Task 4 Project 2

From CAWSES

(Difference between revisions)
Jump to: navigation, search
(Added Project Plan and Project Activities section)
m (Project plan)
Line 11: Line 11:
==Project plan==
==Project plan==
#Investigate upward coupling at middle latitudes and study the relationship between E- and F-region instabilities  
#Investigate upward coupling at middle latitudes and study the relationship between E- and F-region instabilities  
-
*Perform coordinated observations of vector background electric fields and background MLT wind profiles in conjunction with airglow observations of mesospheric and thermospheric/ionospheric emissions in the Caribbean.
+
#*Perform coordinated observations of vector background electric fields and background MLT wind profiles in conjunction with airglow observations of mesospheric and thermospheric/ionospheric emissions in the Caribbean.
-
###30-MHz radar imaging system on St. Croix (Hysell)
+
#*#30-MHz radar imaging system on St. Croix (Hysell)
-
###Wide-angle imaging and GPS TEC systems on Bonaire and Trinidad (Makela)
+
#*#Wide-angle imaging and GPS TEC systems on Bonaire and Trinidad (Makela)
-
###Arecibo incoherent scatter radar
+
#*#Arecibo incoherent scatter radar
#Investigate upward coupling of gravity waves and the development of equatorial instabilities
#Investigate upward coupling of gravity waves and the development of equatorial instabilities
-
*Perform coordinated observations of neutral and plasma parameters  
+
#*Perform coordinated observations of neutral and plasma parameters  
-
###SpreadFEx2 campaign in Brazil (Fritts, Makela, Takahashi, Buriti) including wide-angle imaging, Fabry-Perot interferometery, GPS TEC and scintillation measurements, and nightglow photometry.
+
#*#SpreadFEx2 campaign in Brazil (Fritts, Makela, Takahashi, Buriti) including wide-angle imaging, Fabry-Perot interferometery, GPS TEC and scintillation measurements, and nightglow photometry.
-
###Study of Atmospheric Forcing and Responses (SAFAR) study in India (Patra et al) including MST radar, lidar, ionosondes, GPS balloon, lower atmospheric wind profiler, measurements of daytime/nighttime airglow, magnetometer, and MF radar (NARL, SP, EGRL).
+
#*#Study of Atmospheric Forcing and Responses (SAFAR) study in India (Patra et al) including MST radar, lidar, ionosondes, GPS balloon, lower atmospheric wind profiler, measurements of daytime/nighttime airglow, magnetometer, and MF radar (NARL, SP, EGRL).
-
###Observations in the new JULIA-imaging mode at the Jicamarca Radio Observatory in Peru to gain deeper understanding of the formation and evolution of equatorial irregularities at 3-m scale (Chau).  Coordinate with nightglow and Fabry-Perot observations (Makela/Gerrard/Meriwether) and GPS observations (LISN/Valladares) in western South America.
+
#*#Observations in the new JULIA-imaging mode at the Jicamarca Radio Observatory in Peru to gain deeper understanding of the formation and evolution of equatorial irregularities at 3-m scale (Chau).  Coordinate with nightglow and Fabry-Perot observations (Makela/Gerrard/Meriwether) and GPS observations (LISN/Valladares) in western South America.
#Develop a database of observations from instruments involved in these studies for easier investigations of longitudinal variability of upward coupling and the development of equatorial irregularities.  Longitudinal chain of  ionosonde, Meteor/MF radar, magnetometer and airglow imagers from India (Bhattacharya), Indonesia (Maruyama), Peru (Chau), Brazil (Takahashi) and Africa (TBD).
#Develop a database of observations from instruments involved in these studies for easier investigations of longitudinal variability of upward coupling and the development of equatorial irregularities.  Longitudinal chain of  ionosonde, Meteor/MF radar, magnetometer and airglow imagers from India (Bhattacharya), Indonesia (Maruyama), Peru (Chau), Brazil (Takahashi) and Africa (TBD).
#Develop collaborations between experimentalists and theorists/modelers to perform ray tracing of potential seed waves from the lower thermosphere to sources in the lower atmosphere. (Fritts, Vadas, Wrasse (Brazil))
#Develop collaborations between experimentalists and theorists/modelers to perform ray tracing of potential seed waves from the lower thermosphere to sources in the lower atmosphere. (Fritts, Vadas, Wrasse (Brazil))

Revision as of 21:27, 1 April 2010

back to Task Group 4 Main Page | back to CAWSES II Main Page

Contents

What is the relation between atmospheric waves and ionospheric instabilities?

Project leaders

Jonathan Makela (USA) / Hisao Takahashi (Brazil)

Project members

I. Batista (Brazil), A. Bhattacharya (India), R. Buriti (Brazil), J. Chau (Peru), D. Fritts (USA), N. Gavrilov (Russia), L. Goncharenko (USA), J. Guoying (China), C. Haldoupis (Greece), D. Hysell (USA), P. Koucka Knizova (Czech Republic), C. La Hoz (Norway), M. Larsen (USA), H. Lühr (Germany), L.-A. McKinnell (South Africa), A. Manson (Canada), C. Martinis (USA), T. Maruyama (Japan), Y. Otsuka (Japan), D. Pallamraju (India), A. Patra (India), B. Rabiu (Nigeria), T. Ramkumar (India), M. Rietveld (Norway), S. Shamilov (Russia), E. Shume (Brazil), M. Taylor (USA), T. Tsuda (Japan)

Project plan

  1. Investigate upward coupling at middle latitudes and study the relationship between E- and F-region instabilities
    • Perform coordinated observations of vector background electric fields and background MLT wind profiles in conjunction with airglow observations of mesospheric and thermospheric/ionospheric emissions in the Caribbean.
      1. 30-MHz radar imaging system on St. Croix (Hysell)
      2. Wide-angle imaging and GPS TEC systems on Bonaire and Trinidad (Makela)
      3. Arecibo incoherent scatter radar
  2. Investigate upward coupling of gravity waves and the development of equatorial instabilities
    • Perform coordinated observations of neutral and plasma parameters
      1. SpreadFEx2 campaign in Brazil (Fritts, Makela, Takahashi, Buriti) including wide-angle imaging, Fabry-Perot interferometery, GPS TEC and scintillation measurements, and nightglow photometry.
      2. Study of Atmospheric Forcing and Responses (SAFAR) study in India (Patra et al) including MST radar, lidar, ionosondes, GPS balloon, lower atmospheric wind profiler, measurements of daytime/nighttime airglow, magnetometer, and MF radar (NARL, SP, EGRL).
      3. Observations in the new JULIA-imaging mode at the Jicamarca Radio Observatory in Peru to gain deeper understanding of the formation and evolution of equatorial irregularities at 3-m scale (Chau). Coordinate with nightglow and Fabry-Perot observations (Makela/Gerrard/Meriwether) and GPS observations (LISN/Valladares) in western South America.
  3. Develop a database of observations from instruments involved in these studies for easier investigations of longitudinal variability of upward coupling and the development of equatorial irregularities. Longitudinal chain of ionosonde, Meteor/MF radar, magnetometer and airglow imagers from India (Bhattacharya), Indonesia (Maruyama), Peru (Chau), Brazil (Takahashi) and Africa (TBD).
  4. Develop collaborations between experimentalists and theorists/modelers to perform ray tracing of potential seed waves from the lower thermosphere to sources in the lower atmosphere. (Fritts, Vadas, Wrasse (Brazil))

Project activities

  1. Ongoing data collection by team members
  2. Coordinate simultaneous observational campaigns in South America and India. To be facilitated by a meeting of interested parties COSPAR in July 2010. Proposed Campaign period and data bank for TG4P2: September to October 2010 (60 days)
Personal tools