Radiative effects of polar stratospheric clouds

Radiative transfer calculations are performed for polar stratospheric clouds (PSCs) using newly acquired PSC properties and polar atmospheric data. PSC radiative effects depend strongly on upwelling thermal radiation and vary from infrared heating over warm polar surfaces, such as oceans, to cooling...

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Main Authors: Kinne, S., Toon, O. B.
Format: Other/Unknown Material
Language:unknown
Published: 1990
Subjects:
Online Access:http://ntrs.nasa.gov/search.jsp?R=19900041424
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author Kinne, S.
Toon, O. B.
author_facet Kinne, S.
Toon, O. B.
author_sort Kinne, S.
collection NASA Technical Reports Server (NTRS)
description Radiative transfer calculations are performed for polar stratospheric clouds (PSCs) using newly acquired PSC properties and polar atmospheric data. PSC radiative effects depend strongly on upwelling thermal radiation and vary from infrared heating over warm polar surfaces, such as oceans, to cooling over cold surfaces, such as the Antarctic plateau. Heating and cooling rates of nitric acid PSCs are smaller than + or - 0.1 K/day. Rates for optically thicker ice PSCs vary from 1.0 to -0.2 K/day, those for orographically forced ice PSCs even from 3.0 to -0.5 K/day. Frequently observed optically thick cirrus decks near the tropopause provide a very cold radiative surface. These clouds not only act to prevent heating and enhance cooling in ice PSCs to -0.5 K/day and orographic ice PSCs to 2 K/day, but such cirrus cloud decks also cool the entire stratosphere by up to -0.5 K/day over warm surfaces, even in the absence of PSCs.
format Other/Unknown Material
genre Antarc*
Antarctic
genre_facet Antarc*
Antarctic
geographic Antarctic
The Antarctic
geographic_facet Antarctic
The Antarctic
id ftnasantrs:oai:casi.ntrs.nasa.gov:19900041424
institution Open Polar
language unknown
op_collection_id ftnasantrs
op_coverage Unclassified, Unlimited, Publicly available
op_relation http://ntrs.nasa.gov/search.jsp?R=19900041424
Accession ID: 90A28479
op_rights Copyright
op_source Other Sources
publishDate 1990
record_format openpolar
spelling ftnasantrs:oai:casi.ntrs.nasa.gov:19900041424 2025-01-16T19:26:06+00:00 Radiative effects of polar stratospheric clouds Kinne, S. Toon, O. B. Unclassified, Unlimited, Publicly available Mar 1, 1990 http://ntrs.nasa.gov/search.jsp?R=19900041424 unknown http://ntrs.nasa.gov/search.jsp?R=19900041424 Accession ID: 90A28479 Copyright Other Sources 46 Geophysical Research Letters, Supplement; 17; 373-376 1990 ftnasantrs 2012-02-15T18:28:08Z Radiative transfer calculations are performed for polar stratospheric clouds (PSCs) using newly acquired PSC properties and polar atmospheric data. PSC radiative effects depend strongly on upwelling thermal radiation and vary from infrared heating over warm polar surfaces, such as oceans, to cooling over cold surfaces, such as the Antarctic plateau. Heating and cooling rates of nitric acid PSCs are smaller than + or - 0.1 K/day. Rates for optically thicker ice PSCs vary from 1.0 to -0.2 K/day, those for orographically forced ice PSCs even from 3.0 to -0.5 K/day. Frequently observed optically thick cirrus decks near the tropopause provide a very cold radiative surface. These clouds not only act to prevent heating and enhance cooling in ice PSCs to -0.5 K/day and orographic ice PSCs to 2 K/day, but such cirrus cloud decks also cool the entire stratosphere by up to -0.5 K/day over warm surfaces, even in the absence of PSCs. Other/Unknown Material Antarc* Antarctic NASA Technical Reports Server (NTRS) Antarctic The Antarctic
spellingShingle 46
Kinne, S.
Toon, O. B.
Radiative effects of polar stratospheric clouds
title Radiative effects of polar stratospheric clouds
title_full Radiative effects of polar stratospheric clouds
title_fullStr Radiative effects of polar stratospheric clouds
title_full_unstemmed Radiative effects of polar stratospheric clouds
title_short Radiative effects of polar stratospheric clouds
title_sort radiative effects of polar stratospheric clouds
topic 46
topic_facet 46
url http://ntrs.nasa.gov/search.jsp?R=19900041424