1995Journal of Geophysical Research AtmospheresRequires access

Comparison between SAGE II and ISCCP high‐level clouds: 2. Locating cloud tops

Xiaohan Liao, William B. Rossow, David Rind

Open publisher page 54 citations

Abstract

A comparison is made of the vertical distribution of high‐level cloud tops derived from the Stratospheric Aerosol and Gas Experiment II (SAGE II) occultation measurements and from the International Satellite Cloud Climatology Project (ISCCP) for all Julys and Januarys in 1985 to 1990. The results suggest that ISCCP overestimates the pressure of high‐level clouds by up to 50–150 mbar, particularly at low latitudes. This is caused by the frequent presence of clouds with diffuse tops (>50% time when cloudy events are observed). The averaged vertical extent of the diffuse top is about 1.5 km. At midlatitudes where the SAGE II and ISCCP cloud top pressure agree best, clouds with distinct tops reach a maximum relative proportion of the total level cloud amount (about 30–40%), and diffuse‐topped clouds are reduced to their minimum (30–40%). The ISCCP‐defined cloud top pressure should be regarded not as the material physical height of the clouds but as the level which emits the same infrared radiance as observed. SAGE II and ISCCP cloud top pressures agree for clouds with distinct tops. There is also an indication that the cloud top pressures of optically thin clouds not overlying thicker clouds are poorly estimated by ISCCP at middle latitudes. The average vertical extent of these thin clouds is about 2.5 km.

About this research paper

What this paper is about

A comparison is made of the vertical distribution of high‐level cloud tops derived from the Stratospheric Aerosol and Gas Experiment II (SAGE II) occultation measurements and from the International Satellite Cloud Climatology Project (ISCCP) for all Julys and Januarys in 1985 to 1990. The results suggest that ISCCP overestimates the pressure of high‐level clouds by up to 50–150 mbar, particularly at low latitudes. This is caused by the frequent presence of clouds with diffuse tops (>50% time when cloudy events are observed). The averaged vertical extent of the diffuse top is about 1.5 km. At midlatitudes where the SAGE II and ISCCP cloud top pressure agree best, clouds with distinct tops reach a maximum relative proportion of the total level cloud amount (about 30–40%), and diffuse‐topped clouds are reduced to their minimum (30–40%). The ISCCP‐defined cloud top pressure should be regarded not as the material physical height of the clouds but as the level which emits the same infrared radiance as observed. SAGE II and ISCCP cloud top pressures agree for clouds with distinct tops. There is also an indication that the cloud top pressures of optically thin clouds not overlying thicker clouds are poorly estimated by ISCCP at middle latitudes. The average vertical extent of these thin clouds is about 2.5 km.

Why it matters

OpenAlex reports 54 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

A comparison is made of the vertical distribution of high‐level cloud tops derived from the Stratospheric Aerosol and Gas Experiment II (SAGE II) occultation measurements and from the International Satellite Cloud Climatology Project (ISCCP) for all Julys and Januarys in 1985 to 1990. The results suggest that ISCCP overestimates the pressure of high‐level clouds by up to 50–150 mbar, particularly at low latitudes. This is caused by the frequent presence of clouds with diffuse tops (>50% time when cloudy events are observed). The averaged vertical extent of the diffuse top is about 1.5 km. At midlatitudes where the SAGE II and ISCCP cloud top pressure agree best, clouds with distinct tops reach a maximum relative proportion of the total level cloud amount (about 30–40%), and diffuse‐topped clouds are reduced to their minimum (30–40%). The ISCCP‐defined cloud top pressure should be regarded not as the material physical height of the clouds but as the level which emits the same infrared radiance as observed. SAGE II and ISCCP cloud top pressures agree for clouds with distinct tops. There is also an indication that the cloud top pressures of optically thin clouds not overlying thicker clouds are poorly estimated by ISCCP at middle latitudes. The average vertical extent of these thin clouds is about 2.5 km.

Key concepts: International Satellite Cloud Climatology Project, Cloud top, Cloud height, TOPS, Environmental science, Atmospheric sciences, Radiance, Cloud fraction

Related papers

Back to paper searchBrowse research topicsOriginal source
Comparison between SAGE II and ISCCP high‐level clouds: 2. Locating cloud tops — Research Paper | ScholarLens