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New alternatives to manage hot surface ignition temperatures for trace heating in explosive atmospheres

机译:用于管理爆炸表面中痕量加热的热表面着火温度的新替代方法

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The design of high temperature electric trace heating in hazardous areas can be a major challenge. This is particularly true when process temperatures approach the area classification limit, restricting the allowable temperature differential between what is heated and the surface temperature of the electric trace heaters. While there are methods that can be applied to address the challenges, they have traditionally been bound by the attributes of the trace heaters. In many cases, this leads to designs that are difficult to install, maintain, and often increases the cost of the overall solution. This paper will present alternative methods to deal with these challenging situations using recently improved heater constructions and controller algorithms. Used with engineering design software that can accurately predict heater surface temperatures, these options provide the design engineer with improved flexibility in creating solutions. Examples of current projects underway will illustrate that designs incorporating these new technologies result in significant improvements in constructability, and a reduction in installed costs over conventional approaches.
机译:危险区域中高温电伴热的设计可能是一个重大挑战。当过程温度接近区域分类极限时,尤其如此,这限制了加热的热量与电伴热加热器的表面温度之间的允许温差。尽管可以采用多种方法来应对这些挑战,但传统上,它们一直受到示踪加热器属性的束缚。在许多情况下,这导致设计难以安装,维护,并经常增加整个解决方案的成本。本文将介绍使用最近改进的加热器结构和控制器算法来应对这些挑战性情况的替代方法。这些选件与可精确预测加热器表面温度的工程设计软件一起使用,为设计工程师提供了创建解决方案时更高的灵活性。当前正在进行的项目示例将说明,结合了这些新技术的设计可显着改善可施工性,并降低安装成本,优于传统方法。

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