Wind Motions around the Tropical Cirrus Using Simultaneous Radar and Lidar Observations over Gadanki (13.45°N, 79.18°E), India
Read full paper at:
http://www.scirp.org/journal/PaperInformation.aspx?PaperID=50420#.VD4fp1fHRK0
http://www.scirp.org/journal/PaperInformation.aspx?PaperID=50420#.VD4fp1fHRK0
Author(s)
The
present study describes variation of peak linear depolarization ratio (LDR)
with wind around the cloud altitude using simultaneous observation of winds and
cirrus cloud for the first time using Indian MST radar and polarization lidar
co-located over a low latitude station Gadanki (13.7°N and 79.2°E). Three
different cases of passage of the cirrus at different altitudes are noticed,
one during a North-East monsoon day and other two during South-West monsoon days.
The zonal wind below the cloud height has shown similar variation with LDR
during 02 November 2006 and the meridional wind within the cloud height during
25 July 2007 and 08 June 2006 has shown opposite variation with LDR. Even
though there is a significant increase in zonal wind due to the existence of
tropical easterly jet (TEJ) above cloud height during 25 July 2007 and 08 June
2006, also, the vertical wind is found to be continuously varying during 25
July 2007 and it is upward dominant in the initial stage and is mostly downward
in the later stage of observation on 08 June 2006, there is a slight descent in
cloud altitude only during 25 July 2007. Thus, the wind above the cloud height
alone may not affect the ascent/descent of the cloud top altitude. The
potential temperature gradient is high within the cloud heights when the cirrus
present near the cold point tropopause indicates the maximum air-mass mixing
near the tropopause.
Cite this paper
Rao, C. , Srinivasan, M. , Krishnaiah, M. , Kumar,
Y. and Rao, S. (2014) Wind Motions around the Tropical Cirrus Using
Simultaneous Radar and Lidar Observations over Gadanki (13.45°N,
79.18°E), India. International Journal of Geosciences, 5, 1241-1253. doi: 10.4236/ijg.2014.511103.
| [1] |
Parameswaran, K., Sunilkumar,
S.V., Krishna Murthy, B.V., Satheesan, K., Bhavanikumar, Y., Krishnaiah,
M. and Nair, P.R. (2003) Lidar Observations of Cirrus Cloud Near the
Tropical Tropopause: Temporal Variations and Association with
Tropospheric Turbulence. Atmospheric Research, 69, 29-49. http://dx.doi.org/10.1016/j.atmosres.2003.08.002 |
| [2] |
Zerefos, C.S., Eleftheratos, K.,
Balis, D.S., Zanis, P., Tselioudis, G. and Meleti, C. (2003) Evidence
of Impact of Aviation on Cirrus Cloud Formation. Atmospheric Chemistry
and Physics, 3, 1633-1644. http://dx.doi.org/10.5194/acp-3-1633-2003 |
| [3] | Lynch, D.K., Sassen, K., Starr, D.O’C. and Stephens, G. (2002) Cirrus. Oxford University Press, New York, 18. |
| [4] |
Ramaswamy, V. and Ramanathan, V.
(1989) Solar Absorption by Cirrus Clouds and Maintenance of the
Tropical Upper Troposphere Thermal Structure. Journal of the Atmospheric
Sciences, 46, 2293-2310. http://dx.doi.org/10.1175/1520-0469(1989)046<2293:SABCCA>2.0.CO;2 |
| [5] |
Devara, P.C.S., Raj, P.E.,
Sharma, S. and Pandithurai, G. (1995) Real-Time Monitoring of
Atmospheric Aerosols Using a Computer Controlled Lidar. Atmospheric
Environment, 29, 2205-2215. http://dx.doi.org/10.1016/1352-2310(94)00355-O |
| [6] |
Sassen, K. and Cho, B.S. (1992)
Subvisual-Thin Cirrus Lidar Dataset for Satellite Verification and
Climatological Research. Journal of Applied Meteorology, 31, 1275-1285. http://dx.doi.org/10.1175/1520-0450(1992)031<1275:STCLDF>2.0.CO;2 |
| [7] |
Ansmann, A., Wandinger, U.,
Riebesell, M., Weitkamp, C. and Michaelis, W. (1992) Independent
Measurement of Extinction and Backscatter Profiles in Cirrus Clouds by
Using a Combined Raman Elastic Backscatter Lidar. Applied Optics, 31,
7113-7131. http://dx.doi.org/10.1364/AO.31.007113 |
| [8] |
Heymsfield, A.J. and
McFarquahar, G.M. (1996) High Albedoes of Cirrus in the Tropical Pacific
Warm Pool: Microphysical Interpretation CEPEX and from Kwajalein,
Marshall Islands. Journal of the Atmospheric Sciences, 53, 2424-2541. http://dx.doi.org/10.1175/1520-0469(1996)053<2424:HAOCIT>2.0.CO;2 |
| [9] |
Goldfarb, L., Keckhut, P.,
Chanin, M.L. and Hauchecorne, A. (2001) Cirrus Climatological Results
from Lidar Measurements at OHP. Geophysical Research Letters, 28,
1687-1690. http://dx.doi.org/10.1029/2000GL012701 |
| [10] | Yamamoto, M.K., et al. (2009) Wind Observation around the Tops of the Midlatitude Cirrus by the MU Radar and Raman/Mie Lidar. Earth Planets Space, 61, e33-e36. |
| [11] | Jensen, E.J., Toon, O.B., Selkirk, H.B., Spinhirne, J.D. and Schoeberl, M.R. (1996) On the Formation and Persistence of Subvisible Cirrus Clouds near the Tropical Tropopause. Journal of Geophysical Research, 101, 21361-21375. |
| [12] |
Sivakumar, V., Bhavanikumar, Y.,
Rao, P.B., Mizutani, K., Aoki, T., Yasui, M. and Itabe, T. (2003) Lidar
Observed Characteristics of the Tropical Cirrus Clouds. Radio Science,
38, Published Online. http://dx.doi.org/10.1029/2002RS002719 |
| [13] |
Dowling, D.R. and Radke, L.F.
(1990) A Summary of the Physical Properties of Cirrus Clouds. Journal of
Applied Meteorology, 29, 970-978. http://dx.doi.org/10.1175/1520-0450(1990)029<0970:ASOTPP>2.0.CO;2 |
| [14] |
Prabhakara, C., Fraser, R.S.,
Dalu, G., Wu, M., Curran, R.J. and Styles, T. (1988) Thin Cirrus Clouds:
Seasonal Distribution over Oceans Deduced from Nimbus-4 IRIS. Journal
of Applied Meteorology, 27, 379-399. http://dx.doi.org/10.1175/1520-0450(1988)027<0379:TCCSDO>2.0.CO;2 |
| [15] |
Winker, D.M. and Trepte, C.R.
(1998) Laminar Cirrus Observed near the Tropical Tropopause by LITE.
Geophysical Research Letters, 25, 3351-3354. http://dx.doi.org/10.1029/98GL01292 |
| [16] |
Boehm, M.T., Verlinde, J. and
Ackerman, T.P. (1999) On the Maintenance of High Tropical Cirrus.
Journal of Geophysical Research: Atmospheres, 104, 24423-24433. http://dx.doi.org/10.1029/1999JD900798 |
| [17] | Immler, F. and Schrems, O. (2002) Determination of Tropical Cirrus Properties by Simultaneous Lidar and Radiosonde Measurements. Geophysical Research Letters, 29, 2090. |
| [18] |
Beyerle, J., Schafer, H.J.,
Neuber, R., Schrems, O. and Macdemid, I.S. (1998) Dual Wavelength Lidar
Observation of Tropical High-Altitude Cirrus Clouds during the ALBATROSS
1996 Campaign. Geophysical Research Letters, 25, 919-922. http://dx.doi.org/10.1029/98GL00491 |
| [19] | Houze Jr., R.A. (1993) Cloud Dynamics. International Geophysics Series, 53, Academic Press, Waltham. |
| [20] |
Webster, P.J. and Stephens, G.L.
(1984) Tropical Upper-Tropospheric Extended Clouds: Inferences from
Winter MONEX. Journal of Atmospheric Science, 37, 1521-1541. http://dx.doi.org/10.1175/1520-0469-37.7.1521 |
| [21] |
Reichardt, J. (1999) Optical and
Geometrical Properties of Northern Midlatitude Cirrus Clouds Observed
with a UV Raman Lidar. Physics and Chemistry of the Earth, Part B:
Hydrology, Oceans and Atmosphere, 24, 255-260. http://dx.doi.org/10.1016/S1464-1909(98)00047-1 |
| [22] |
Starr, D. and Cox, S.K. (1985)
Cirrus Clouds. Part II: Numerical Experiments on the Formation and
Maintenance of Cirrus. Journal of the Atmospheric Sciences, 42,
2682-2694. http://dx.doi.org/10.1175/1520-0469(1985)042<2682:CCPINE>2.0.CO;2 |
| [23] |
Kumar, Y.B., Kumar, V.S., Jain,
A.R. and Rao, P.B. (2001) MST Radar and Polarization Lidar Observations
of Tropical Cirrus. Annales Geophysicae, 19, 873-883. http://dx.doi.org/10.5194/angeo-19-873-2001 |
| [24] |
Fortuin, J.P.F., Becker, C.R.,
Fujiwara, M., Immler, F., Kelder, H.M., Scheele, M.P., Schrems, O. and
Verver, G.H.L. (2007) Origin and Transport of Tropical Cirrus Clouds
Observed over Paramaribo, Suriname (5.8°N, 55.2°W). Journal of
Geophysical Research: Atmospheres, 112, Published Online. http://dx.doi.org/10.1029/2005JD006420 |
| [25] |
Rao, P.B., Jain, A.R., Kishore,
P., Balamuralidhar, P., Damle, S.H. and Viswanathan, G. (1995) Indian
MST Radar Part-I: System Description and Sample Wind Vector Measurements
in ST Mode. Radio Science, 30, 1125-1138. http://dx.doi.org/10.1029/95RS00787 |
| [26] | Kumar, Y.B., Raghunath, K., Kumar, V.S., Rao, P.B., Jain, A.R., Mizutani, K., Aoki, T., Yasui, M. and Itabe, T. (1999) NMRFCRL Lidar System Description and Data Processing. Proceedings of IRSI ‘99, Bangalore, 560-570. |
| [27] |
Fernald, F.G. (1984) Analysis of
Atmospheric Lidar Observations: Some Comments. Applied Optics, 23,
652-653. http://dx.doi.org/10.1364/AO.23.000652 |
| [28] |
Platt, C.M.R., Young, S.A.,
Carswell, A.I., Pal, S.R., McCormick, M.P., Winker, D.M., et al. (1994)
The Experimental Cloud Lidar Pilot Study (ECLIPS) for Cloud-Radiation
Research. Bulletin of the American Meteorological Society, 75,
1635-1645. http://dx.doi.org/10.1175/1520-0477(1994)075<1635:TECLPS>2.0.CO;2 |
| [29] |
Pal, S.R., Steinbrecht, W. and
Carswell, A.I. (1992) Automated Method for Lidar Determination of Cloud
Base Height and Vertical Extent. Applied Optics, 31, 1488-1494. http://dx.doi.org/10.1364/AO.31.001488 |
| [30] | Simmons, A., Uppala, S., Dee, D. and Kobayashi, S. (2007) ERA-Interim: New ECMWF Reanalysis Products from 1989 onwards. ECMWF Newsletter, 110, 29-35. |
| [31] |
Thomas, L., Cartwright, J.C. and
Wareing, D.P. (1990) Lidar Observations of the Horizontal Orientations
of Ice Crystals in Cirrus Clouds. Tellus, 42, 211-216. http://dx.doi.org/10.1034/j.1600-0889.1990.00001.x-i1 |
| [32] |
Platt, C.M.R., Young, S.A.,
Manson, P.J., Peterson, G.R., Marsden, S.C., Austin, T. and Churnside,
J.H. (1998) The Optical Properties of Equatorial Cirrus from
Observations in the ARM Pilot Radiation Observation Experiment. Journal
of the Atmospheric Sciences, 55, 1977-1996. http://dx.doi.org/10.1175/1520-0469(1998)055<1977:TOPOEC>2.0.CO;2 |
| [33] | Takahashi, T. and Kuhara, K. (1993) Precipitation Mechanism of Cumulonimbus Clouds at Pohnpei, Micronesia. Journal of the Meteorological Society of Japan, 71, 21-31. |
| [34] |
Chen, W.N., Chiang, C.W. and
Nee, J.B. (2002) Lidar Ratio and Depolarization Ratio for Cirrus Clouds.
Applied Optics, 41, 6470-6476. http://dx.doi.org/10.1364/AO.41.006470 eww141015lx |
评论
发表评论