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所在平台: Udemy |
课程主页: https://www.udemy.com/course/gas-insulated-substation-electrical-engineering-marvel/
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课程名称:气体绝缘变电站——电气工程的奇迹 概述: 本课程详细介绍了气体绝缘变电站(GIS)的相关知识。气体绝缘变电站是高压变电站的一种,其主要导电结构置于一个密封环境中,使用六氟化硫(SF6)气体作为绝缘介质。与之相对的是空气绝缘变电站(AIS),后者使用大气空气作为绝缘媒介,主要为户外设施。 培训师介绍: 培训师在运营与维护、安装、测试、项目管理、咨询、监督、变电站自动化等领域拥有超过21年的丰富经验。他曾在西门子沙特阿拉伯工作,参与了巴基斯坦和沙特阿拉伯的20多个高压变电站项目,擅长保护系统、变电站自动化系统、电力生产系统的设计、测试和调试等多方面。 课程涵盖主题: - GIS系统概述 - 混合GIS变电站 - GIS系统的优缺点 - SF6气体、泄漏探测和气体监测系统 - GIS的物理布置 - 国际标准 - GIS与AIS的经济性比较 - 气体污染物及其氧化 - GIS系统的封闭模块 - GIS系统中的导体 - GIS系统使用的断路器和变压器 - GIS系统中使用的开关和避雷器 - GIS系统中的连接方式 - GIS的控制系统 - 测试和安装 - GIS的操作程序 气体绝缘变电站的起源: GIS技术最早起源于20世纪60年代的日本,主要是为了在空间受限的环境中开发占地面积极小的变电站。GIS技术在后续几年被逐渐采用到其他国家,尤其是在空间有限的地方。 优势与应用: GIS相较于AIS具有更小的占地要求,适用于房地产成本较高或环境条件恶劣的地区(如极地或沙漠)。GIS的设计往往是气体紧密模块化,确保气体的独立监测和高压安装的安全性。同时,GIS在城市密集区域的建设中,能够避免昂贵的征地成本和政治敏感问题。 总之,本课程将为电气工程师和相关领域的专业人士提供对气体绝缘变电站的全面理解,帮助他们掌握这一现代电气基础设施的设计与实施要点。
Dear All,This course provides an detail overview of (GIS) or Gas Insulated Substations. A gas insulated substation (GIS) is a high voltage substation in which the major conducting structures are contained within a sealed environment with a dielectric gas known as SF6, or sulfur hexafluoride gas as the insulating medium. In comparison, a conventional (AIS) or Air-Insulated Substation, uses atmospheric air as the dielectric gas medium, as these types of substations primarily consist of outdoor facilities.Trainer Introduction:Your trainer brings over 21 years of experience in operation & maintenance, erection, testing, project management, consultancy, supervision, substation automation, SCADA, and commissioning. With a background spanning power plants, high voltage substations, and HVDC installations, he has worked with renowned organizations such as Siemens Saudi Arabia. He has been involved in over 20 high-voltage substation projects across Pakistan and Saudi Arabia.His expertise encompasses a wide range of areas including protection systems, substation automation systems, design, testing, and commissioning of power generation systems, high voltage switchgear, protection relays, and control schemes. He has a proven track record of leading testing and commissioning teams for implementing electrical infrastructure projects for industrial clients, including steel and petrochemical industries.Topics covered in this course: • Overview of a GIS System • Hybrid GIS Substations • Advantages and Disadvantages of GIS Systems • SF6 gas, leak detection, and gas monitoring systems • Physical arrangements used in GIS • International Standards on GIS • Economics of GIS vs AIS • Contaminants and Oxidation in the Gas • Enclosure Modules for a GIS System • Conductors in a GIS System • Circuit Breakers and Transformers used in GIS Systems • Switching and Arrester Devices used in GIS Systems • Connections in a GIS Systems • The Control System of a GIS • Testing and Installation • Operational Procedures for a GISWhat is a Gas Insulated Substation? A gas insulated substation (GIS) is a high voltage substation in which the major conducting structures are contained within a sealed environment with a dielectric gas known as SF6, or sulfur hexafluoride gas as the insulating medium. In comparison, a conventional (AIS) or Air-Insulated Substation, atmospheric air is the dielectric gas medium, as these types of substations are almost always located at outdoor locations.Origin of GIS technology GIS technology originally began in Japan in the 60's, where there was a critical need to develop substations with a greatly reduced footprint. GIS was slowly adopted by various other countries over the following years. After about 5 years of evaluation and testing, GIS system construction increased to about 20% of new substations in countries with severe space limitations. For countries with space readily available, the higher cost of GIS relative to AIS has limited its adoption to special needs cases. In the US, only about 2 to 5% of new substations are constructed as GIS.Clearances for GIS, roughly a tenth of that for AIS With GIS technology, the clearance needed for phase to phase or phase to ground for all equipment is much less than that of an AIS or air insulated substation. The total space required for a GIS is roughly a tenth of that needed for a conventional AIS facility. While the conventional, AIS requires several feet of air insulation to isolate a conductor, SF6 gas insulation only needs inches, allowing a GIS facility to fit into areas far smaller than that of a AIS facility. A GIS is mainly constructed where real estate space is expensive or scarce.Environmentally Protected System GIS technology is a good choice to use in artic or desert locations, as it can be enclosed in a building which is environmentally protected from extreme conditions. In addition to protecting the system components from extreme heat and cold, GIS technology encloses the electrical components within a Faraday cage which shields the system from potential lightning strikes.Gas Tight Modular Design Each compartment housing the live sections of the GIS system is gas tight, with respect to one another. This ensures that the gas is not allowed to pass to an adjacent module, as well as ensures that gas monitoring is independent. ‘O' rings - are installed at the equipment and enclosure flanges to insure the gas tight integrity of the modules. Gas monitoring system - this includes an integrated alarm system, as well as automated tripping and lockout features in case of low pressure conditions due to leakage. This is critical, as when the pressure of the dielectric gases drop, so does the insulating capability of the SF6 gas.High Voltage Installations Gas insulated technology becomes more desirable as the voltage requirements increase. As an example, the footprint of a 765kV conventional substation is considerably large. A station footprint of this sized station would be significantly less were it to employ GIS.Urban Installations GIS technology can be used for installations in areas where the cost of real estate or the aesthetic appeal and safety is a significant consideration. When acquiring land for a conventional AIS station in some densely populated areas, it can be cost prohibitive, politically sensitive (when eminent domain is required to seize the land), or downright impossible to locate. Imagine attempting to build a high voltage AIS in urban areas such as downtown New York city.Expansion of Existing AIS - Mixed Technology Switchgear One approach to the expansion of existing AIS, is mixed technology switchgear (or hybrid GIS.) This approach is especially suitable for the expansion of an existing substation, without requiring large areas of additional real estate, which is often unavailable. This design uses GIS breakers, switches, and voltage/current transformers with interconnections between the breaker positions and connections to other equipment using air-insulated conductors.The GIS System's Foundation GIS systems are usually installed on a monolithic concrete pad or directly on the floor of a housing facility. The system is attached by bolting or welding the GIS support frames to embedded steel plates of beams, or by the use of chemical drill anchors. Expansion Joints Expansion drill anchors - These are not recommended, as the dynamic loading from circuit breaker operations may loosen the expansion anchors over time. Bus expansion joints - This type of expansion joint may be recommended in the large GIS installations. The expansion joints are installed between the various sections of the GIS to adjust to the "fitup" in the field. They can also be installed to address thermal expansion of the GIS system.Thanks