Field Data Report for the First Microwave Water and Energy Balance Experiment (MicroWEX-1), July 17 - December 16, 2003, Citra, Florida
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Keywords

AE288

How to Cite

Tien, Kai-Jen Calvin, Jasmeet Judge, Larry W. Miller, and Orlando L. Lanni. 2005. “Field Data Report for the First Microwave Water and Energy Balance Experiment (MicroWEX-1), July 17 - December 16, 2003, Citra, Florida: Circular 1470/AE288, 4/2005”. EDIS 2005 (9). Gainesville, FL. https://doi.org/10.32473/edis-ae288-2005.

Abstract

Many studies have been conducted in agricultural areas such as bare soil, grass, soybean, wheat, pasture, and corn to understand the relationship between soil moisture and microwave remote sensing. Most of these experiments conducted in agricultural regions have been short-term experiments that captured only a part of growing seasons. It is important to know how microwave brightness signature varies with soil moisture, evapotranspiration (ET), and biomass in a dynamic agricultural canopy with a significant biomass (4-6 kg/m2 ) throughout the growing season. This document is Circular 1470, one of a series of the Agricultural and Biological Engineering Department, Agricultural Research Station, Institute of Food and Agricultural Sciences, University of Florida. First published April 2005. 

Cicular 14/AE288: Field Data Report for the First Microwave Water and Energy Balance Experiment (MicroWEX-1), July 17–December 16, 2003, Citra, Florida (ufl.edu)

https://doi.org/10.32473/edis-ae288-2005
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References

Campbell Scientific, CSAT3 Three Dimensional Sonic Anemometer Instruction Manual, Campbell Scientific Inc., Logan, UT, 1998.

Campbell Scientific, HFT3 soil heat flux plate instruction manual, Campbell Scientific Inc., Logan, UT, 2003.

Campbell Scientific, CNR1 Net Radiometer Instruction Manual, Campbell Scientific Inc., Logan, UT, 2004a.

Campbell Scientific, CS615 andCS625 water content reflectometers instruction manual, Campbell Scientific Inc., Logan, UT, 2004b.

Everest Interscience, Model 4000.3ZL Infrared Temperature Sensor, Everest Interscience Inc., Tuson, AZ, 2005.

J. C. Kaimal and J. J. Finnigan, Atmospheric Boundary Layer Flows, Oxford University Press, New York, NY, 1994. https://doi.org/10.1093/oso/9780195062397.001.0001

R. D. De Roo, University of Florida C-band Radiometer Summary, Space Physics Research Laboratory, University of Michigan, Ann Arbor, MI, March, 2002.

R. D. D Roo, TMR-3 Radiometer Tuning Procedures, Space Physics Research Laboratory, University of Michigan, Ann Arbor, MI, March, 2003.

P. Schotanus, F. T. M. Nieuwstadt, and H. A. R. DeBruin, "Temperature measurement with a sonic anemometer and its application to heat and moisture fluctuations," Bound.-Layer Meteorol., vol. 26, pp. 81-93, 2003. https://doi.org/10.1007/BF00164332

A. van Dijk, W. Kohsiek, and H. A. R. DeBruin, "Oxygen sensitivity of krypton and Lyman-alpha hygrometer," J. Atmos. Ocean. Tech., vol. 20, pp. 143-151., 2003. https://doi.org/10.1175/1520-0426(2003)020<0143:OSOKAL>2.0.CO;2

A. van Dijk, A. F. Moene, and H. A. R. DeBurin, The Principles of Surface Flux Physics: Theory, Practice, and Description of the ECPACK Library, http://www.met.wau.nl/projects/jep/

E. K. Webb, G. I. Pearman, and R. Leuning, " Correction of flux measurements for density effects due to heat and water vapor transfer," Quart. J. Roy. Meteorol., Soc., vol. 106, pp. 85-100, 1980. https://doi.org/10.1002/qj.49710644707

J. M. Wilczak, S. P. Oncley, and S. A. Stage, "Sonic anemometer tilt correction algorithms," Bound.-Layer Meteorol., vol. 99, pp. 127-150, 2001. https://doi.org/10.1023/A:1018966204465

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