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The Kettles Hill Project: Field observations, wind-tunnel simulations and numerical model predictions for flow over a low hill

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Abstract

Field observations of the influence of topography on steady, neutrally-stratified boundary-layer flow were carried out in February 1981 and March 1984 on Kettles Hill near Pincher Creek, Alberta, Canada. The primary measurements were of wind speed at 3,6, and 10 m levels at stations in linear arrays along and across the major axis of this gentle, 1 km long and 100 m high, elliptical hill. Wind profile measurements up to heights of 200 m were made with TALA kites and tethersondes on the hilltop and at a reference site located about 3.7 km west of the hilltop. In addition, AIRsondes were flown and tracked from the reference site to provide additional data. The field observations provided the basic data for a comparison with wind-tunnel and numerical model simulations of the same flow. The wind-tunnel investigation was carried out in the Atmospheric Environment Service Boundary-Layer Wind Tunnel while the numerical model used was MS3DJH. For ‘horizontal’ profiles of normalized mean wind speed at given heights above the prototype terrain, model results agree reasonably well with the field data. The wind-tunnel predictions are slightly high in most cases. For vertical profiles of wind speed up to 200 m above the hilltop, the numerical and wind-tunnel values are higher than were observed. The sensitivity of the normalized wind speed at the hilltop to deviations from non-logarithmic upwind profiles is demonstrated with data from the March 1984 experiment. A comparison of prototype with numerical-model mean-wind-direction perturbations at the 10 m level shows reasonable agreement except near the summit of the hill.

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References

  • Bradley, E. F.: 1980, ‘An Experimental Study of the Profiles of Wind Speed, Shearing Stress and Turbulence at the Crest of a Large Hill’, Quart. J. R. Meteorol. Soc. 106, 101–124.

    Google Scholar 

  • Jackson, P. S. and Hunt, J. C. R.: 1975, ‘Turbulent Wind Flow Over a Low Hill’, Quart. J. R. Meteorol. Soc. 101, 833–851.

    Google Scholar 

  • Jenkins, G. J., Mason, P. J., Moores, W. H., and Sykes, R. I.: 1981, ‘Measurements of the Flow Structure around Ailsa Craig, a Steep, Three-Dimensional, Isolated Hill’, Quart, J. R. Meteorol. Soc. 107, 833–852.

    Google Scholar 

  • Longley, R. W.: 1967, ‘Evidence of Long Lee Waves in Southern Alberta’, Atmosphere 14, 28–36.

    Google Scholar 

  • Longley, R. W.: 1972, ‘The Climate of the Prairie Provinces’, AES Climatological Studies, No. 13, 79 pp.

  • Mason, P. J. and Sykes, R. I.: 1979, ‘Flow Over an Isolated Hill of Moderate Slope’, Quart. J. R. Meteorol. Soc. 105, 383–395.

    Google Scholar 

  • Mickle, R. E., Salmon, J. R., and Taylor, P. A.: 1984, ‘Kettles Hill '84: Velocity Profile Measurements over a Low Hill’, Research Report AQRB-84–012-L, Atmospheric Environment Service, Toronto, Canada.

    Google Scholar 

  • Oke, T. R.: 1978, Boundary Layer Climates, Methuen, London, 372 pp.

    Google Scholar 

  • Salmon, J. R., Walmsley, J. L., and Taylor, P. A.: 1981, ‘MS3DJH/2 — Development of a Model of Neutrally Stratified Boundary-Layer Flow Over Real Terrain’, Research Report AQRB-81–023-L, Atmospheric Environment Service, Toronto, Canada.

    Google Scholar 

  • Shokr, M. E. and Teunissen, H. W.: 1987, ‘Use of Hot-Wire Anemometry in the AES Boundary-Layer Wind Tunnel with Particular Reference to Flow over Hill Models’, Research Report (to appear), Atmospheric Environment Service, Toronto, Canada.

    Google Scholar 

  • Taylor, P. A.: 1977, ‘Numerical Studies of Neutrally Stratified Planetary Boundary-Layer Flow above Gentle Topography’, Boundary-Layer Meteorol. 12, 37–60.

    Google Scholar 

  • Taylor, P. A. and Teunissen, H. W.: 1983, ‘Askervein '82: Report on the September/October 1982 Experiment to Study Boundary Layer Flow over Askervein, South Uist’, Research Report MSRB-83–8, Atmospheric Environment Service, Toronto, Canada.

    Google Scholar 

  • Taylor, P. A. and Teunissen, H. W.: 1985, ‘The Askervein Hill Project: Report on the September/October 1983 Main Field Experiment’, Research Report MSRB-84–6, Atmospheric Environment Service, Toronto, Canada.

    Google Scholar 

  • Taylor, P. A., Mickle, R. E., and Vanek, K. O.: 1980, ‘Airflow over a Low Hill — Site Selection for a Field Experiment and Preliminary Measurements’, Research Report AQRB-80–010-L, Atmospheric Environment Service, Toronto, Canada.

    Google Scholar 

  • Taylor, P. A., Mickle, R. E., Salmon, J. R., and Teunissen, H. W.: 1983a, ‘The Kettles Hill Experiment — Site Description and Mean Flow Results’, Research Report AQRB-83–002-L, Atmospheric Environment Service, Toronto, Canada.

    Google Scholar 

  • Taylor, P. A., Walmsley, J. L., and Salmon, J. R.: 1983b, ‘A Simple Model of Neutrally Stratified Boundary-Layer Flow Over Real Terrain Incorporating Wavenumber-Dependent Scaling’, Boundary-Layer Meteorol. 26, 169–189.

    Google Scholar 

  • Taylor, P. A., Mason, P. J., and Bradley, E. F.: 1987, ‘Boundary-Layer Flow over Low Hills — A Review’, Boundary-Layer Meteorol. 39, 107–132.

    Google Scholar 

  • Teunissen, H. W.: 1983, ‘Wind-Tunnel and Full-Scale Comparisons of Mean Wind Flow over an Isolated Low Hill’, J. Wind Eng. and Indust. Aerodyn. 15, 271–286.

    Google Scholar 

  • Teunissen, H. W. and Flay, R. G. J.: 1981, ‘Wind Tunnel Simulation of Planetary Boundary-Layer Flow over an Isolated Hill: Part I, Rough Model’, Research Report MSRB-81–3, Atmospheric Envronment Service, Toronto, Canada.

    Google Scholar 

  • Teunissen, H. W. and Shokr, M. E.: 1985, ‘The Askervein Hill Project: Wind-Tunnel Simulation (Smooth Model) at Length Scale 1: 1200’, Research Report MSRB-81–1, Atmospheric Environment Service, Toronto, Canada.

    Google Scholar 

  • Teunissen, H. W., McLean, I. R., and Flay, R. G. J.: 1982, ‘Wind-Tunnel Simulation of Planetary Boundary-Layer Flow over an Isolated Low Hill’, Proc. 4th Int. Symp. on Wind Energy Systems held at Stockholm, Sweden, 21–24 September, 1982, BHRA Fluid Engineering, Cranfield, England.

    Google Scholar 

  • Teunissen, H. W., Shokr, M. E., Bowen, A. J., Wood, C. J., and Green, D. W. R.: 1987, ‘The Askervein Hill Project: Wind Tunnel Simulations at Three Length Scales’, Boundary-Layer Meteorol. 40, 1–29.

    Google Scholar 

  • Townsend, A. A.: 1972, ‘Flow in a Deep Turbulent Boundary Layer Over a Surface Distorted by Water Waves’, J. Fluid Mech. 55, 719–735.

    Google Scholar 

  • Walmsley, J. L., Salmon, J. R., and Taylor, P. A.: 1982, ‘On the Application of a Model of Boundary-Layer Flow Over Low Hills to Real Terrain’, Boundary-Layer Meteorol. 23, 17–46.

    Google Scholar 

  • Walmsley, J. L., Taylor, P. A., and Mok, R.: 1980, ‘MS3DJH — A Computer Model for the Study of Neutrally Stratified Boundary-Layer Flow Over Isolated Hills of Moderate Slope’, Research Report AQRB-80–008-L, Atmospheric Environment Service, Toronto, Canada.

    Google Scholar 

  • Walmsley, J. L., Taylor, P. A., and Keith, T.: 1986, ‘A Simple Model of Neutrally Stratified Boundary-Layer Flow Over Complex Terrain with Surface Roughness Modulations (MS3DJH/3R)’, Boundary-Layer Meteorol. 36, 157–186.

    Google Scholar 

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Salmon, J.R., Teunissen, H.W., Mickle, R.E. et al. The Kettles Hill Project: Field observations, wind-tunnel simulations and numerical model predictions for flow over a low hill. Boundary-Layer Meteorol 43, 309–343 (1988). https://doi.org/10.1007/BF00121711

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  • DOI: https://doi.org/10.1007/BF00121711

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