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Development of a New Simulation Model for the Reservoir Hydropower Generation

机译:水库水力发电仿真模型的开发

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摘要

Hydroelectric power development plans are of great importance in today's world, due to the urgency of access to clean energy resources. Hydroelectric power plants are great potentials for power generation around the world which produce less environmental problems. Hydroelectric power energy has covered 24 of the electrical energy in 2013. The proportion of this kind of energy is increasing rapidly. The amount of energy produced in different seasons of the year and different hours of the day is one of the most important issues in water plants. In other words, determining the capacity of installation (design discharge) is one of the important factors in the design of power plants. In this research, a developed algorithm for simulating hydropower energy production has been developed using MATLAB application. This developed model has been used for hydropower modeling. In such a situation, simulating energy production of the dam has been conducted for different power plant installation capacity and finally with applying reliability index of 90, the installation capacity of the power plant equals 2.7 Kilowatt. In this installation capacity, initial energy and surplus has occurred in most months. Furthermore, in 33 of cases that the reservoir is in its maximum balance, surplus energy has been generated. Moreover, the scale of initial energy and the average surplus energy respectively equals to 20.80 and 13.2 Gigawatt hours annually on 24-h basis. By changing the input variables, this algorithm and the developed model can be applied in any single hydropower reservoir system.
机译:由于获得清洁能源资源的紧迫性,水力发电发展计划在当今世界非常重要。水力发电厂在世界范围内具有巨大的发电潜力,产生的环境问题较少。2013年,水力发电能源已占电能的24%。这种能源的比例正在迅速增加。一年中不同季节和一天中不同时间产生的能量是水厂最重要的问题之一。换句话说,确定安装容量(设计放电)是发电厂设计中的重要因素之一。在这项研究中,利用MATLAB应用程序开发了一种用于模拟水电发电的算法。该开发的模型已用于水电建模。在此情况下,针对不同电厂装机容量对大坝进行能源生产模拟,最终应用可靠性指数为90%,电厂装机容量为2.7千瓦。在这种安装容量中,初始能量和盈余在大多数月份都出现了。此外,在33%的储层处于最大平衡状态的情况下,产生了多余的能量。此外,初始能源规模和平均剩余能源规模分别相当于每年 20.80 和 13.2 吉瓦时(24 小时)。通过改变输入变量,该算法和开发的模型可以应用于任何单个水电水库系统。

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