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Information Journal Paper

Title

SYSTEM DYNAMICS MODELING OF MULTIPURPOSE RESERVOIR OPERATION

Pages

  47-58

Abstract

SYSTEM DYNAMICS, a feedback - based object - oriented SIMULATION approach, not only represents complex dynamic systemic systems in a realistic way but also allows the involvement of end users in model development to increase their confidence in modeling process. The increased speed of model development, the possibility of group model development, the effective communication of model results, and the trust developed in the model due to user participation are the main strengths of this approach. The ease of model modification in response to changes in the system and the ability to perform sensitivity analysis make this approach more attractive compared with systems analysis techniques for modeling water management systems. In this study, a SYSTEM DYNAMICS model was developed for the ZAYANDEHRUD BASIN in central Iran. This model contains river basin, dam reservoir, plains, irrigation systems, and groundwater. Current operation rule is CONJUNCTIVE USE of ground and surface water. Allocation factor for each irrigation system is computed based on the feedback from groundwater storage in its zone. Deficit water is extracted from groundwater. The results show that applying better rules can not only satisfy all demands such as Gaw khuni swamp environmental demand, but it can also prevent groundwater level drawdown in future.

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  • Cite

    APA: Copy

    MOUMENI, E., TAJRISHI, M., & ABRISHAMCHI, A.. (2006). SYSTEM DYNAMICS MODELING OF MULTIPURPOSE RESERVOIR OPERATION. WATER AND WASTEWATER, 17(1 (57)), 47-58. SID. https://sid.ir/paper/104131/en

    Vancouver: Copy

    MOUMENI E., TAJRISHI M., ABRISHAMCHI A.. SYSTEM DYNAMICS MODELING OF MULTIPURPOSE RESERVOIR OPERATION. WATER AND WASTEWATER[Internet]. 2006;17(1 (57)):47-58. Available from: https://sid.ir/paper/104131/en

    IEEE: Copy

    E. MOUMENI, M. TAJRISHI, and A. ABRISHAMCHI, “SYSTEM DYNAMICS MODELING OF MULTIPURPOSE RESERVOIR OPERATION,” WATER AND WASTEWATER, vol. 17, no. 1 (57), pp. 47–58, 2006, [Online]. Available: https://sid.ir/paper/104131/en

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