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1)  cupule dredging boat
吸盘式挖泥船
1.
Two main reasons about the low dredging efficiency of the cupule dredging boat in low water sections are pointed out by analyzing the ejection angle and structure of the nozzle;and by changing them, the e-jection function can be advanced greatly; the ways are put forward.
通过对吸盘式挖泥船浅水航道疏浚作业时吸盘头喷嘴喷射角度及喷嘴结构的分析研究,指出了浅层开挖时工作效率低的两个主要原因,并提出了通过改变吸盘头喷嘴喷射角度及喷嘴结构可以极大的改进吸盘式挖泥船喷嘴喷射功能的方法。
2)  hydraulic dustpan suction dredger
吸盘挖泥船
3)  hydraulicdustpan dredger
液力吸盘式挖泥船
4)  suction lift of a pump
吸式挖泥船
5)  TSHD
耙吸式挖泥船
1.
Optimum Hopper Capacity Selection for TSHD Based on the Cost Calculation;
基于疏浚成本选择耙吸式挖泥船的最优仓容
2.
To find the rule about the change of the mass center positions of a TSHD s draghead with time when working in different soil hardness of seabed under the function of swell compensator, a simulation model of TSHD is built based on a mathematical model, by using the software of ADAMS (Automated Dynamic Analysis of Mechanical Systems).
为研究耙吸式挖泥船(TSHD)在波浪补偿器作用下耙头质心位置在海床土壤硬度不同时随时间的变化规律,本文在建立波浪补偿器数学模型基础上,借助多体动力学仿真软件ADAMS,以某单耙TSHD为例,建立其疏浚过程动力学仿真模型。
6)  cutter suction dredger
绞吸式挖泥船
1.
Design study on large car-type system of cutter suction dredger;
大型绞吸式挖泥船台车系统的设计研究
2.
Dynamic behavior and simulation system design of a cutter suction dredger;
绞吸式挖泥船疏浚动态特性与仿真系统设计
3.
350 m~3/h (split type) cutter suction dredger;
350m~3/h(分体)绞吸式挖泥船
补充资料:挖泥船
      见工程船舶。
  

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