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Underground urban distribution cables, ampacity analysis and capacity improvements in Seattle city light system

机译:地下城市配电电缆,高处理分析和西雅图城市光线系统的能力改进

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In analyzing an underground power system, one of the most important but frequently unknown or assumed values is the de-rated Ampacity of underground feeder cables. Power engineers customarily refer to tables and select a previously calculated Ampacity de-rating based on specified duct bank configurations and specified load factors. However, for actual duct bank configurations with different numbers of cables installed as well as for cases where several ducts and heat sources coexist, de-rated Ampacity numbers from tables are inaccurate. This presents concerns for utilities that use Ampacity values in load flow calculations. Since 1996, Seattle City Light (SCL) has been using an Ampacity software (referred as AMPSOFT) to model and understand the feeder Ampacity for locations such as substation feeder getaways or other congestion in distribution system. This paper presents results of the application of Ampacity evaluation to one part of a utility distribution system, network distribution. Topics covered include impacts of steam and transmission lines on ratings, planning additions, Site evaluations for new substations, field calibrations, soil thermal resistivity, emergency ratings, and suggestions for future work. While this study is limited to Network distribution, the results have general applicability to all underground distribution.
机译:在分析地下电力系统时,最重要但经常未知或假设的值之一是地下馈线电缆的缩小额定高度。电力工程师通常指的是表,并根据指定的管道组配置和指定的负载因子选择先前计算的安培脱名。然而,对于具有不同数量的电缆的实际管道配置以及安装有多个管道和热源共存的情况,从表中的脱额计量的余量编号是不准确的。这提出了在负载流程计算中使用余处值的公用事业的担忧。自1996年以来,西雅图城市灯(SCL)一直在使用Ampacity软件(称为AMPSoft)来模型,了解变电站饲养者逃生或在分配系统中的其他拥塞等地点的馈线余量。本文介绍了对公用事业分配系统的一部分,网络分布的应用程序的应用。涵盖的主题包括蒸汽和传输线对评级的影响,规划添加,用于新变电站的现场评估,现场校准,土壤热阻率,应急评级和未来工作建议。虽然该研究仅限于网络分布,但结果对所有地下分配都具有一般适用性。

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