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1 2002 (Catch A Plume by SATs: CAPS) Overview of Intensive Field Campaign for Lake-Biwa Project 2002, Catch a Plume by SATs: CAPS. 1 Ichiro TAMAGAWA River Basin Research Center, Gifu University Sachinobu ISHIDA Department of Earth and Environmental Sciences, Hirosaki University Dai MATSUSHIMA Graduate School of Science, Tohoku University Keisuke Ono National Institute for Agro- Environmental Sciences Taichi HAYASHI Research Center for Disaster Environment, Disaster Prevention Research Institute,Kyoto University Hiroki TANAKA Hydrospheric Atmospheric Research Center, Nagoya University Toru IWATA Department of Environmental & Civil Engineering, Faculty of Environmental Science & Technology, Okayama University Eiichi NAKAKITA Department of Global Environment Engineering, Graduate School of Engineering, Kyoto University Kenji TANAKA Water Resources Research Center, Disaster Prevention Research Institute, Kyoto University Atsushi HIGUCHI Hydrospheric Atmospheric Research Center, Nagoya University Jun ASANUMA Terrestrial Environment Research Center, University of Tsukuba Tsuyoshi TADA Department of Civil Engineering, National Defense Academy Hirohiko ISHIKAWA Disaster Prevention Research Institute, Kyoto University Tetsuya HIYAMA Hydrospheric Atmospheric Research Center, Nagoya University Kenji TANAKA Department of Architecture & Civil Engineering, Kumamoto University CAPS 2 CAPS observation group The intensive observation, including many turbulence observations distributed in the area, was performed over paddy field in northern Shiga prefecture, Japan in a few weeks in November Sixteen points of turbulence observation, a radio sonde observation, two SODARs observation, four scintilometers observation and thermal images taken from airplane were done in this campaign. The outline is presented here. Keywords: turbulence, flux, Biwako project, Flux enthusiast party 0 flux@tama.cive.gifu-u.ac.jp () River Basin Research Center, Gifu University, 1-1 Yanagido, Gifu , Japan. 2 1
2 , , 16.. :,,, I , (2000),,.,,.,, ( ). GAME, expedition,.,,,,,., ( 2000)., 0, WWW ( tama/flux/ ),,, (Linux ).,, ( 2004) 10%,,,., 2002,, GIS ( 1998, 2000) (2001).,.,,,, Kaimal and Businger (1970), Kaimal (1974), Wilczak and Tillman (1980) 2
3 ,., CASES, (LeMone 2000),, km 20,., CASES.,,,,. II.,.,,, (2002) (2002), (Schuepp 1990, Horst and Weil 1992),,., 100m., 4km,. 1.,,,,,., ,.,,. 3
4 135 30' ' ' ' ' km ' 35 29' 48" 35 29' 36" 35 29' 24" 35 29' 12" 35 29' 00" S10 V1 S1 S3 C1 Path 2 S5 C2 Path 1 C3 S7 km S2 Path 3 C4 V2 400 S4 400 Path 4 S6 C5 S S8 Vertical measurement ' 48" ' 00" ' 12" Legend Vertical measurement (V1: sonde, sodar) (V2: sodar only) Super sites (C: both H & LE) SAT sites (S: H only) Scintillometers (Path 1-4) 35 30' 35 15' 35 00' 1: Fig.1 Location of the observation points 47,., 10., 16, 4, 4, 2, 1, 3km,.. 1.,,,,.,,,.,,., ,.,, 6. 4
5 () GPS, 1 V1,. 30,,.,. Potential Temp HEIGHT(m) (JST) 2: Fig.2 Potential temperature at November 17, 2002 by radio sonde observation , 2.,,.,,, 800m,. 1: Table 1 Radio sonde and doppler SODAR observation V1 ( N, E) GPS Vaisala MW15 HyARC Dopplar Sodar Scintec XFAS HyARC/LAPS V2 ( N, E) Dopplar Sodar DPRI&Kaijo DPRI, V1, 20.. V2, 1., 9., 5
6 () 2: Table 2 Scintilometer observation Path N, E, 751 cm ( ) N, E, 6 70 cm ( ) Path Length: 1232 m scintillometer Sintec BLS900 TERC/RAISE Path2 11/ N, E ( ) N, E ( ) Path Length: 148 m ( ) 11/17 11/18, Path Length 112m ( ) 11/ N, E, 275 cm ( ) N, E, 253 cm ( ) Path length 70m ( ) 264 cm scintillometer Sintec SLS20 Path N, ,859 E, 183 cm N, E, 234 cm 209 cm Path Length: 89 m ( 11/17) 100 m (11/17 scintillometer Sintec SLS20 Path N, E, 216cm ( ) N, E, 268 cm ( ) 242 cm Path Length: 160 m ( scintillometer Sintec SLS40 (Scintilometer), (Cn) 2. Monin- Obukhov,,,.,., Cn 2., Sintec BLS900,, ( ) 6
7 . 2. Path2 Sintec SLS Cn 2 [m 2/3 ] /20 00:00 11/20 06:00 11/20 12:00 Time (JST) 11/20 18:00 11/21 00:00 3: Path1 BLS Fig.3 Observed data by BLS900 on path1 at November 20, 2002., Path1 Sintec BLS C 2 n,. C 2 n. 3. ( ) 3: Table 3. Thermal image observation from an airplane. 11/17, 11/19 11/20,, Inframetrics MODEL740 Vaisala HMP133L Vaisala PTB101 Panasonic NV-GS5K Grant SQ1254 DPRI, , (2000,1100) V2. 7
8 4: Fig.4 Thermal image at 11:58 JST on November 17, 2002.,,. 3K,.,.,,. 4., 3m,.,,.,, Hz 1, 10Hz,,., PC, 20.,, 100m, m/s, ( s) ( m/s) < (100m ),..,, C4, C1 C5, S1 S9., S ,,,., 8
9 1 S T (K) C S sec. (2002 Nov.17 11JST) 5: S1, C1, S2 T Fig second temperature fluctuations at S1, C1 and S2 from 11JST on November 17, 2002., ( 2003).,, S1 C1 S m, S1 C1 S2, 1.3m/s., 150,.,, S1 80 C1 200, S2 380.,,. 2002, Nov.17, 12h, Sensible Heat (Wm -2 ) 35 29' 40"N s0 135 s1 134 s2 127 s3 82 c2 128 c3 104 s4 112 s ' 20"N s5 82 c4 105 s7 116 s ' 00"N Avrg. 113 s9 125 km ' 40"E ' 00"E 6:. ( W/m 2 ),., 1m/s, 0.5m/s. Fig.6 Sensible heat flux distribution. The radii of circles and the numbers in them show the amount of heat flux by W/m 2. The wind barbs show wind direction and speed at the sites indicated by their origins.,, 6. 9
10 ,,,,. III.,., 8 G byte.,,,,. ( ).,. WWW ( tama/flux/), ftp://hyarcftp.hyarc.nagoya-u.ac.jp /pub/other projects/flux enthu party/..,.. (A) (, ) 14G-3 (, ) (LAPS) ( ) (RAISE) ( ),.. Horst, T. and Weil, J. (1992): Footprint estimation for scaler flux measurements in the atmospheric surface layer. Boundary-Layer Meteorol., 59, pp (2003): 2002 (CAPS), 2003 P.238, (2004): 2001 (TERC) :,, 17, ( ). Kaimal, J.C. (1974): Translation speed of convective plumes in the atmospheric surface layer. Quart. J. Royal Meteor. Soc., 100, pp
11 Kaimal, J.C. and Businger, J.A. (1970): Case studies of a convective plumes in the atmosphere and a dust devil. J. Appl. Meteor., 2, pp (2002): LES ( 1 ),, 15-3, pp LeMone, M.A., Grossmann, R.RL., Coulter, R.L., Wesley, M.L., Klazura, G.E., Poulos, G.S., Blumen,W., Lundquist, J.K., Cuenca, R.H., Kelly, S.F., Brandes, E.A., Oncley, S.P., McMillen, R.T. and Hicks, B.B. (2000) Land-Atmosphere interaction research, early results, and opportunities in the Walnut river watershed in southeast Kansas:CASES and ABLS, Bull. Amr. Meteorol. Soc., 81, pp (2001): 199 pp (1998): pp.1 12 (2000): 13-6 pp Schuepp, P., Leclerc, M., MacPherson, J. and Desjardins, R. (1990): Footprint prediction of scalar fluxes from analytical solutions of the diffusion equation. Boundary-Layer Meteor., 50, pp ,,,,, (2000): - -,, 13-5, pp (2002): LES ( 2 ),, 15-3, pp Wilczak,J.M. and Tillman,J.E.(1980): The three dimensional structure of convection in the atmospheric surface layer. J.Atmos.Sci., 37, pp
12 4:,,. Table 4. Turbulence observation points with measurement of humidity and/or other items.,, C N, E, 245cm, 5 (SAT) 165 cm (Humicap ) 120cm( ) ( ) GILL 1210R3 HyARC CO 2 Li-Cor LI-7500 HyARC Hdat16 + PC HyARC Kipp&Zonen CM-7B HyARC Eppleylab PIR HyARC Vaisala HMP45A HyARC Everest ZL HyARC REBS PHF-1 HyARC Cambell CR10X HyARC C N, E 281cm, 14 (SAT UV), 250cm(SAT W, AH-300) Kaijo DA-(TR-61C) Kaijo AH-300 Vaisala HMP-133L Keyence NR-1000 C N, E, 246cm, 14.5 (SAT) N, E, 143cm ( ) Metek USA-1 PC-base logger EKO MR-40 EKO MF-81 EKO SOLAC-V C N, E, 590cm 13 ( SAT), 245cm 10 (SAT), 100cm 17.5 (SAT) N, E, 140 cm ( (590cm) Kaijo DA-(TR-62A) (245cm) Kaijo DA-(TR-61A) DPRI (100cm) Kaijo DA-(TR-62TZ) CO 2 (245cm) Li-Cor LI-7500 DPRI Keyence NR-1000 (2 ) EKO MS-42 DPRI (2 ) EKO MS-200 DPRI (2.5m) Vaisala HMP35A DPRI (0.6m) Vaisala HMP35A DPRI (-5mm) REBS PHF-1 DPRI Grant SQ1254 DPRI C N, E, 235cm 0.5 (SAT) -0.5cm (2 ) Gill 1210R3 CO 2 Li-Cor LI-7500 TEAC DR-M3a EKO MR-40 2 EKO MF-81 Cambell CR10X 12
13 5:,. Table 5. Turbulence observation sites, almost all points of which has no humidity obervation. S1 S2 S3 S4 S5 S6 S7 S8 S9 S10,, N, E, 251cm, 3 (SAT) Kaijo DA-(TR-61A) HyARC TEAC DR-M3b HyARC N, E, 254 cm, 1.5 (SAT) Young HyARC ( ) +PC HyARC N, E, 274 cm, 6 (SAT) Kaijo SAT-550 DPRI Keyence NR-1000 DPRI N, E, 270 cm, 4 (SAT u,v) 238 cm (SAT, W), Kaijo PA- DPRI Hyper-terminal+PC DPRI N, E, 246 cm 14 (SAT) Kaijo SAT-550 TERC National Instruments DAQ TERC Card-AI-16XE-50 +LABView+PC N, E, 253 cm, 3 (SAT) Kaijo DA-(TR-61A) DPRI TEAC DR-M3 HyARC N, E, 245 cm, 21.5 SAT) Kaijo DA-(TR-61A) DPRI National Instruments DACPad DPRI MIO-16XE-50+LABView+PC N, N, 247 cm (SAT, W) 5 SAT Kaijo DA-(TR-61A) DPRI National Instruments DACPad DPRI MIO-16XE-50 +LABView+PC N, E, 247 cm (SAT) 1 Kaijo DA(TR-41) National Instruments DAQ / Card-700 +LABView+PC TERC/ N E, 230cm () DA-(TR-61A) DPRI CO 2 Advanet E009B DPRI National Instruments DAQ DPRI Card-AI-16XE-50 + LABView + PC 6: Abbreviations HyARC DPRI TERC LAPS RAISE Lower Atmoshpere and Precipitation Study ( ) The Rangelands Atmosphere-Hydrosphere-Biosphere Interaction Study Experiment in Northeastern Asia ( ) 13
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