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A Systematic Operation Program of a Hydropower Plant Based on Minimizing the Principal Stress: Haditha Dam Case Study

机译:基于最小化主要压力的水电站系统操作程序:Haditha Dam Case研究

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摘要

Dam operation and management have become more complex recently because of the need for considering hydraulic structure sustainability and environmental protect on. An Earthfill dam that includes a powerhouse system is considered as a significant multipurpose hydraulic structure. Understanding the effects of running hydropower plant turbines on the dam body is one of the major safety concerns for earthfill dams. In this research, dynamic analysis of earthfill dam, integrated with a hydropower plant system containing six vertical Kaplan turbines (i.e., Haditha dam), is investigated. In the first stage of the study, ANSYS-CFX was used to represent one vertical Kaplan turbine unit by designing a three-dimensional (3-D) finite element (FE) model. This model was used to differentiate between the effect of turbine units’ operation on dam stability in accordance to maximum and minimum reservoir upstream water levels, and the varying flowrates in a fully open gate condition. In the second stage of the analysis, an ANSYS-static modeling approach was used to develop a 3-D FE earthfill dam model. The water pressure pattern determined on the boundary of the running turbine model is transformed into the pressure at the common area of the dam body with turbines. The model is inspected for maximum and minimum upstream water levels. Findings indicate that the water stress fluctuations on the dam body are proportional to the inverse distance from the turbine region. Also, it was found that the cone and outlet of the hydropower turbine system are the most affected regions when turbine is running. Based on the attained results, a systematic operation program was proposed in order to control the running hydropower plant with minimized principal stress at selected nodes on the dam model and the six turbines.
机译:大坝运行和管理都因为需要考虑的液压结构,可持续发展和环境的保护成为近来越来越复杂。一个土坝包括厂房系统被认为是一个显著多用途液压结构。了解对坝体运行的水电站发电机组的影响是主要的安全问题进行填土大坝之一。在这项研究中,土坝的动态分析,集成了含有六个垂直卡普兰涡轮机(即,哈迪塞坝)水力发电厂系统,进行了研究。在研究的第一阶段中,ANSYS-CFX使用通过设计的三维(3-d)的有限元(FE)模型来表示一个垂直卡普兰涡轮单元。该模型用于涡轮单元的操作的上坝稳定性按照到最大和最小的水库水上游水平的作用之间进行区分,并且变处于完全打开门状态流速。在分析的第二阶段中,使用ANSYS静电建模方法来开发一个3-d FE土坝模型。的边界处的运行涡轮机模型的确定水压图案被转换成在坝体与涡轮机的共同区域上的压力。该模型被用于检查最大和最小上游水位。研究结果表明,在坝体水胁迫波动是正比于从涡轮机区域中的反距离。此外,发现水电涡轮机系统的锥和出口是当涡轮机运行受影响最严重的区域。基于所述获得的结果,一个系统的操作的程序,以控制具有最小化的主应力的运行水电厂在大坝模型和所选节点的六个涡轮机中提出的。

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