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Mineral insulated heating cable sheath temperature test methods and design optimization techniques

机译:矿物绝缘加热电缆鞘温度试验方法和设计优化技术

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Methods to measure and predict maximum sheath temperatures of mineral insulated (MI) heating cable vary by testing agency, standards writing body and manufacturer. This has resulted in confusion in the industry about the best approach to predict sheath temperatures of MI heat tracing cables. This paper presents an analysis of two different test methods for sheath temperature prediction. The test methods studied are commonly known in the industry as the ‘pipe test’ and the ‘plate test’. The paper demonstrates that the pipe test has significant variation in the measured sheath temperatures in successive test runs while the plate test produces a much more repeatable and accurate result. The paper proposes the use of the plate test as a preferred method to measure and predict maximum sheath temperature. As a related topic, the paper also presents general considerations for optimizing designs that will reduce costs and improve constructability of electrical heat tracing designs using MI heat tracing cables. A case study is presented to demonstrate application of these design optimization techniques.
机译:测量和预测矿物绝缘(MI)加热电缆最大鞘温度的方法通过测试代理,标准写作体和制造商变化。这导致了行业困惑了预测MI热追踪电缆的鞘温度的最佳方法。本文介绍了两种不同的鞘温度预测试验方法的分析。研究的测试方法通常是在工业中已知的“管道测试”和“板式测试”。本文表明,管道测试在连续测试运行中测量的鞘温度具有显着变化,而板式测试产生更加可重复和准确的结果。本文提出使用板试验作为测量和预测最大鞘温度的优选方法。作为相关主题,本文还提出了优化设计的一般考虑因素,这些设计将降低成本的成本,提高电热追踪设计的结构使用Mi热追踪电缆。提出了一种案例研究以证明这些设计优化技术的应用。

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