Investigation on the Influence of Clouds on Ultraviolet Sky Radiation (at 330 Mu and 370 Mu).

Investigation on the Influence of Clouds on Ultraviolet Sky Radiation (at 330 Mu and 370 Mu). PDF Author: Paul Bener
Publisher:
ISBN:
Category : Solar radiation
Languages : en
Pages : 44

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Investigation on the Influence of Clouds on Ultraviolet Sky Radiation (at 330 Mu and 370 Mu).

Investigation on the Influence of Clouds on Ultraviolet Sky Radiation (at 330 Mu and 370 Mu). PDF Author: Paul Bener
Publisher:
ISBN:
Category : Solar radiation
Languages : en
Pages : 44

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Investigation on the Influence of Clouds on Ultraviolet Sky Radiation (at 330 Millimicrons and 370 Millimicrons

Investigation on the Influence of Clouds on Ultraviolet Sky Radiation (at 330 Millimicrons and 370 Millimicrons PDF Author: Paul Bener
Publisher:
ISBN:
Category :
Languages : en
Pages : 59

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The spectral intensity of ultraviolet radiation from the cloudless and the cloudy sky at Davos (Swiss Alps, 1590 m a.s.1.) has been measured for lambda=330 millimicrons and 370 millimicrons. No effect of atmospheric ozone on the intensity must be taken into account at these wavelengths. The ratio q between the intensity obtained with and without clouds is applied in this investigation as a measure for the influence of the clouds on ultraviolet sky radiation; the values of the ratio q have been plotted as a function of solar altitude for various cloud conditions. Mean values q of the ratio q averaged over the whole interval of solar altitude have been determined for different kinds and amounts of cloud and the mean scatter R of the values q has been computed for each cloud condition considered. (Author).

Investigation on the Influence of Clouds on Ultraviolet Sky Radiation at 330 Mμ and 370 Mμ

Investigation on the Influence of Clouds on Ultraviolet Sky Radiation at 330 Mμ and 370 Mμ PDF Author: Paul Bener
Publisher:
ISBN:
Category :
Languages : en
Pages : 44

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Book Description


Investigation on the Influence of Clouds on Ultraviolet Sky Radiation at 330 Millimü and 370 Millimü

Investigation on the Influence of Clouds on Ultraviolet Sky Radiation at 330 Millimü and 370 Millimü PDF Author: Paul Bener
Publisher:
ISBN:
Category :
Languages : en
Pages : 44

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Scientific and Technical Aerospace Reports

Scientific and Technical Aerospace Reports PDF Author:
Publisher:
ISBN:
Category : Aeronautics
Languages : en
Pages : 766

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Investigation on the Spectral Intensity of Ultraviolet Sky and Sun+sky Radiation Between 297,5 Mu and 370 Mu Under Different Conditions of Cloudless Weather at 1590 M A.s.l

Investigation on the Spectral Intensity of Ultraviolet Sky and Sun+sky Radiation Between 297,5 Mu and 370 Mu Under Different Conditions of Cloudless Weather at 1590 M A.s.l PDF Author: Paul Bener
Publisher:
ISBN:
Category :
Languages : en
Pages : 136

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Investigation on the Spectral Intensity of Ultra-violet Sky and Sun-sky Radiation (between 297.5 Millimicrons and 370 Millimicrons) Under Different Conditions of Cloudless Weather at 1590 M A.s.l

Investigation on the Spectral Intensity of Ultra-violet Sky and Sun-sky Radiation (between 297.5 Millimicrons and 370 Millimicrons) Under Different Conditions of Cloudless Weather at 1590 M A.s.l PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 1

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The results are presented of extended records of the spectral distribution of ultraviolet solar and sky radiation in the spectral region between 295 millimicrons and 370 millimicrons. The records were obtained with a recording spectrometer consisting of a double monochromator combined with a photomultiplier and a recorder. A diffuser sphere was applied as receiver for the incoming radiation to obtain measurements following the cosine law. Diagrams showing the spectral intensity as a function of wavelength, solar altitude and amount of atmospheric ozone are presented. Up to 330 millimicrons the spectral intensity of ultraviolet sky and global radiation increases rapidly because of diminishing ozone absorption; this increase covers between wavelengths of 297.5 millimicrons and 330 millimicrons several orders of magnitude. No considerable change of spectral intensity is observed in the wavelength region between 330 millimicrons and 370 millimicrons. The effect of ozone increase from 0.200 cm to 0.300 cm on the spectral intensity of ultraviolet sky radiation corresponds for 300 millimicrons to a diminuation of intensity by factors varying between 3, 5 and 16, depending on solar altitude. The corresponding variation in the case of global radiation amounts to factors between 8 and 16. (Author).

OAR Cumulative Index of Research Results

OAR Cumulative Index of Research Results PDF Author: United States. Air Force. Office of Aerospace Research
Publisher:
ISBN:
Category : Aeronautics
Languages : en
Pages : 550

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OAR Quarterly Index of Current Research Results

OAR Quarterly Index of Current Research Results PDF Author: United States. Air Force. Office of Aerospace Research
Publisher:
ISBN:
Category : Aeronautics, Military
Languages : en
Pages : 290

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OAR Quarterly Index of Current Research Results

OAR Quarterly Index of Current Research Results PDF Author:
Publisher:
ISBN:
Category : Aeronautics
Languages : en
Pages : 84

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