Discriminant analysis of the freeze-up and break-up conditions in the Inner Mongolia Reach of the Yellow River

IF 2.7 4区 环境科学与生态学 Q2 WATER RESOURCES Journal of Water and Climate Change Pub Date : 2023-09-01 DOI:10.2166/wcc.2023.203
Zhixing Hou, Jun Wang, Jueyi Sui, Guowei Li, Baosen Zhang, Liangguang Zhou
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Abstract

Abstract This study divided the total storage potential in a natural channel into the ice production volume and the water storage capacity volume. Thermal factors, hydraulic processes, topography, and ice formation were selected to derive a discriminant equation for freeze-up and break-up conditions in the Inner Mongolia Reach of the Yellow River. The trends observed from data for the freeze-up dates, break-up dates, and total frozen days from 2017 to 2020 conform to the principle that the river is gradually frozen from the downstream to the upstream and later thawed from the upstream to the downstream. The number of frozen days in the downstream is greater than in the upstream. Results indicate that freeze-up typically occurs when the proportion of ice in the channel is relatively high. Higher temperatures and greater discharges are required to facilitate the break-up of the river when the equilibrium ice thickness is greater. This study can provide a theoretical basis and framework for establishing an accurate freeze-up and break-up forecast model to prevent and mitigate ice-induced disasters.
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黄河内蒙河段冻结与溃决条件判别分析
摘要本研究将天然河道的总蓄冰潜力分为产冰量和蓄水量两部分。选取黄河内蒙河段的热因素、水力过程、地形和冰形成等因素,推导出黄河内蒙河段冻结和溃决条件的判别方程。2017 - 2020年冻结期、破裂期和总冻结日数的变化趋势符合河流由下游向上游逐渐冻结,由上游向下游逐渐解冻的原则。下游地区的冰冻天数大于上游地区。结果表明,当渠道中冰的比例较高时,通常会发生冻结。当平衡冰厚较大时,需要更高的温度和更大的流量来促进河流的破裂。该研究可为建立准确的冻融预报模型,预防和减轻冰害灾害提供理论依据和框架。
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来源期刊
CiteScore
4.80
自引率
10.70%
发文量
168
审稿时长
>12 weeks
期刊介绍: Journal of Water and Climate Change publishes refereed research and practitioner papers on all aspects of water science, technology, management and innovation in response to climate change, with emphasis on reduction of energy usage.
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