FIRE Arctic Clouds Experiment

Эксперимент FIRE по исследованию арктических облаков
Judith A. Curry, Peter V. Hobbs, Michael D. King, David A. Randall, Patrick Minnis, George A. Isaac, James O. Pinto, Taneil Uttal, Anthony Bucholtz, Douglas Cripe, H. Gerber, C. W. Fairall, T. J. Garrett, James G. Hudson, Janet Intrieri, Christian Jakob, Tara Jensen, P. Lawson, D. Marcotte, Louis Nguyen, Peter Pilewskie, Arthur L. Rangno, D. C. Rogers, K. B. Strawbridge, Francisco P. J. Valero, Alastair G. Williams, D. P. Wylie
2000-01-01

Arctic cloudsFIRE Arctic Clouds Experimentclimate model parameterizationscloud-radiation feedbackssatellite remote sensing
An overview is given of the First ISCCP Regional Experiment Arctic Clouds Experiment that was conducted during April–July 1998. The principal goal of the field experiment was to gather the data needed to examine the impact of arctic clouds on the radiation exchange between the surface, atmosphere, and space, and to study how the surface influences the evolution of boundary layer clouds. The observations will be used to evaluate and improve climate model parameterizations of cloud and radiation processes, satellite remote sensing of cloud and surface characteristics, and understanding of cloud–radiation feedbacks in the Arctic. The experiment utilized four research aircraft that flew over surface-based observational sites in the Arctic Ocean and at Barrow, Alaska. This paper describes the programmatic and scientific objectives of the project, the experimental design (including research platforms and instrumentation), the conditions that were encountered during the field experiment, and some highlights of preliminary observations, modeling, and satellite remote sensing studies.
1
Collected observations are intended to evaluate and improve climate-model parameterizations, satellite retrievals of cloud and surface properties, and understanding of Arctic cloud–radiation feedbacks.
2
Four research aircraft operated over surface-based sites in the Arctic Ocean and Barrow, Alaska, using coordinated airborne and ground-based observations.
3
The FIRE Arctic Clouds Experiment was conducted from April to July 1998 to investigate Arctic cloud impacts on surface–atmosphere–space radiation exchange.
4
The experiment examined how Arctic surface conditions influence the evolution of boundary-layer clouds.
5
The program documented its objectives, experimental design, encountered conditions, and preliminary results from observations, modeling, and satellite remote sensing.

Arctic clouds and the underlying Arctic surface–atmosphere system

The effects of Arctic clouds on surface–atmosphere–space radiation exchange and the influence of the surface on boundary-layer cloud evolution

Publication Details
Publication Date
2000-01-01
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Judith A. Curry
Peter V. Hobbs
Michael D. King
David A. Randall
Patrick Minnis
George A. Isaac
James O. Pinto
Taneil Uttal
Anthony Bucholtz
Douglas Cripe
H. Gerber
C. W. Fairall
T. J. Garrett
James G. Hudson
Janet Intrieri
Christian Jakob
Tara Jensen
P. Lawson
D. Marcotte
Louis Nguyen
Peter Pilewskie
Arthur L. Rangno
D. C. Rogers
K. B. Strawbridge
Francisco P. J. Valero
Alastair G. Williams
D. P. Wylie
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%