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Information Journal Paper

Title

THE NUMERICAL INVESTIGATION OF THUNDERSTORMS USING WRF-ARW MODEL IN TEHRAN (TEN CASE STUDIES)

Pages

  0-0

Abstract

 Introduction THUNDERSTORM is mesoscale and in some cases microscale and Most of the numerical weather forecast models encounter problem predicting them. Lack of access toupper atmospheric data in many parts of the earth's atmosphere makes the numerical forecast models one of the most important tools in determining such indices (Lopez et al, 2009). in another one by simulation of two violent storms through convective parameterization scheme model of WRF-NMM, it was manifested that the cumulus scheme Grell-Devenyi has a better function than the other schemes in calculating INSTABILITY INDICES TTI, LI, KI and CAPE, and there is also a proper correspondence between the spatial and temporal patterns of precipitation with the observations (Prosenjit et al, 2008).

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    APA: Copy

    DONYADOOST, G.R., ARKIAN, F., RANJBAR, A., & MIRAZAEI, E.. (2016). THE NUMERICAL INVESTIGATION OF THUNDERSTORMS USING WRF-ARW MODEL IN TEHRAN (TEN CASE STUDIES). JOURNAL OF CLIMATE RESEARCH, 6(23-24), 0-0. SID. https://sid.ir/paper/359190/en

    Vancouver: Copy

    DONYADOOST G.R., ARKIAN F., RANJBAR A., MIRAZAEI E.. THE NUMERICAL INVESTIGATION OF THUNDERSTORMS USING WRF-ARW MODEL IN TEHRAN (TEN CASE STUDIES). JOURNAL OF CLIMATE RESEARCH[Internet]. 2016;6(23-24):0-0. Available from: https://sid.ir/paper/359190/en

    IEEE: Copy

    G.R. DONYADOOST, F. ARKIAN, A. RANJBAR, and E. MIRAZAEI, “THE NUMERICAL INVESTIGATION OF THUNDERSTORMS USING WRF-ARW MODEL IN TEHRAN (TEN CASE STUDIES),” JOURNAL OF CLIMATE RESEARCH, vol. 6, no. 23-24, pp. 0–0, 2016, [Online]. Available: https://sid.ir/paper/359190/en

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