1) Ship-borne helicopter
船载直升机
1.
Using the new technology to predict the touchdown occasion, the ship-borne helicopter undertaking the task of salvage and supply, can land safely in waves.
实施海上搜救、垂直补给的船载直升机,可以藉助着船时机预报新技术,在大风浪中安全着船。
2) vertical shiplift
垂直升船机
1.
Dismantling of vertical shiplift of Danjiangkou Hydroproject;
丹江口枢纽垂直升船机拆除施工
2.
During debugging period of Geheyan first-step vertical shiplift,the test is done for checking the static stress and dynamic stress under starting,stopping and regular operating conditions in the hoisting drum,the result shows that the drum is reasonably designed with a certain amount of safety factor.
试验研究结果表明隔河岩第一级垂直升船机卷筒结构设计合理,强度有一定的安全裕度。
3.
Its scale is of 500-t level and its type is of a single-lift shiplock plus a cable-hoisting vertical shiplift balanced with full counterweight.
彭水水电站通航建筑物布置在左岸,规模为500 t级,型式为单级船闸+钢丝绳卷扬全平衡式垂直升船机,该型式为国内首次采用。
3) vertical ship lift
垂直升船机
1.
Effects of flood discharge and regulation of power load on operation of vertical ship lift in hydropower station;
水工枢纽泄洪及电站负荷调节对垂直升船机运行的影响
2.
Electric design of 100 t vertical ship lift in Ankang Hydropower Station;
安康水电站 100 t 垂直升船机电气设计
3.
Some technical problems,which are of system structure,software design and fail protection during the design of control and computer monitoring system for the vertical ship lift,are analyzed in this paper.
分析垂直升船机计算机监控系统设计中关于系统结构、软件设计、故障保护等若干技术问题,并进行简要系统设计,因此提出采用分层分布式系统结构,并在关键部位采用冗余设计,是升船机计算机监控发展方向,技术上也日趋成熟。
4) ship-borne helicopter
舰载直升机
1.
Design of take-off and landing training simulation system for ship-borne helicopter;
舰载直升机起降训练仿真系统设计方案
2.
The factors that influence the safety of ship- borne helicopter were discussed , the general modules of the ship-borne helicopter s landing forecast system were presented, a novel ship motion s prediction model based on Minor Component Analysis (MCA) was built to improve the forecast effectiveness.
本文对影响海上直升机着舰安全的因素进行分析,详细介绍舰载直升机起降预报仿真系统的各个组成模块。
3.
In order to increase launching opportunities of ship-to-air missile intercepting the low-altitude target, launching area low boundary of ship-to-air missile guided by ship-borne helicopter and warship coordination was researched.
为增加舰空导弹拦截低空目标的发射时机,研究了舰载直升机与舰艇协同制导下舰空导弹发射空域的低界。
5) Carrier helicopter
舰载直升机
1.
To improve warship s ability of defense torpedo,the thesis raises a assumption that use subaqueous cannonball to intercept torpedo by carrier helicopter for the first time.
为了进一步提高水面舰艇对鱼雷的防御作战能力,首次提出了舰载直升机使用航空深弹拦截鱼雷的战术设想。
2.
According to the character of the air attack targets in modern sea battles,this paper reasonably disposes the early warning process of carrier helicopters which are used in air defense for warship formation.
针对现代海战中空袭目标的特点,合理配置舰载直升机在舰艇编队对空防御中的预警过程。
6) ship-based helicopter
舰载直升机
1.
According to the mechanism in planning procedure of scheme of force employ for ship-based helicopter,this paper analyzes the main factors in planning procedure and gives a model of benefit/lose value which is given based on the quantitative analysis and qualitative analysis.
依据舰载直升机兵力使用计划活动的思维机制,分析了计划活动中所涉及的各种主要因素,采用定量与定性分析相结合的方法,建立了兵力使用方案优化的益损值模型,并以舰载直升机反潜作战样式为例,采用软件编程方式实现了该模型,实例表明该方法可为决策者做出科学、有效的决策提供支持。
2.
Aimed at resolving the problem of force demand of anti-submarine trace with ship-based helicopter,this paper applies the method of operational research,makes a analysis of the process of anti-submarine trace with ship-based helicopter,and then establishes the compute model of the number demand of ship-based helicopter on the premise of a certain trace probability.
从解决舰载直升机对潜跟踪时兵力需求问题出发,运用运筹分析的思想,通过对舰载直升机对潜跟踪过程的分析,建立了在一定跟踪概率前提下所需舰载直升机数量的计算模型。
3.
The method and model of rejecting and locating special sonobuoy in ship-based helicopter are analyzed and the improvement are made for this problem,which can be consulted when called-out search by ship-based helicopter.
分析了舰载直升机布设特种浮标的方法和布设模型,针对布设时存在的问题提出了改进对策,为舰载直升机应召搜索时使用特种浮标提供参考。
补充资料:Z-9d舰载型直升机
z-9d舰载型直升机
直-9a
机长:13.46米;机高:4.01米
最大起飞重量:3850公斤
最大平飞速度:306公里/小时
最大航程:1000公里
直-9d直升机
机长:13.46米;机高:3.21米
最大起飞重量:4100公斤
最大平飞速度:280公里/小时
最大航程:860公里
最大续航时间:5小时
说明:补充资料仅用于学习参考,请勿用于其它任何用途。