首页> 外文会议>Industry Applications Conference, 1996. Thirty-First IAS Annual Meeting, IAS '96., Conference Record of the 1996 IEEE >Distributed measurement of conductor temperatures in mine trailing cables using fiber-optic technology
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Distributed measurement of conductor temperatures in mine trailing cables using fiber-optic technology

机译:使用光纤技术分布式测量矿用拖曳电缆中的导体温度

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Mine trailing cables operated above safe thermal limits can cause premature insulation failure, increasing electrocution and fire hazards. Previous US Bureau of Mines (USBM) Pittsburgh Research Center research showed that, under static test conditions, electrical current levels permitted under present regulations may not limit cable temperatures to less than the 90/spl deg/C rating of reeled trailing cable. The USBM began a study of thermal characteristics of reeled trailing cable using dynamic test conditions more representative of field conditions where operators constantly reel in and pay out cable. This research is in support of efforts by industry associations and the Mine Safety and Health Administration to establish safety guidelines for cyclically rated reeled machines. The paper describes a unique approach to measuring temperatures within reeled cable under dynamic test conditions. Fiber-optic sensors embedded within the metallic conductors measure temperatures at 1-m intervals along the entire length of cable. Temperature measurements are reported to be accurate to within /spl plusmn/1/spl deg/C. The test setup requires access to only one end of the trailing cable, allowing researchers to freely reel in and pay out cable while temperature measurements are made, simulating field conditions. Manufacture of a fiber-optic-embedded trailing cable is described along with initial test results that indicate the fiber optic approach is viable.
机译:超过安全温度极限运行的矿用拖曳电缆会导致绝缘过早失效,增加触电致死和火灾隐患。美国矿产局(USBM)匹兹堡研究中心先前的研究表明,在静态测试条件下,当前法规允许的电流水平可能不会将电缆温度限制在绞线拖曳电缆的90 / spl deg / C以下。 USBM使用动态测试条件开始了对拖曳式拖缆的热特性的研究,该条件更能代表操作员不断卷入和放出电缆的现场条件。这项研究支持行业协会和矿山安全与健康管理局(Mine Safety and Health Administration)为建立周期性额定收卷机的安全准则而做出的努力。本文介绍了一种在动态测试条件下测量绕线电缆内温度的独特方法。嵌入在金属导体中的光纤传感器沿电缆的整个长度以1-m的间隔测量温度。据报道温度测量精确到/ spl plusmn / 1 / spl deg / C。测试设置只需要接近尾随电缆的一端,允许研究人员在进行温度测量时自由地收放电缆,并模拟现场条件。描述了嵌入光纤的拖曳电缆的制造以及表明光纤方法可行的初始测试结果。

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