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1)  bottom siltation
底沙淤积
2)  sediment deposition
泥沙淤积
1.
Study on the controlled water levels of Three Gorges Reservoir in September with considering the impact of sediment deposition;
泥沙淤积对三峡水库9月分旬蓄水的影响
2.
Impact on sediment deposition and shoals change in Chongqing Reach of the impounding water ahead of the schedule of the Three Gorges Reservoir;
三峡水库提前蓄水对重庆河段泥沙淤积和浅滩演变的影响
3.
Numerical model for effects of outlet shapes of approach channels on sediment deposition;
引航道出口形态对泥沙淤积影响的数学模型研究
3)  sedimentation [英][,sedɪmen'teɪʃn]  [美]['sɛdəmɛn'teʃən]
泥沙淤积
1.
Analysis on influence of flow velocity-flow regime and sedimentation on operation of underground hydropower station of Three Gorges Project;
三峡工程地下电站前流速流态和泥沙淤积对电站运行的影响分析
2.
Study on water-sediment optimum allocation in upstream basin and comprehensive measures of sediment control in Guanting reservoirⅠ:Reservoir sedimentation and general plan of water and sediment control;
官厅水库流域水沙优化配置与综合治理措施研究Ⅰ——水库泥沙淤积与流域水沙综合治理方略
3.
Research on sedimentation analysis based on GIS technique;
基于GIS技术的泥沙淤积分析系统研究
4)  sediment siltation
泥沙淤积
1.
Study on sediment siltation for extension project of Weifang harbor;
潍坊港扩建工程方案泥沙淤积研究
2.
By using wind,wave,tidal current,sediment numerical models based on the up-todata hydrology,sediment data of field observation and remote sensing data,sediment siltation in the deep channel is computed.
依据最新的水文、泥沙实测资料,利用风浪潮流泥沙数值模型对开挖深水航道泥沙淤积情况进行了计算。
3.
Based on a large quantity of meassured data,the pattern of sediment siltation is studied and the feasibility of building offshore deep water terminals in Tianjin Harbor is discussed as well.
通过天津港大量实测资料的对比分析 ,研究了泥沙淤积变化的特点 ,并对天津港在外海建岛式深水码头工程的可行性进行了论
5)  sediment accumulation
泥沙淤积
1.
One dimensional flow and sediment mathematics model of river unsteady flow is used to study the change rule of the sediment depth at the gate of the water diversion canal of the Yangtze River to Han River water transfer project in different water sediment conditions;the influences of different roughness coefficients on the sediment accumulation depth are also analyzed.
通过一维非恒定流水沙数学模型,研究了不同水沙条件下引江济汉工程引水渠道口门泥沙淤积厚度变化规律,并分析了糙率对口门淤积厚度的影响情况,模型的计算结果与水流运动规律相吻合,可以为渠道引水防沙设计提供技术支持。
2.
According to the design requirements of water diversion for sediment control of the Yangtze River to Han River Water Transfer Project, the sediment accumulation conditions in the water diversion canal with or without sedimentation basin are researched on the basis of basic hydrology sediment and engineering data by one-dimensional constant flow heterogeneous sand mathematical model.
 根据引江济汉工程渠道引水防沙的设计要求,在收集基本水文泥沙和工程基础资料的基础上,运用一维恒定流非均匀沙数学模型,研究了不设沉沙池和设沉沙池后引水渠道内泥沙淤积情况,模型计算结果可以为引江济汉工程中渠道引水防沙设计提供依据。
3.
Combining experimental data with site investigation results, this paper expounds the influence of layout of harbor basin′s axis on deposition thickness and total sediment accumulation in backflow area, analyzes the reasons of the influences, and puts forward suggestions on determination of reasonable axis of inland excavated-in basin.
结合挖入式港池水槽试验和现场调查结果,论述港池轴线布置对港池回流泥沙淤积厚度和总淤积量的影响,分析了产生这种影响的原因,并对挖入式港池设计时合理确定港池轴线提出了建议。
6)  siltation
泥沙淤积
1.
Based on the results of sectional hydrologic survey and measurements,the properties of the sediment load,sediment concentration in the seawater and the flow rate of seawater in the sea area are analyzed and ascertained and the causes of siltation in the downstream port area from the ship lock are analyzed in greater depth.
根据断面水文测验结果,分析确定了海区底质泥沙特性,海水含沙量及流速;对闸下港区造成泥沙淤积的原因进行了较深入的分析;根据水文测验的有关数据,运用一般“文献方法”和“规范方法”分别对港区泥沙淤积强度作了估算;对于如何冲淤和减淤,从方法上和理论上作了论述。
2.
With intensive development of its surrounding areas, water quality has been critically affected by siltation and bottom mud.
西丽水库是深圳市最重要的供水水库之一,随着周边区域开发的加剧,泥沙淤积和底泥对水质的影响已不 容忽视。
3.
A one-dimensional unsteady numerical model is developed to simulate the movement of flow and sediment in a regular approach channel and to analyze the influence of some factors on siltation.
通过建立一维非恒定水流泥沙数学模型,对规则断面引航道中的水流泥沙运动规律及淤积特性进行了数值模拟计算,并对影响感潮河段船闸下泥沙淤积的各种因素(如干支流水位差、开通闸水头差、主流潮差等)进行了深入分析和研究。
补充资料:科素亚 ,氯沙坦钾,氯沙坦, 芦沙坦, 洛沙坦
药物名称:洛沙坦

英文名:Losartan

别名: 科素亚 ,氯沙坦钾,氯沙坦, 芦沙坦, 洛沙坦
外文名:Losartan, Cozaar, Novartis
成分: 氯沙坦钾
适应症: 高血压。
用量用法:
通常剂量为50mg,qd,治疗3-6周后达到最大抗高血压效应。在部分病人中,每天剂量可增加到100mg。血容量不足的病人(例如应用大量利尿剂)起始剂量应该为25mg,qd。
禁忌: 儿童,妊娠和哺乳妇女。
不良反应:
轻微而短暂的头晕,剂量相关性体位性低血压。罕见皮疹、荨麻疹,血管神经性水肿(包括面、唇和/或舌肿胀)。腹泻及偏头痛。偶有高血钾,罕见ALT升高。敏感个体和动脉狭窄的病人可出现肾功能异常。
注意事项: 血容量不足的病人应先补充血容量,减少起始剂量。有肝功能损害病人应使用较低剂量。
规格: 片剂 50mg x 7片。


类别:抗高血压药
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条