1)drag-suction dredger耙吸式挖泥船
1.Logical analysis and diagnosis of the hydraulic system trouble for the drag-suction dredger;耙吸式挖泥船液压系统故障逻辑分析诊断
2.This paper uses 3DS Max to build up a model of drag-suction dredger and develops the 3D view system with OpenGL library, which is based on VC++6.利用3DS Max工具建立耙吸式挖泥船的模型并结合OpenGL图形库开发了耙吸式挖泥船疏浚作业三维显示系统。
英文短句/例句
1.Drag-suction dredger 3D view system耙吸式挖泥船疏浚作业三维显示系统
2.Bow-blowing Technology and Benefit Analysis of the Self-propelled Trailing Suction Hopper Dredger自航耙吸式挖泥船艏吹施工工艺及效益分析
3.Design of a 300m~3 self-propelled drag suction dredger with bow-jetting具有首冲功能的300m~3自航耙吸挖泥船船型设计
4.Reform Design and Application for the Propulsion System of 4 500 m~3 Trailing Suction Hopper Dredger4500 m~3耙吸挖泥船推进系统改造设计及应用
5.hydraulic dredging用吸扬式挖泥船挖泥疏浚
6.Design of a Small Dredging Simulator of Cutter Suction Dredger;绞吸式挖泥船小型疏浚仿真器的设计
7.Calculation for Spud-lifting Force of Cutter Suction Dredger绞吸式挖泥船定位桩拔桩力计算方法
8.bucket ladder dredger链斗挖泥船斗式采泥器
9.Research on Optimization and Control of Dredging Operations for Cutter Suction Dredgers;绞吸式挖泥船疏浚作业优化与控制研究
10.Modeling and Simulation of Dredging Process for Cutter Suction Dredger;绞吸式挖泥船疏浚作业过程的建模与仿真
11.Study on the Load and Strength Analysis of Cutter Suction Dredger s Bridge;绞吸式挖泥船绞刀架载荷计算和强度分析
12.Main Loads Analysis for Cutter Suction Dredger and Compilation of Calculation Software绞吸式挖泥船主要载荷分析及计算软件开发
13.Design and Study of Cutter Suction Dredger's Spud-Carriage System绞吸式挖泥船定位桩台车系统设计和研究
14.Discussion on the subdivision and towing safety of the non-self propelled cutter-suction dredger非自航绞吸式挖泥船分舱与拖航安全性探讨
15.Discussion and optimization of new-type dredging locating mode for cutter suction dredgers绞吸挖泥船新型施工定位方式的探讨及优化
16.Research on Suction Capacity of Submerged Dredge Pump for Wheel Dredge Boat and Its Modification某斗轮式挖泥船水下泥泵吸入性能的研究与改进
17.self-propelled grab dredger自动推进式抓斗挖泥船
18.bucket wheel suction dredger斗轮铲式抽吸挖泥机
相关短句/例句
trailing suction hopper dredger耙吸式挖泥船
1.A trailing suction hopper dredger is one of the most popular dredging tools for regulati.耙吸式挖泥船是最常用的清理河道港口的疏浚工具之一,它是水力式挖泥船中大型自航、自载式挖泥船,适用于水域开阔的海湾、河口,具有广泛的适用性和经济性,为世界上各个国家在较大的疏浚工程中广泛采用。
3)drag suction dredger耙吸式挖泥船
1.A brief description of the dredge system design of drag suction dredger;耙吸式挖泥船疏浚系统设计概述
4)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。
5)drag suction dredger耙吸挖泥船
1.Overall design on a Lian Yungang 5000 m~3 drag suction dredger;连云港5000m~3耙吸挖泥船总体设计综述
2.Dump door mounting for mud hold on drag suction dredger;耙吸挖泥船泥舱泥门设置
3.Estimation of dredging operation resistance of drag suction dredger;耙吸挖泥船挖泥工况阻力的近似计算
6)Trailing suction hopper dredger耙吸挖泥船
1.Trailing suction hopper dredger plays an important role in growth and construction of port and waterway.耙吸挖泥船在港口和航道的发展和建设中起着非常重要的作用,文章从系统布置设计和参数选取两方面介绍了耙吸挖泥船波浪补偿器系统设计中的关键要点。
2.The paper expounds the major mathematical models that have been developed independently for trailing suction hopper dredgers to optimize their production and improve their working technology according to the changes of seabed.阐述了自主开发研制的耙吸挖泥船针对土质变化,进行产量优化,改进施工工艺的主要数学模型。
3.After analyzing the dredging diesel updating for trailing suction hopper dredger that imported from abroad, this paper gives a demonstration of operation characteristics, application range, relevant technological problems and solvent of new machine type.文章通过对早年进口耙吸挖泥船泥泵柴油机的更新 ,系统、科学地分析论证了该更新机型应具备的运转特性、工作范围、相关技术问题及应对措施 ,并以详实的数据资料印证了柴油机选型和技术处理的成功 ,确保了泥泵的高效运
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ZPG型内热式真空耙式干燥机
项 目
机 型
名称
单位
500
750
1000
1500
2000
3000
工作容积
L
300
450
600
900
1200
1800
加热面积
m2
6
7.6
9.3
12.3
14.6
19.3
搅拌转速
rpm
6-30无级调速
功率
kw
4
5.5
5.5
7.5
11
15
夹层设计压力
MPa
0.3
筒内压力
MPa
-0.1--0.15