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无坝引水明渠的泥沙淤积成因及对策分析 被引量:3
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作者 田原 《水利技术监督》 2019年第1期175-178,共4页
结合物理模型试验方法,对无坝引水明渠的淤积成因进行试验分析,并结合试验分析数据对其成因进行相关对策分析。试验分析表明:明渠断面流速及取水口断面形态是明渠受上游来水泥沙淤积的主要成因,扩大断面口取水形态以及增加断面流速是解... 结合物理模型试验方法,对无坝引水明渠的淤积成因进行试验分析,并结合试验分析数据对其成因进行相关对策分析。试验分析表明:明渠断面流速及取水口断面形态是明渠受上游来水泥沙淤积的主要成因,扩大断面口取水形态以及增加断面流速是解决无坝引水明渠淤积的主要对策。 展开更多
关键词 物理模型试验 水口形态 断面流速变化 淤积变化成因 解决对策 无坝引水明渠
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岩心管及脑袋磨损严重情况的分析和解决办法
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作者 梁玉明 《黑龙江科技信息》 2014年第8期139-139,共1页
文章通过对煤田勘探施工中,岩心管及脑袋磨损严重情况的分析,从中找出了解决问题的方法。
关键词 岩心管 脑袋 岩屑 磨损 “瓶颈” 涡流 水口形态
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Phosphorus Speciation in Wetland Sediments of Zhujiang (Pearl) River Estuary,China 被引量:11
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作者 WANG Lili YE Mei +2 位作者 LI Qusheng ZOU Hang ZHOU Yongsheng 《Chinese Geographical Science》 SCIE CSCD 2013年第5期574-583,共10页
Phosphorus fractions and adsorption-release characteristics of sediments in the Zhujiang (Pearl) River estuary wetland were investigated. Results showed that the total phosphorus (TP) content in surface sediments ... Phosphorus fractions and adsorption-release characteristics of sediments in the Zhujiang (Pearl) River estuary wetland were investigated. Results showed that the total phosphorus (TP) content in surface sediments ranged from 648.9 mg/kg to 1064.0 mg/kg; inorganic phosphorus (IP) was the major fraction of TP and ranged from 422.5 mg/kg to 643.9 mg/kg. Among the inorganic phosphorus, the main fractions were phosphorus bound to A1 and Fe (Fe/A1-P), and calcium-bound phosphorus (Ca-P), accounting for 23%-42% and 21%-67% of IP, respectively. The vertical distribution of TP contents were significantly positive correlated with organic phosphorus (Org-P) and Fe/A1-P contents. The bio-available phosphorus contents in vertical sediments varied from 128.6 mg/kg to 442.9 mg/kg, mainly existed in Fe-AI/P fraction, and increased from the bottom to top sediments. The transport of phosphorus in sediment-water in- terface was controlled by the soil characteristics. The active Fe and A1 content was considered as the main factor that determines adsorp- tion capacity in vegetated marsh wetland. The P buffering capacity of the sediments in vegetated marsh wetland was greater than that in mudflat wetland. The potential risk of eutrophication in the study area is high. Reducing terrestrial phosphorus discharge and preventing the sediment Fe/A1-P release to the interstitial water are the possible solutions to reduce the risk of eutrophication in estuary wetlands, and planting vegetation in estuary wetland can also reduce the release of phosphorus in surface sediment. 展开更多
关键词 estuary wetland PHOSPHORUS FRACTION ADSORPTION-DESORPTION
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