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首页> 外文期刊>Journal of Cold Regions Engineering >Characterizing Ice Cover Formation during Freeze-Up on the Regulated Upper Nelson River, Manitoba
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Characterizing Ice Cover Formation during Freeze-Up on the Regulated Upper Nelson River, Manitoba

机译:在监管上部纳尔逊河(Manitoba)上冻结期间的冰盖形成

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摘要

Flow control programs on regulated rivers can improve winter flow conveyance for hydropower operations. On the Upper Nelson River, station flows at Jenpeg Generating Station are reduced during freeze-up to promote formation of a smooth ice cover in often turbulent upstream areas. This ice cover reduces the risk of frazil generation, which could otherwise result in blockages and subsequent energy losses. In this study, a characterization of freeze-up conditions for the Upper Nelson River is presented through 15 years of historical observations, supplemented by a short-term detailed monitoring program (2015-2018). Observations of rapid leading edge celerity are associated with increased ice production under dampened hydraulic conditions. Analysis of ice cores and drone footage highlights the role of skim ice runs in early cover formation, while predictions of skim ice formation show agreement with ice floe taxonomy from the literature. Establishing a baseline of freeze-up conditions for the region will assist in the development of predictive tools, such as numerical models, to optimize flow control decisions for this significant hydropower system.
机译:调节河流的流量控制程序可以改善水电操作的冬季流量传送。在上部纳尔逊河上,在冻结期间JENPEG发电站的车站流动减少,以促进经常湍流上游区域的平滑冰盖的形成。这种冰盖会降低逃生生成的风险,否则可能会导致堵塞和随后的能量损失。在这项研究中,通过短期详细监测计划(2015-2018)介绍了15年的历史观察,介绍了上尼尔森河的冻结条件的表征。快速前缘圆形圆形的观察与湿润的液压条件下的冰产量增加有关。冰芯分析和无人机镜头突出了脱脂冰在早期覆盖形成中的作用,而脱脂冰层的预测与文献中的冰浮冰分类展。建立该地区的冻结条件的基线将有助于开发预测工具,例如数值模型,以优化该大型水电系统的流量控制决策。

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