A new method to measure Bowen ratios using high-resolution vertical dry and wet bulb temperature profiles

Author:

Euser T.ORCID,Luxemburg W. M. J.,Everson C. S.,Mengistu M. G.,Clulow A. D.,Bastiaanssen W. G. M.

Abstract

Abstract. The Bowen ratio surface energy balance method is a relatively simple method to determine the latent heat flux and the actual land surface evaporation. The Bowen ratio method is based on the measurement of air temperature and vapour pressure gradients. If these measurements are performed at only two heights, correctness of data becomes critical. In this paper we present the concept of a new measurement method to estimate the Bowen ratio based on vertical dry and wet bulb temperature profiles with high spatial resolution. A short field experiment with distributed temperature sensing (DTS) in a fibre optic cable with 13 measurement points in the vertical was undertaken. A dry and a wetted section of a fibre optic cable were suspended on a 6 m high tower installed over a sugar beet trial plot near Pietermaritzburg (South Africa). Using the DTS cable as a psychrometer, a near continuous observation of vapour pressure and air temperature at 0.20 m intervals was established. These data allowed the computation of the Bowen ratio with a high spatial and temporal precision. The daytime latent and sensible heat fluxes were estimated by combining the Bowen ratio values from the DTS-based system with independent measurements of net radiation and soil heat flux. The sensible heat flux, which is the relevant term to evaluate, derived from the DTS-based Bowen ratio (BR-DTS) was compared with that derived from co-located eddy covariance (R2 = 0.91), surface layer scintillometer (R2 = 0.81) and surface renewal (R2 = 0.86) systems. By using multiple measurement points instead of two, more confidence in the derived Bowen ratio values is obtained.

Publisher

Copernicus GmbH

Subject

General Earth and Planetary Sciences,General Engineering,General Environmental Science

Reference53 articles.

1. Allen, R. G., Pereira, L. S., Raes, D., and Smith, M.: Crop evapotranspiration – Guidelines for computing crop water requirements, vol. 56, FAO – Food and Agriculture Organization of the United Nations, Rome, 1998.

2. Angus, D. E. and Watts, P. J.: Evapotranspiration – How good is the Bowen ratio method?, Agr. Water Manage., 8, 133–150, 1984.

3. Aston, A. R.: The effect of vertical separation of psychrometers on the determination of Bowen ratios over a young eucalypt forest, Agr. Forest Meteorol., 35, 299–307, 1985.

4. Atta, C. W. V.: Effect of coherent structures on structure functions of temperature in the atmospheric boundary layer, Arch. Mech., 29, 161–171, 1977.

5. Bastiaanssen, W. G. M., Cheema, M. J. M., Immerzeel, W. W., Miltenburg, I. J., and Pelgrum, H.: Surface energy balance and actual evapotranspiration of the transboundary Indus Basin estimated from satellite measurements and the ETLook model, Water Resour. Res., 48, W11512, https://doi.org/10.1029/2011WR01048, 2012.

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