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  • 1
    Publication Date: 2006-01-16
    Description: Solar variability influences upon terrestrial weather and climate are addressed. Both the positive and negative findings are included and specific predictions, areas of further study, and recommendations listed.
    Keywords: METEOROLOGY AND CLIMATOLOGY
    Type: NASA. Marshall Space Flight Center Solar-Terrest. Predictions Proc., Vol. 2; p 655-668
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  • 2
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    In:  CASI
    Publication Date: 2016-06-07
    Description: The attempts during the past century to establish a connection between solar activity and the weather are discussed; some critical remarks about the quality of much of the literature in this field are given. Several recent investigations are summarized. Use of the solar/interplanetary magnetic sector structure in future investigations is suggested to add an element of cohesiveness and interaction to these investigations.
    Keywords: METEOROLOGY AND CLIMATOLOGY
    Type: NASA. Goddard Space Flight Center Possible Relationships between Solar Activity and Meteorol. Phenomena; p 25-38
    Format: application/pdf
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  • 3
    Publication Date: 2016-06-07
    Description: Satellite observations of the sun over almost 5 yrs show that principally two UV active longitudes have persisted over a significant portion of this observational period. A comparison between the position of solar magnetic sector boundaries and UV enhancements of the sun seems to show, at least during the year 1969, that the UV maxima tend to occur near the times when a solar sector boundary is near central meridian. An estimate of the magnitude of the variable UV solar energy input into the atmosphere resulting from the rotation of active solar longitudes is that for wavelengths less than 175 nm and down to H Lyman-alpha it exceeds the annual variation, whereas at longer wavelengths it is less.
    Keywords: METEOROLOGY AND CLIMATOLOGY
    Type: Possible Relationships between Solar Activity and Meteorol. Phenomena; p 79-81
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  • 4
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    In:  Other Sources
    Publication Date: 2019-06-28
    Description: A large-scale structure observed in the photospheric magnetic field is carried out into the heliosphere by the solar wind. At Earth the resulting interplanetary magnetic field has polarity away from the Sun for several consecutive days followed by an abrupt reversal and several days with field polarity toward the Sun. Low-pressure troughs near the Gulf of Alaska appear to have significantly larger area when the interplanetary field is away from the Sun than when it is toward the Sun. This relation persisted during most of the winters of 1951 to 1973. Surface pressures around the Gulf of Alaska during some winters were in anti-phase for interplanetary field toward and away from the Sun. During the two days after a polarity reversal, the accuracy of the best weather forecasts for the continental United States appears to be significantly lower than at other times. Polarity reversals that are accompanied by energetic interplanetary conditions appear to be associated with a larger decrease in the area of the low pressure troughs.
    Keywords: METEOROLOGY AND CLIMATOLOGY
    Type: CNES Sun and Climate; p 173-188
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  • 5
    Publication Date: 2019-06-28
    Description: The apparent response of the vorticity area index to the solar magnetic field is confined to tropospheric regions of intense circulation. Discussions and calculations that include larger volumes of the troposphere would not be expected to show a significant sun-weather effect. Analysis of the effect in time intervals outside the original 1963-73 is also discussed. An assessment of this sun-weather effect at the present time is given.
    Keywords: METEOROLOGY AND CLIMATOLOGY
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  • 6
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    In:  CASI
    Publication Date: 2019-06-27
    Description: The advantages of a regular program of daily observations of the magnetosphere, ionosphere and atmosphere are described. Such synoptic observations may be one of the best routes to understanding the physical mechanisms involved in sun-weather influences. Some specific examples of such observations are given.
    Keywords: METEOROLOGY AND CLIMATOLOGY
    Type: NASA-CR-148568 , SU-IPR-663
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  • 7
    Publication Date: 2019-06-27
    Description: Evidence for some connection between weather and solar related phenomena is presented. Historical data of world wide temperature variations with relationship to change in solar luminosity are examined. Several test methods for estimating the statistical significance of such phenomena are discussed in detail.
    Keywords: METEOROLOGY AND CLIMATOLOGY
    Type: NASA-CR-148541 , SU-IPR-671
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  • 8
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    In:  CASI
    Publication Date: 2019-06-27
    Description: The possibility that solar activity has discernible effects on terrestrial weather is considered. Research involving correlation of weather conditions with solar and geomagnetic activity is discussed.
    Keywords: METEOROLOGY AND CLIMATOLOGY
    Type: NASA-CR-146306 , SU-IPR-652
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  • 9
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    In:  Other Sources
    Publication Date: 2019-06-27
    Description: Attempts during the past century to establish a connection between solar activity and the weather are discussed. Some critical remarks about the quality of much of the literature in this field are given, and several recent investigations are summarized. Use of the solar-interplanetary magnetic sector structure in future investigations may add an element of cohesiveness and interaction to these investigations.
    Keywords: METEOROLOGY AND CLIMATOLOGY
    Type: Journal of Atmospheric and Terrestrial Physics; 37; Feb. 197
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  • 10
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    In:  Other Sources
    Publication Date: 2019-06-27
    Description: The reported influence (Wilcox et al., 1976) of the solar and interplanetary magnetic sector structure on terrestrial atmospheric vorticity at the 500 mbar level during the winters of 1963-1973 has been disputed by Williams and Gerety (1978). The present analysis indicates, however, that the response has been remarkably constant, if an apparent increase during the past few years in the intensity of tropospheric circulation is properly accounted for.
    Keywords: METEOROLOGY AND CLIMATOLOGY
    Type: AD-A083151 , Nature; 280; Aug. 30
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