures near freezing, occur fairly often in the Tropics. These clouds may play an important role in the evolution of the Madden-Julian oscillation and the regulation of relative humidity in the midtroposphere. Despite this importance they are not necessarily simulated very well in global climate models. Surface remote sensing observations and soundings from the Atmospheric Radiation Measurement (ARM) climate research facility at Nauru Island are coupled with a simple parcel model in order to address the following questions about these cloud types: 1) Which environmental factors play a role in determining the depth of tropical convective clouds. 2) What environmental parameters are related to entrainment rate in cumulus congestus clouds. The results presented herein suggest that at Nauru Island a drying of the midtroposphere is more likely to be responsible for limiting congestus cloud-top heights than is a stabilizing ofthe freezing level. It is also found that low-level CAPE and the RH profile account for the largest portion of the variance in cumulus congestus entrainment rates, consistent with the idea that entrainment rate depends on the buoyant production of turbulent kinetic energy. If the analysis is limited to cases where there is a sounding during the hour preceding the cumulus congestus observations, it is found that the low-level CAPE accounts for 85% of the total variance in entrainment rate.
机译:在热带地区,充沛的积云,短波反照率中等且云顶温度接近冰点。这些云可能在Madden-Julian振荡的演变以及对流层中层相对湿度的调节中起重要作用。尽管具有这种重要性,但不一定在全球气候模型中对它们进行很好的模拟。来自瑙鲁岛的大气辐射测量(ARM)气候研究机构的地面遥感观测和探测结果与简单的地块模型相结合,以解决有关这些云类型的以下问题:1)哪些环境因素在确定云的类型中起着作用热带对流云的深度。 2)哪些环境参数与积云中的夹带率有关。本文提供的结果表明,在瑙鲁岛,对流层中层的干燥比稳定冰冻水平更可能导致限制充血的云顶高度。还发现,低水平的CAPE和RH剖面占积云夹杂物夹带率方差的最大部分,这与夹带率取决于湍动能的浮力产生的观点一致。如果分析仅限于积云观测之前的一个小时内有声音发生的情况,则发现低水平CAPE占总夹带率差异的85%。

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