共查询到20条相似文献,搜索用时 109 毫秒
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中国第一组超导电缆并网运行试验 总被引:1,自引:0,他引:1
中国第一组超导电缆于2004年4月19日在昆明普吉220kV变电站并网成功,并开始向用户供电.本文详细地描述了该电缆并网前后部分试验,如:超导电缆直流电阻测量、超导电缆通流试验、温度、压力和流量的在线监测、绝缘电阻和介损损耗测试等.所有试验结果均显示该电缆技术指标达到实际并网运行要求.超导电缆并网运行成功,标志着我国已经掌握了超导电缆开发能力.本文所提出的超导电缆并网运行试验方法和试验结果为我国进一步开发超导电缆提供了宝贵的经验. 相似文献
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高温超导电缆输电技术作为一种新型电力传输技术,已成为当前电力传输技术的重要发展方向之一.当高温超导电缆运行在电力系统中时,必将经受诸如系统短路故障电流、瞬时大负荷冲击等各种故障电流冲击,高温超导电缆的传输能量较高,一旦发生故障,不仅会对高温超导电缆本体造成损伤,还会严重影响其供电可靠性乃至整个电力系统的稳定性.为保证电力传输系统的安全稳定运行,对超导电缆失超的热过程进行研究是非常有必要的.本文首先介绍了超导电缆失超的暂态热过程数学模型,接着确定了其边界条件,最后在Matlab中,对超导电缆在电流冲击下的热过程进行了仿真研究. 相似文献
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超导电缆作为高温超导技术电力应用的一个主要发展方向,由于其低损耗、大容量、无污染等优点受到越来越多的关注.本文提供了一组比较超导电缆和传统电缆生命周期费用的计算模型,根据该组模型可以对制冷机价格、超导电缆费用、制冷机效率、电缆负荷状态等因素如何影响超导电缆生命周期费用进行分析,为高温超导的产业化发展提供方向.文章最后给出一组超导电缆与传统电缆的比较实例。 相似文献
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近年来高温超导材料研究取得很大进展,它在电力领域的应用研究已受到广泛关注,一些示范样机,诸如高温超导输电电缆、变压器、故障电流限制器、电机和储能装置已经研制成功并投入示范性试验.超导技术是21世纪具有战略经济意义的高新技术,文章将介绍高温超导电力应用研究的新进展及其未来发展的思考。 相似文献
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高温超导电缆终端的研究与开发 总被引:2,自引:0,他引:2
简单介绍了高温超导电缆的终端的基本结构特点与作用等 ;并主要介绍了工业化国家中美国、日本、丹麦等所研制的 HTS电缆终端以及目前我们所研制的终端情况。 相似文献
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L. Bottura 《Physica C: Superconductivity and its Applications》1998,310(1-4):316-326
Stability is one of the key issues in the design of a superconductor, and indeed deserves much attention in the magnet design and analysis. Stability-oriented design procedures and calculations involve the detailed knowledge of the response of the cable to thermal, fluid dynamic and electric transient phenomena that are difficult to tackle analytically in cables. This has justified a significant numerical modelling effort in the field. This paper reviews basic stability models and presents selected advances in the methods developed and results obtained. A unified, semi-continuum model is proposed for stability analysis of cables. The time scales of relevance during stability transients are identified and analysed. 相似文献
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The transmission properties of Fibonacci quasi-periodic one-dimensional photonic crystals (1DPCs) containing superconducting material are theoretically investigated based on the transfer matrix method. It is shown that the 1DPCs can possess a same photonic band gap property as the periodic structure superconducting PC. The results of transmittance spectra show that the cutoff frequency can be manipulated through the thicknesses of the superconductor and dielectric layers as well as the ambient temperature of the system. It is observed that the shift of cutoff frequency becomes more noticeable by adjusting the thickness of the superconductor layer than that of the dielectric one. Furthermore, the cutoff frequency becomes very sensitive when the system temperature is tuned to close vicinity of the critical temperature of the superconductor. 相似文献
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饱和铁心型超导限流器具有限流功能可靠、输电稳态损耗小、限流恢复时间短等优异特性。根据其工作原理,一方面,用于直流励磁的超导绕组自身不承受短路电流冲击,这避免了其它类型超导限流器中由于超导绕组失超所带来的诸多技术难题;另一方面,其主体电抗器可以借鉴成熟的铁心电抗器技术。因此,饱和铁心型超导限流器的以其优异的性能特性和成熟的工程实现技术,成为迄今为止人们研究的各类超导限流器中的最具实用价值的一种。在电网容量不断扩大,智能化水平不断提高的今天,饱和铁心型超导限流器有非常广阔的应用前景。文中将叙述饱和铁心型超导限流器的基本原理、结构形式、功能特性,并对已在云南普吉变电站挂网运行的35kV/90MVA超导限流器进行简要介绍。 相似文献
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Finite-difference time-domain studies of low-frequency stop band in superconductor-dielectric superlattice 总被引:1,自引:0,他引:1 下载免费PDF全文
<正>The transmission coefficients of electromagnetic(EM) waves due to a superconductor-dielectric superlattice are numerically calculated.Shift operator finite difference time domain(SO-FDTD) method is used in the analysis.By using the SO-FDTD method,the transmission spectrum is obtained and its characteristics are investigated for different thicknesses of superconductor layers and dielectric layers,from which a stop band starting from zero frequency can be apparently observed.The relation between this low-frequency stop band and relative temperature,and also the London penetration depth at a superconductor temperature of zero degree are discussed,separately.The low-frequency stop band properties of superconductor-dielectric superlattice thus are well disclosed. 相似文献
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N. Fujiwara H. Hayashi S. Nagaya Y. Shiohara 《Physica C: Superconductivity and its Applications》2010,470(20):980-985
A new Japanese national project, called M-PACC, to develop high temperature superconducting electric power devices started in June last year (FY2008–FY2012). This project aims to develop three different types of electric power devices that are expected to provide stable power supplies with large capacity and small size by using YBCO coated conductors. The first program is the development of a 2 GJ class superconducting magnetic energy storage system to control stable electric power systems. It is planned to develop several sets of element coils for a 20 MJ class system as a technological feasibility study for a 2 GJ class coil. The second program is the development of two different types of power cables with higher performance than existing power cables; one is a three-core 66 kV–5 kA class large current cable and the other is a single-phase 275 kV–3 kA class high voltage cable. These cable were required several technological developments, namely, large current and low AC loss, high voltage insulation and low dielectric loss, and power and heat balance for both cables. The third program is the development of a 20 MVA class power transformer with 66 kV/6.9 kV as a distribution transformer. In this project, power transformer systematization technology including 2 kA class large current coil technology, anti short-circuit wire winding technology, AC loss reduction technology, and winding technology will be developed. 相似文献