板壳结构的英文
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"板壳结构"怎么读用"板壳结构"造句
英文翻译手机版
- shell structure
- "板"英文翻译 board; plank; plate
- "壳"英文翻译 shell; hard surface
- "结构"英文翻译 structure; composition; cons ...
- "壳结构" 英文翻译 : shell structure
- "安全壳结构" 英文翻译 : containment structure
- "半硬壳结构" 英文翻译 : semi-monocoque construction
- "薄壳结构" 英文翻译 : shell co tructio; shell constructions; shell type co truction; shell type construction; thin shell construction; thin shell structures; thin-shell construction
- "单壳结构" 英文翻译 : single-hull structure
- "地壳结构" 英文翻译 : crustal architecture
- "地壳结构层" 英文翻译 : tectosphere
- "个半壳结构" 英文翻译 : saddle tank hull structure
- "核壳结构" 英文翻译 : nuclear shell structure
- "加劲壳结构" 英文翻译 : stiffened shell structure
- "耐压壳结构" 英文翻译 : pressure hull structure
- "烧蚀壳结构" 英文翻译 : ablating shell structure
- "双层壳结构" 英文翻译 : double-skin construction; double-skin structure
- "双壳结构" 英文翻译 : double hull configuration; double hull structure; double-hull structure; double-shelled construction
- "椭圆壳结构" 英文翻译 : elliptical section hull
- "外壳结构" 英文翻译 : containment structure; shell construction
- "硬壳结构" 英文翻译 : monocoque
- "圆柱壳结构" 英文翻译 : cylindrical shell structure
- "柱壳结构" 英文翻译 : cylindrical hull structure
- "锥壳结构" 英文翻译 : conical shell structure
- "不完全壳结构" 英文翻译 : incomplete shell structure
- "平均洋壳结构" 英文翻译 : average oceanic crust structure
例句与用法
- The vibration of plate and shell has been highly concerned
板壳结构的振动问题一直是研究人员关注的课题之一。 - A new method to detect the damage of plate and shell subjected to multi - location damages is proposed
摘要提出一种适用于板壳结构的多位置损伤诊断方法。 - Then , on the basis of the variation of the first mode , the new detecting method is put forward
以此为基础,提出基于一阶振型变化率的板壳结构的损伤诊断方法。 - Therefore , researches of acoustics prediction and designing should be carried out with high demand
因此,有必要对板壳结构的声学预测和设计展开相应的研究。 - Numerical example reveals that the new method can realize the multi - location damage detection of the plate and shell structure effectively , and at the same time simplify the process of the damage detection
算例表明该方法不仅可以准确地完成板壳结构的多位置损伤诊断,并且可以大大简化整个损伤诊断的过程。 - Based on msc / nastran software , by using of pcl language ( patran command language ) , new software of optimum design module was secondly developed for sectional optimization of plate and shell structures
在msc / nastran基础上,利用msc / patran提供的pcl语言,对板壳结构的截面优化的优化模块进行了二次开发。 - On the premise of a given set of material parameter , structural boundary shape and condition , design variables - thickness of plate and shell , is designed to minimize the structural weight subjected to the constraint conditions . 1 . for the problem with size and stress constraints , full stress design method is used to solve the sectional optimization of plate and shell structures
在给定了板壳的材料常数、板壳结构的边界形状和边界条件的前提下,确定表征板壳厚度的设计变量,在满足约束条件下实现结构重量最小: 1 .对于尺寸和应力约束的问题,使用满应力方法求解。 - In order to solve this kind of contradiction , cableway designers have to search for a new way for the design project to analysis and compute which can describe not only the local stress and displacement but also the whole stress and displacement and their distribution rules in the whole structure when the structure is loaded as a whole . this new type of method for design calculation now is got and called finite element analysis method . ,
针对有限元这一应用,国外开发出了这一方法的大型软件包( algorfeas )用于桁架板壳结构分析,本项目研究的就是利用algorfeas软件包,突破传统的方法,对塔架的受力情况和位移进行比较精确的有限元分析。 - Furthermore , the comparison is made between eso and mathematical programming . in continuum structure optimization , eso is applied for topology optimization under the constraints of stress , displacement and frequency . in addition , eso is applied to the optimization for shells reinforced by ribs
在连续体结构优化方面,讨论了几类约束下基于渐进优化方法的连续体拓扑优化,这些约束分别是应力约束,位移约束以及频率约束;利用渐进优化方法,进行了加筋板壳结构的形状优化研究。 - In this paper , a study has been made of analyzing the acoustics and vibration characters of the plate & shell and stiffened plate & shell structures with fea ( finite element analysis ) and basic theories of structural vibration and acoustic radiation , which , to some extent , helps the nonprofessional people understand the acoustical characters of these structures through acoustical means
本文利用有限元方法,结合结构振动与声辐射基本原理,对板壳、加筋板壳结构的声?振特性进行了分析,利用信号处理技术实现结构声?振特性的可听化模拟。在一定程度上,使非专业人士也可以通过声学手段了解结构的声学特性。
- 更多例句: 1 2
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