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Practical design considerations for application of GIS MV switchgear

机译:GIS MV开关设备应用的实际设计注意事项

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In a biotechnology facility project, the decision was made to require arc resistant medium voltage (MV) switchgear for the safety of operating personnel. The available service voltage was 26.4 kV, limiting the availability of proven designs of arc-resistant switchgear. As a result, the owner considered use of medium voltage gas insulated switchgear (GIS) with vacuum circuit breakers. Once this decision was made, consideration was given to using the same class of switchgear for the 4.16 kV voltage equipment in the facilities. This offered advantages of uniformity, commonality of spares, and simplification of operator training. This paper focuses on the rationale for selection of GIS switchgear, and the design considerations that had to be addressed as the project moved from concept to installation to operation. Among the issues discussed are: space requirements for conventional and GIS equipment; arc resistant performance of GIS equipment; design commonality between 4.16 kV and 26.4 kV equipment; installation (cable issues, foundations, workspace, etc.); environmental considerations; total cost of ownership; reliability/availability; and operational experience.
机译:在一个生物技术设施项目中,为确保操作人员的安全,决定要求使用耐弧中压(MV)开关设备。可用的服务电压为26.4 kV,从而限制了可靠的耐弧开关设备设计的可用性。因此,所有者考虑使用带有真空断路器的中压气体绝缘开关设备(GIS)。做出此决定后,将考虑为设施中的4.16 kV电压设备使用同一类开关设备。这提供了统一性,备件通用性和简化操作员培训的优势。本文重点介绍了选择GIS开关设备的基本原理,以及在项目从概念到安装再到运营过程中必须解决的设计注意事项。讨论的问题包括:常规和GIS设备的空间要求; GIS设备的耐电弧性能; 4.16 kV和26.4 kV设备之间的设计通用性;安装(电缆问题,地基,工作区等);环境方面的考虑;总拥有成本;可靠性/可用性;和运营经验。

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