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间隔层的英文

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"间隔层"怎么读用"间隔层"造句

英文翻译手机手机版

  • compartment
  • spacer-layer
  • wall

例句与用法

  • With the increasing of number of films , the pitch of each au nanoparticles turns larger ; the phenomena of red shift turn weak
    随着间隔层的增加, au纳米粒子之间的间距增大,红移和展宽的现象变弱。
  • Purposes : applying to various cables , spacer layer , non - flammable layer , fireproof layer and insulating layer , also applying to insulated tape for electric machine and electric appliance
    用途:适用于各系列的电缆的间隔层、吸热层、耐火层、绝缘层、也适用于电机电器产品的绝缘带。
  • Modular design concept makes it possible for each individual intelligent bay - level module to independently complete the protection , measurement , control , indication , and communication functions in that bay
    系统采用模块化的设计思想,每个模块单元都是一个独立的间隔层智能单元,可独立地完成该间隔层的保护测量控制信号和通讯等功能。
  • Considering the special demand of substation ' s bay unit and the characteristic of can2 . 0b protocol , a high effective and reliable functional protocol is formulated to fulfill the request of real - time of system
    同时,根据can2 . 0b协议的要求,制定出符合变电站间隔层通信特点的can总线应用协议,具有可靠性好、传输效率高的特点,满足了变电站自动化系统对通信的实时性要求。
  • Considering the special demand of substation ' s bay unit and the characteristic of can2 . 0b protocol , a high effective , reliable , and well functional protocols is formulated to fulfils the demand of real time of system
    在通讯软件处理方面,充分考虑到变电站间隔层的具体要求,同时结合can2 . 0b协议的特点,制订了一份能够充分满足系统要求的、较高效率及可靠性的通讯协议,满足了系统对实时性的要求。
  • With development of technology for substation automation , neither the traditional relay protection or monitoring device lonely nor the communication way of bay units is very difficult for the development and for the increase of real - time data of monitoring system
    随着变电站自动化技术的发展,传统功能单一的保护装置或是测控节点已经很难满足发展的需要。同时变电站间隔层传统的通讯方式,也难以满足由于变电站自动化技术发展所带来的实时监控系统不断增多的数据要求。
  • This paper is about the study on the debugging and maintenance of substation automation system the author analyzes and compares the present debugging interface of microprocessor - based protection relays through summarizing the debugging and maintenance of routine substation automation system , indicates the advantage of software debugging interface based on the pc in allusion to the characteristics of the distributed substation automation system , the author presents the design idea of programming the debugging software for the intelligent devices , the monitoring station and the communication network based on the object - oriented programmable technology this method may simplify the workload of debugging and maintenance of substation automation system greatly , shorten the time limit for building and debugging of substation automation system and improve the security and the stability of system , therefore it is of great useful value
    作者通过归纳总结常规变电站自动化系统的调试方法和维护手段,分析比较了现有的微机保护调试界面,指出了基于pc机的软件化调试界面的优越性。针对分层分布式变电站自动化系统的特点,提出了利用面向对象编程技术,编制间隔层智能装置和变电站层监控系统及通讯网络层报文监视的智能化调试软件的设计思想。该方法可大大简化变电站自动化系统的调试和维护工作量,进一步缩短变电站自动化系统的安装调试工期,提高系统运行的安全性与稳定性,具有很大的实用价值。
  • The calculated density of mgf2 with iad was increased from 0 . 70 for conventional process to 0 . 97 . meanwhile we find that the spacer layer has a great influence on the spectral shift . the further the layers are away from the spacer , the less the effect ; in the same way , the iad reduces the spectral shift of nb205 / sio2 narrow band interference filters from 29 . 4nrn to 12 . 4nm ; the iad reduces the spectral shift of tio2 / sio2narrow band interference filters from 24 . 7nm to 8 . 4nm
    同时发现间隔层对光谱漂移的影响最大,越远离间隔层的膜层,其影响越小;而nb _ 2o _ 5 sio _ 2多层膜窄带干涉滤光片漂移从常规工艺的29 . 4nm降到12 . 4nm ; tio _ 2 sio _ 2多层膜窄带干涉滤光片漂移从常规工艺的24 . 7nm降到8 . 4nm 。
  • On the base of investigating the research status of adptive protection system , an adaptive protection system of power supply and distribution line of 35kv or under 35kv is constructed based on devicenet fieldbus , industrial ethernet and the offered system ’ s overall structure . it is composed of production process level , bay level , substation level and central control center level
    在充分调研国内外自适应保护系统研究现状的基础上,基于devicenet现场总线与工业以太网以及给出的系统体系结构,构建了适用于35kv及以下电压等级由生产设备层、间隔层、变电站层与集控中心层组成的供配电线路自适应保护系统。
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