traction power中文,traction power的意思,traction power翻译及用法

2025-01-06 21:05 浏览次数 2

traction power

英[ˈtrækʃən ˈpauə]美[ˈtrækʃən ˈpaʊɚ]

牵引力

traction power 片语

片语

Traction And Power Calculation牵引力及功率计算

Traction power inspection电力检测

traction motor power行走电机功率

traction force牵引力

traction power supply牵引供电

Back traction power后牵引功率

traction motor power supply system牵引电动机供电制式

traction and power supply牵引供电

Front traction power kw前牵引功率

traction power generation牵引电能的产生

hauling power牵引力

traction power 例句

英汉例句

  • All-controlling power electronics device IGBT in traction power transmission and transformation of power transmission and active filter etc widely application.

    全控型电力电子器件IGBT在牵引电传动电能传输与变换、有源滤波等领域得到了广泛的应用。

  • The traction power rectifier is the key equipment in the circuit of diesel locomotive with electric transmission.

    牵引整流柜是电传动内燃机车的主电路的的整流设备。

  • It is significant in design of traction power supply systems and evaluation of relative power quality problems to build a proper electric load model for the electric multiple units (EMU).

    动车组电气负荷建模对牵引供电系统的设计以及电能质量相关问题的评估具有重要意义。

  • The section post of electrified railway is the important establishment of the traction power supply system.

    电气化铁道分区所是牵引供电系统中重要的供电设施。

  • The harmful effects brought by reactive power, harmonics and negative sequence usually be evaluated on some sensitive power system nodes and be comprehensive solved in the traction power system.

    无功、负序和谐波的不良影响需要在电力系统进行评估,在牵引供电系统中采取技术措施以期综合解决。

  • In order to save power and use fuel more efficiently, the relationship between the rotator's traction power coefficient and the rotator width was studied in this article.

    为节省动力和更有效地利用燃料,对旋耕机的牵引功率利用系数与旋耕进距的关系进行了研究。

  • The load characteristics of the traction power supply system are illustrated for the electrified railways.

    这个特性,在印刷时,十分重要,因为它控制油墨的牵引力,而牵引力是彩色平的重要因素。

  • For the rapidity and traffic density of trains on high-speed railway, larger traction power is needed, so the electric power supply is adopted.

    高速铁路列车速度快、行车密度大,要求牵引功率高,电力牵引成为高速铁路动力牵引的必然选择。

  • The paper discusses the affection of fault location of at traction power network by factors of at leakage, mutual induction between up and down line and rail-ground leakage admittance.

    本文讨论了AT漏抗、上下行互感、轨地泄漏导纳等因素对AT牵引网故障测距的影响。

  • On the other hand, since traction power supply network is a AC-DC network, its running modes are complicated.

    另一方面,地铁牵引供电网络是一个交直流混合的网络,运行方式较为复杂。

  • Traction transformer is the most important electrical equipment of traction substation. Also traction transformer protection device is the foundation of safe and stable traction power supply system.

    牵引变压器是牵引变电站中最重要的电气设备,牵引变压器保护装置是整个牵引供电系统安全稳定运行的基础。

  • With the rapid development of subway, it is necessary to consummate the protection for DC traction power supply system.

    随着城市地铁的大力发展,研制更加完善的直流保护正是应时之需。

  • Uses in the electric vehicle, the electrically operated bicycle, plate-type and the fork type storage battery car, the industry and mining railroad traction power source.

    用于电动车辆、电动自行车、平板式和叉式电瓶车、工矿机车动力电源。

  • The design of 16v240zje and 12v280zj diesel engines have been modified and tested in highland environment and prove to meet the requirements of the traction power for Xining-Lhasa railway.

    通过对16 V 2 40zje及12v 2 80zj两种柴油机进行的适应高原环境的改进设计,完全可以达到青藏铁路对内燃牵引动力的要求。

  • So the investment and running costs of the traction power supply system will be reduced sharply after employing ac drive system for rolling stocks.

    因此采用交流传动后可以减少电力牵引供电系统的投资并大大降低线路的运行费用。

  • Along with the development of railway and power grid, a new traction mode, so called two-phase ac traction power supply mode, is adopted in China.

    随着我国电网的发展和铁路建设的需要,电气化铁路采用了两相交流供电系统直接并入电力输电网的牵引模式。

  • The electric traction power supply system is shouldering the duty of uninterrupted power supply to the electric locomotive, it is the bridge between the electrical power system and users.

    电力牵引供电系统担负着向电力机车不间断供电任务,乃是电力系统与用户间的桥梁。

  • According to the analyzing lightning performance of HV transmission line, the paper evaluates lightning performance of traction power network by using electromagnetic transient simulation program.

    本文通过借鑒高压输电线路的耐雷分析手段,运用电磁暂态程序对牵引网的耐雷性能进行评估。

  • This article introduces the traction power supply system in Wuhan, especially the electrical and mechanical indices of aluminum -composite conductor rail and its accessories.

    本文介绍了武汉市轨道交通的牵引供电系统,重点介绍了钢铝复合接触轨及其附件的电气和机械性能指标。

  • It analyses the rail transit DC traction power supply system voltage type frame protect device and rail voltage limited device matching problems that solve their adjusting value and time.

    分析了轨道交通直流牵引供电系统的直流设备电压型框架保护装置与轨道电位限制装置定值和时间配合存在的问题及解决办法。

  • Three types of traction power are further compared both economically and technically.

    并进一步对三种牵引动力作了技术经济比较。

  • Based on analysis on the trend of structural regulation of national energy resources, the necessities of using electric power supply as traction power for railways are expounded.

    在分析我国能源结构调整趋向的基础上,阐述了我国铁路应以电力作为牵引动力的必要性。

  • Using the knowledge of linearity algebra, the dynamic mathematical model for metro traction power system is founded as per the actual requirement of engineering.

    利用线性代数等知识,根据实际工程需要,建立了地铁牵引供电系统的动态数学模型。

  • The paper presents the implementing methods of graph-picture management sub-system in traction power supply management system by adopting multi-tier distribution structure technology.

    介绍了采用多层分布式技术实现牵引供电运营管理系统中图形图片管理子系统的方法。

  • The significance of electrical protection and definite value of DC traction power supply system for metro is illustrated.

    阐明地铁直流牵引供电系统电气保护设置与定值的重要性,着重论述地铁电气保护设置的主要原则。

  • The complete calculation methods of traction power supply for urban mass transit are established by using the calculation methods presented in this paper and the calculation methods currently in use.

    给出的计算方法可与现行的城市轨道交通牵引供电计算方法相结合,构成完整的牵引供电计算方法。

  • Fault detection on the traction power supply system mainly includes three steps: signal acquisition, signal processing and analysis, fault diagnosis.

    对牵引供电系统进行故障检测主要包括三个步骤:信号采集、信号处理与分析、故障诊断。

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