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Information Journal Paper

Title

TECHNICAL NOTE: COMPARISON OF TWO THEORETICAL METHODS BASED ON COMBINATION OF MOMENTUM AND ENERGY RELATION TO ESTIMATE FLOW DISCHARGE UNDER RADIAL GATE IN SUBMERGED CONDITION

Pages

  211-215

Abstract

 Stochastic weather generators are used in a wide range of studies, such as hydrological, environmental applications and agricultural risk assessments and can produce time series of synthetic daily weather data of proper duration. In the present study, the performance of the LARS-WG model was analyzed in four northern and eight southern coastal stations of Iran, in relation to the simulation of wet/dry series, precipitation, temperature, solar radiation and the simulation of temperature extreme events. The results showed that the model performance was very acceptable in relation to daily distribution, monthly, and seasonal mean of almost every series. However, its performance in estimating the values of total monthly precipitation standard deviation, mean monthly temperature standard deviation and mean monthly solar radiation standard deviation was not tolerable. In the whole, the LARS-WG model had a better performance in northern stations in comparison with southern stations.

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    APA: Copy

    GHOBADIAN, R., YAGHOBI, M., & ZARE, M.. (2012). TECHNICAL NOTE: COMPARISON OF TWO THEORETICAL METHODS BASED ON COMBINATION OF MOMENTUM AND ENERGY RELATION TO ESTIMATE FLOW DISCHARGE UNDER RADIAL GATE IN SUBMERGED CONDITION. IRANIAN WATER RESEARCH JOURNAL, 5(9), 211-215. SID. https://sid.ir/paper/159753/en

    Vancouver: Copy

    GHOBADIAN R., YAGHOBI M., ZARE M.. TECHNICAL NOTE: COMPARISON OF TWO THEORETICAL METHODS BASED ON COMBINATION OF MOMENTUM AND ENERGY RELATION TO ESTIMATE FLOW DISCHARGE UNDER RADIAL GATE IN SUBMERGED CONDITION. IRANIAN WATER RESEARCH JOURNAL[Internet]. 2012;5(9):211-215. Available from: https://sid.ir/paper/159753/en

    IEEE: Copy

    R. GHOBADIAN, M. YAGHOBI, and M. ZARE, “TECHNICAL NOTE: COMPARISON OF TWO THEORETICAL METHODS BASED ON COMBINATION OF MOMENTUM AND ENERGY RELATION TO ESTIMATE FLOW DISCHARGE UNDER RADIAL GATE IN SUBMERGED CONDITION,” IRANIAN WATER RESEARCH JOURNAL, vol. 5, no. 9, pp. 211–215, 2012, [Online]. Available: https://sid.ir/paper/159753/en

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