256
Chapter 25
conversion factors with the accuracy of ±5%. At the same time the accuracy
of the short-wave calibration under field conditions is estimated about 3–5%
The method can be applied to those devices whose design allows to carry out
slight ventilation along the whole receiving surface. Otherwise it is possible
to use a high quality reference net radiometer, calibrated using black body
model.
5.
REFERENCES
Blokh, A.G. (1962) The Basis for Radiative Heat Transfer, Gosenergoizdat, Moscow,
Leningrad, 331 p. (in Russian).
Dehne, K., Bergholter, U., Kasten, F. (1993) IEA Comparison of Longwave Radiometers,
Report No. IEA-SHCP-9F-3, Deutscher Wetterdienst, Hamburg, 72 p.
Drummond, A.G. (Editor) (1970) Precision Radiometry. Advances in Geophysics, 14,
Academic Press, New York & London, 272 p.
Faraponova, G.P. (1968) A Study of Radiation Thermoelements Designed for the
Measurement of Radiation Fluxes in the Atmosphere, in: Actinometry and Optics of the
Atmosphere, Valgus, Tallinn, pp. 202–218 (in Russian).
Frölich, C., London, J. (Editors) (1986) Revised instruction manual on radiation instruments
and measurements, WCRP Publication Series No. 7, 139 p.
Halldin, S. and Lindroth, A. (1992) Errors in Net Radiometry, Comparison and Evaluation of
Six Radiometer Designs, Journal of Applied Meteorology, 9, 762–783.
Harris, L. (1967) The Optical Properties of Metal Blacks and Carbon Blacks, Massachusetts
Institute of Technology, Monograph Series No. 1, 116 p.
Kmito, A .A. (1976) Spectral Reflectivities of Blackened Surfaces, Transactions of the Main
Geophysical Observatory, No. 370, 39–44 (in Russian).
Chapter 25
conversion factors with the accuracy of ±5%. At the same time the accuracy
of the short-wave calibration under field conditions is estimated about 3–5%
The method can be applied to those devices whose design allows to carry out
slight ventilation along the whole receiving surface. Otherwise it is possible
to use a high quality reference net radiometer, calibrated using black body
model.
5.
REFERENCES
Blokh, A.G. (1962) The Basis for Radiative Heat Transfer, Gosenergoizdat, Moscow,
Leningrad, 331 p. (in Russian).
Dehne, K., Bergholter, U., Kasten, F. (1993) IEA Comparison of Longwave Radiometers,
Report No. IEA-SHCP-9F-3, Deutscher Wetterdienst, Hamburg, 72 p.
Drummond, A.G. (Editor) (1970) Precision Radiometry. Advances in Geophysics, 14,
Academic Press, New York & London, 272 p.
Faraponova, G.P. (1968) A Study of Radiation Thermoelements Designed for the
Measurement of Radiation Fluxes in the Atmosphere, in: Actinometry and Optics of the
Atmosphere, Valgus, Tallinn, pp. 202–218 (in Russian).
Frölich, C., London, J. (Editors) (1986) Revised instruction manual on radiation instruments
and measurements, WCRP Publication Series No. 7, 139 p.
Halldin, S. and Lindroth, A. (1992) Errors in Net Radiometry, Comparison and Evaluation of
Six Radiometer Designs, Journal of Applied Meteorology, 9, 762–783.
Harris, L. (1967) The Optical Properties of Metal Blacks and Carbon Blacks, Massachusetts
Institute of Technology, Monograph Series No. 1, 116 p.
Kmito, A .A. (1976) Spectral Reflectivities of Blackened Surfaces, Transactions of the Main
Geophysical Observatory, No. 370, 39–44 (in Russian).
