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可反冲洗井口水质过滤器研究与试验
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作者 盖旭波 刘扬 +1 位作者 郑刚 刘雪静 《中小企业管理与科技》 2012年第22期317-318,共2页
针对井下分注井中水嘴易被杂质堵塞的问题,研究开发了可反冲洗井口水质过滤器。该过滤器主要由进水口、过滤筛管、放空短节、出水口等组成,接在井口注水管线上可以过滤直径0.5mm以上的杂质,避免杂质堵塞水嘴。需要时可以倒闸门反冲洗,... 针对井下分注井中水嘴易被杂质堵塞的问题,研究开发了可反冲洗井口水质过滤器。该过滤器主要由进水口、过滤筛管、放空短节、出水口等组成,接在井口注水管线上可以过滤直径0.5mm以上的杂质,避免杂质堵塞水嘴。需要时可以倒闸门反冲洗,将滤网前的杂质冲出,实现长期有效。 展开更多
关键词 井下分注 水嘴 堵塞 可反冲洗 井口水质过滤器
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Numerical investigation of swash zone hydrodynamics 被引量:4
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作者 JIANG ChangBo DENG Bin +1 位作者 HU ShiXiong TANG HanSong 《Science China(Technological Sciences)》 SCIE EI CAS 2013年第12期3093-3103,共11页
This paper presents a novel numerical model using a fully three-dimensional(3D),incompressible,two-phase flow NavierStokes(NS)solver,which are discretized by the finite volume method.A high-resolution STACS-VOF method... This paper presents a novel numerical model using a fully three-dimensional(3D),incompressible,two-phase flow NavierStokes(NS)solver,which are discretized by the finite volume method.A high-resolution STACS-VOF method is used to capture the interface between the air and water phases.The validity of the simulation following this model is examined through3D shear flow and collapsing cylinder of water.Then,this proposed model is adopted to simulate the dynamics of flow involved with surge bore propagating over a slope in the swash zone.The computed uprush shoreline motion and the tip of runup water surface agreed well with experimental data,which indicates that this model can describe the aerated flow accurately.Numerical analyses are also applied to the spatial and temporal distributions of free-surface,instantaneous flow field,and maximal bed shear stress in the bore collapse,uprush and backwash processes.The results from the analyses reveal that the flow dynamics is complicated after the bore breaks,and the proposed model can well capture the structure characteristics of sheet flow,which are better than the previous results.All these findings are of help to understand the pattern of sediment transport and coastal evolution in the swash zone. 展开更多
关键词 two-phase flow swash zone HYDRODYNAMICS high resolution
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