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Modeling cooling water discharges from the Burrard generating station, BC Canada

机译:从BC加拿大的Burrard发电站造型冷却排水

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A three-dimensional numerical model was applied to examine the impact of the Burrard Generating Station cooling water on the circulation patterns and thermal regime in the receiving water of Port Moody Arm. A key aspect of this study involved properly incorporating the submerged cooling water buoyant jet into the 3D model. To overcome the scale and interface barriers between the near-field and far-field zones of the buoyant jet, a sub-grid scheme was applied, and the coupled system of equations of motion, heat conservation and state are solved with a single modeling procedure over the complete field. Special care was taken with the diffusion and jet entrainment by using a second order turbulence closure model for vertical diffusion and the Smagorinsky formula for horizontal diffusion as well as jet entrainment. The model was calibrated and validated in terms of buoyant jet trajectory, centerline dilution, and temperature and velocity profiles. Extensive modeling experiments without and with the Burrard Generating Station in operation were then carried out to investigate the receiving water circulations and thermal processes under the influence of the cooling water discharge. The model results reveal that under the influence of the cooling water discharge, peak ebb currents are stronger than peak flood currents in the near-surface layer, and the reverse is true in the near-bottom layer. Meanwhile, the model revealed a well-developed eddy at the southeast side of the buoyant jet in the near-surface layer. It is also found that the warmer water released from the cooling water discharge is mainly confined to the upper layer of the Arm, which is largely flushed out of the Arm through tidal mixing processes, and a corresponding inflow of colder water into the Arm occurs within the lower layer.
机译:应用了三维数值模型来检验伯勒德发电站冷却水对港口散布港口接收水中的循环模式和热状态的影响。该研究的一个关键方面涉及将浸没式冷却水浮力射流合并到3D模型中。为了克服浮力射流的近场和远场区域之间的尺度和界面屏障,应用了子网格方案,并且通过单个建模程序解决了运动方程,热保守和状态方程的耦合系统在完整的领域。通过使用用于垂直扩散的二阶湍流封闭模型和用于水平扩散的SMAGORINSKY公式以及喷射夹带,通过扩散和喷射夹带进行特殊护理。根据浮动喷射轨迹,中心线稀释度和温度和速度剖面,校准模型并验证。然后进行了无线和与伯里德发电站进行的广泛建模实验,以研究在冷却水排放的影响下的接收水循环和热过程。模型结果表明,在冷却水放电的影响下,峰值EBB电流比近表面层中的峰洪流强,并且在近底层中的反向是真实的。同时,该模型揭示了在近表面层的浮力射流的东南侧发达的涡流。还发现从冷却排水释放的暖水主要限制在臂的上层,这通过潮汐混合过程大大冲出臂,并且在臂中将更冷的水流入到臂内发生下层。

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