首页> 外文会议>21st CSCE Canadian Hydrotechnical Conference 2013: Including Recent Flood Management Lessons in Canada >CFD AND PHYSICAL MODELLING FOR THE MUSKRAT FALLS HYDROELECTRIC DEVELOPMENT PROJECT: A HYBRID APPROACH TO OPTIMIZING FLOW CONDITIONS AT THE POWERHOUSE FACILITY
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CFD AND PHYSICAL MODELLING FOR THE MUSKRAT FALLS HYDROELECTRIC DEVELOPMENT PROJECT: A HYBRID APPROACH TO OPTIMIZING FLOW CONDITIONS AT THE POWERHOUSE FACILITY

机译:麝香瀑布水电开发项目的CFD和物理建模:优化厂房设施流动条件的一种混合方法

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The Muskrat Falls Hydroelectric Generating Facility being constructed by Nalcor Energy is located on the Lower Churchill River, approximately 270 km downstream of the Churchill Falls Hydroelectric Generating Station. The project is comprised of an 824 megawatt (MW) powerhouse facility situated on the south bank, along with gated and overflow spillways to convey water along the river up to the probable maximum flood (PMF) discharge. The development of the Muskrat Falls Project will meet the energy requirements for Newfoundland and Labrador, as well provide capacity for future industrial developments in Newfoundland and Labrador. The initial design of the powerhouse and spillway facilities was developed with the aid of three-dimensional computational fluid dynamics (CFD) modelling. Following this, a 1:70 scale undistorted, fixed-bed physical model of the study reach was used to: (ⅰ) verify the adequacy of the overall layout; (ⅱ) optimize the layout to improve performance and reduce construction costs; (ⅲ) develop stage-discharge relationships for the spillway structures; (iv) evaluate the hydraulic conditions during various construction phases; and (ⅴ) perform river closure tests to optimize the closure sequence and determine cofferdam rock sizes required to close the river. CFD was utilized throughout the physical model study to evaluate additional configurations and operating scenarios for the development. This hybrid approach, using numerical and physical models, was successfully used to evaluate various aspects of the design. The purpose of this paper is to show how the CFD and physical model results from testing of the powerhouse facility compared with one another.
机译:由Nalcor Energy建造的Muskrat Falls水力发电设施位于丘吉尔河下游,丘吉尔瀑布水力发电站下游约270公里。该项目由位于南岸的824兆瓦(MW)发电站设施,闸门和溢洪道组成,沿河道将水输送到可能的最大洪水(PMF)排放量。 Muskrat Falls项目的开发将满足纽芬兰和拉布拉多的能源需求,并为纽芬兰和拉布拉多的未来工业发展提供能力。动力室和溢洪道设施的初始设计是借助三维计算流体动力学(CFD)建模开发的。此后,使用研究范围的1:70比例的未变形固定床物理模型来:(ⅰ)验证总体布局是否适当; (ⅱ)优化布局以提高性能并降低建造成本; (ⅲ)为溢洪道结构建立阶段排放关系; (iv)评估各个施工阶段的水力状况; (ⅴ)进行河道封闭试验,以优化河道封闭顺序,并确定封闭河道所需的围堰岩石尺寸。在整个物理模型研究中都使用CFD来评估开发的其他配置和操作方案。这种使用数值和物理模型的混合方法已成功用于评估设计的各个方面。本文的目的是展示如何比较动力设施的CFD和物理模型结果。

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