低云(Low-level clouds) 云底高:0 ~ 2000m(0 ~ 6500ft) 低云通常由液态的水滴或者过冷水滴组成,在寒冷的冬季,云体 … www.hiatc.com|基于2个网页 2. 低层云 浮质是空气中的化学微粒,通常可成长至水蒸汽能凝结其上,从而为低层云(low-level clouds)的液态水滴播种。由於这种匮 … ...
Low-level clouds over southern West Africa (5–10°N, 8°W–8°E) during July–September are an integral part of the WAM through their effect on the surface energy balance and precipitation, but their representation in climate models has received little attention. Here we use 30 (20) ...
During the West African summer monsoon season, extended nocturnal stratiform low-level clouds (LLCs) frequently form in the atmospheric boundary layer over southern West Africa and persist long into the following day affecting the regional climate. A unique data set was gathered within the framework...
Low-level cumulus clouds — which tend to top out at altitudes around 2 kilometers (1.2 miles) — were strongly affected by the degree of solar obscuration. Cloud cover started to decrease when about 15% of the sun's face was covered, about 30 minutes after the start of the eclipse. Th...
Closure of surface radiative fluxes can only be achieved by a realistic representation of the low-level liquid-containing clouds in the radiative transfer simulations. The original, likely erroneous, representation of these low-level clouds in the radiative transfer simul...
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Revisiting Estimates of Aerosol Indirect Effects in Thin, Liquid-Containing Arctic Clouds M. and de Boer, G.: Ubiquitous low-level liquid- 37 containing Arctic clouds: New observations and climate model constraints from CALIPSO- 38 GOCCP, Geophys. Res. Lett., 39(L20804), n/a-n/a, doi:10...
Using measurements from the Department of Energy’s Atmospheric Radiation Measurement Program, a modified ground-based remote sensing technique is developed and evaluated to study the impacts of the subadiabatic character of continental low-level stratiform clouds on microphysical properties and radiation bu...
As a result, the high-level cloud cover frequently extended over the northern part of Japan at this time. In contrast to the summer of 2003, the summer of 2004 was extremely hot, the Okhotsk High was less active, and the Pacific High was active and close to Japan. Low-level clouds ...
Here we show that low-level clouds consisting of liquid water droplets ('liquid clouds'), via their radiative effects, played a key part in this melt event by increasing near-surface temperatures. We used a suite of surface-based observations(3), remote sensing data, and a surface energy-...