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李向阳, 许立祥, 解赞琪, 严 军.2014年汛期小浪底库区异重流演进规律分析水资源与水工程学报[J].,2017,28(6):163-167
2014年汛期小浪底库区异重流演进规律分析
Density current motion analysis of Xiaolangdi reservoir in 2014 flood season
  
DOI:10.11705/j.issn.1672-643X.2017.06.28
中文关键词:  异重流  潜入点区  库内演进区  坝前区  演进规律  小浪底水库
英文关键词:density current  plunging point areas  evoluing areas in reservoir  areas in front of the dam  evolution law  Xiaolangdi reservoir
基金项目:
作者单位
李向阳1, 许立祥1,2, 解赞琪1, 严 军2 1.黄河水利委员会水文局 河南 郑州 450004 2.华北水利水电大学 河南 郑州 450011 
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中文摘要:
      2014年汛期,通过对万家寨、三门峡、小浪底水库进行水沙联合调度,塑造了小浪底水库异重流,并实测异重流在潜入点区、库内演进区和坝前区的演进数据。分析得出:在潜入点区垂向上,异重流厚度变化与来流量同步,平均流速从上到下逐渐增大;横向上,平均流速与含沙量主流较大,边流较小。在库内演进区,异重流厚度在同1天内沿程增加,靠近坝前出现壅高,平均流速总趋势沿程递减;沿来流方向,由前断面含沙量大于后断面逐渐变为后断面大于前断面;在坝前区横向上,异重流厚度增加;在垂向上,当出水口、排沙洞开启后,平均流速在清水层底部与异重流底部分别出现极值,含沙量在异重流底部也出现极值。通过本次对小浪底水库异重流的运动规律分析,为最优水库调度提供支撑,从而减少库区淤积、延长水库的使用寿命。
英文摘要:
      In the flood season of 2014, through the joint operation of water and sediment in Wanjiazhai, Sanmenxia and Xiaolangdi reservoirs, the gravity flow of Xiaolangdi Reservoir was shaped and the evolution data of the density flow at the dive site, the reservoir evolution area and the dam front area were measured. In the vertical direction of the submerged point , the analysis shows that the variation of the thickness of density flow synchronizes with the incoming flow, and the average flow velocity gradually increases from top to bottom. In the horizontal direction, the average flow velocity and sediment concentration are larger and the edge flow is smaller. In the evolution area of the reservoir, the thickness of density flow increases along the way in the same day and the height appears near the dam, and the general trend of the average flow rate decreases along the course. In the direction of the incoming flow, the sediment concentration in the front section becomes larger than that in the posterior section. In the vertical direction, when the outlet and the drain hole are opened, the average flow velocity appears two extremums in clear water layer and density flow layer's bottom, with sediment concentration's extremum appearing in the bottom of density current. Through the analysis of the movement of density current in xiao langdi reservoir, it can provide technical support for optimizing the reservoir scheduling ,in order to reduce sedimentation, and prolong the service life of the reservoir.
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