tower body

英 [ˈtaʊə(r) ˈbɒdi] 美 [ˈtaʊər ˈbɑːdi]

网络  塔体

化学



双语例句

  1. The tower body is developed through a performative outer skin that merges programmatic, structural and building envelope requirements.
    塔体是通过一个表演的皮肤外,合并方案,结构和围护结构的要求。
  2. An Exploratory Investigation for Calculation Method of Horizontal Acting Force Produced by the Action of Tower Vessels on Frame and Local Stability of Tower Body
    置于框架塔器对框架的水平作用力计算及塔体的局部稳定性探讨
  3. The structure of tower body adopts structural steel frame, its curb plate is fiberglass reinforced plastic structure.
    塔体结构采用钢结构框架结构,塔体围护板为玻璃钢结构。
  4. Suzhou Huqiu tower is famous world culture heritage, yet tower body glacis.
    摘要苏州虎丘塔是著名的世界文化遗产,但塔体不断缓慢倾斜。
  5. The utility model is proper in configuration, smart in conceive, convenient to dispose pollutants and clean due to the inclined cooling water plate under the tower body and worth applying.
    本实用新型结构合理,构思巧妙,由于设于塔体下方的冷水盘采用倾斜设计,故便于排污、清洗,极具推广价值。
  6. Analysis on Discharge towards Tower Body by Middle Phase Conductor of 330 kV Transmission Lines
    一起330kV线路中相导线对塔身放电故障分析
  7. The tower plates are connected with the tower body by means of welding or bonding or other fixed modes through screws.
    塔板与塔体之间通过焊接或是粘结、螺丝等其他固定方式连接。
  8. Structure and design of tower body, packing, packing support and liquid distributor for a new type of packed tower are described.
    介绍了填料洗涤塔的塔体、填料、填料支承装置和液体分布装置的结构和设计。
  9. Installation technology of well core tube in tower body was introduced, including construction with attachment tower cranes and high strength bolts.
    介绍了塔身井道核芯筒安装技术,包括核芯筒内部附着式塔吊及高强螺栓施工。
  10. On each face of the tower body of the remaining three floors, there is a Buddha statue engraved on it, all sitting there, very vivid.
    余上三层,塔身每面镌有佛像一尊,全伽趺坐式,形象生动。
  11. The monitoring results show that the uneven settlements of tower crane base and data fluctuation range of tower body deformation are small enough to meet safe usage requirement.
    通过对各测点监测结果的对比分析,得出塔式起重机底座的不均匀沉降和塔身位移变形数据波动范围均不大,满足塔式起重机安全使用限值要求;
  12. These methods are not only suitable for the rail frame in construction escalator, but can also be applied to the tower body of attached tower crane and the rail bracket in construction escalator.
    这些方法不仅适用于倾斜式施工电梯的导轨架,也适用于附着式塔式起重机的塔身和直立式施工电梯的导轨架。
  13. Non-linear study of tower body geometry in tower crane
    塔式起重机塔身的几何非线性研究
  14. Take the triangular tower made of 60 formed Structural Steel as an example, this article demonstrates the advantages of using formed section steel for steel towers by analyzing the parameters on a section of the main tower body and its special points for supporting weight.
    以60°冷弯型钢三角形铁塔为设计实例,对其主柱截面参数、受力特点进行计算分析,论证了冷弯型钢应用在通信铁塔中的优势。
  15. According to the accident survey and the field test data, the paper analyses the reason of tower body discharge due to jumping wire, solves the problem fundamental way to reduce wind oscillation of jump line insulator string and the relaxation degree of jump line.
    根据事故概况及现场测试数据,通过计算就跳线对塔身放电原因进行了认真分析认为解决引流跳线对塔身放电最根本的措施是要减小跳线绝缘子串的风偏摆动和减小跳线的松驰度。
  16. The paper research the endurance strength of coke tower body's material and applied it to the residual life estimation of coke tower, the research is of great importance in analytical theory and engineering practice.
    本论文系统的研究了焦炭塔塔体材料的持久强度并将持久强度应用到焦炭塔的剩余寿命评估中,具有重要的理论意义与实际工程意义。
  17. The nonlinear deformation in tower body of self-elevating tower crane under load is characterized by the horizontal displacement and tilt ratio of its top.
    自升塔式起重机在载荷状态下,塔身非线性变形的主要表征是其顶部的水平位移和斜率。
  18. In order to get more accurate stress solution, sub-models of some key parts such as work platform, pin shaft connection between slew platform and tower body, high strength bolt connections between tower sections are also established, strength conditions are verified.
    为了得到更精确的应力解,还对极端工况下工作平台、回转平台与塔身之间销轴连接、塔节之间高强螺栓连接等多个关键部位建立了子模型,并进行了强度校核。
  19. Simple solution of nonlinear deformation in tower body of self-elevating tower crane
    自升塔式起重机塔身非线性变形的简便解法
  20. Stress testing on tower body is one of the key technologies to know about working condition of the tower.
    塔体测试是了解塔体运行情况的一项关键技术,其中应力测试是塔体测试的一项关键内容。
  21. The non-linear deformation equation for self-lifting tower body with shear displacement taken into account is presented in this paper for engineering practice.
    本文给出了考虑剪切变形后自升式塔机塔身非线性变形的求解公式,供工程技术人员在施工中应用。
  22. This paper adopted the finite element method to calculate vertical seismic response of the host tower body of the 610-meter high Guangzhou New TV Tower, which is the background engineering of this paper.
    本文以广州将要兴建的高度高达610米的广州新电视塔为工程背景,采取有限元的方法具体计算了主塔体的竖向地震作用。
  23. Through analysis of tower-collapsing accident caused by wind-disaster and ice-disaster in recent years, this thesis puts forward that tower body structural model should satisfy an idea of "integral mechanism" under super-design wind speed and super-design ice thickness;
    通过对近年来风灾倒塔和冰灾倒塔事故分析,提出塔体结构模型在超设计风速和超设计覆冰厚度情况下应满足建筑物整体机制的设想;
  24. Calculation of tower crane top displacement in variable-sectioned tower body with finite difference method
    应用有限差分法计算塔式起重机变截面塔身顶部的水平位移
  25. In lightning protection project design, employing an equivalent circuit model is justified by analysis. A "Tower Body-Grounding Network" entire network system, composed by the base station tower body and grounding network, is established.
    分析了在防雷工程设计中采用等效电路模型的合理性,并建立了由基站铁塔塔体及接地网构成的塔体&接地网整体网络系统模型。
  26. When it happens, a serial of problems becomes the key of lightning protection ability and design of the mobile communications base station: lightning current distribution of the tower body and of the grounding network, leakage current distribution and ground potential rise of the grounding network.
    雷击基站铁塔时,塔体上的雷电流分布,基站接地网上的雷电流分布、入地电流分布和地电位升等问题是移动通信基站防雷能力和防雷设计的关键。
  27. Deflection control, according to the tower body space geometric relationships between components of the tower body to root for variables on or advocate material section commands flow, a 3-d finite element model, through the geometric nonlinear analysis, meet the minimum requirements that deflection root open.
    挠度控制方面,根据塔体各构件空间几何关系,编制了以塔体根开和主材截面为变量的命令流,建立三维有限元模型,通过几何非线性分析,得出满足挠度要求的最小根开。
  28. But limited to a variety of reasons, this article only optimized boom design, has not been on the tower body, tower caps, arm balance to optimize the analysis of such components, which need to be further in-depth study.
    但限于多种原因,本文只对起重臂进行了优化设计,尚未对塔身、塔帽、平衡臂等构件进行优化分析,这有待于进一步深入研究。