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    • 3. 发明公开
    • FURNACE COOLING PANEL MONITORING SYSTEM
    • 炉内冷却面板监控系统
    • EP3169961A1
    • 2017-05-24
    • EP15821860.2
    • 2015-07-13
    • Trapp, Mark, Edward
    • Trapp, Mark, Edward
    • F27B3/28F27B3/08F27B3/10
    • F27D21/0014C21C5/4673C21C2005/5288F27B3/24F27B3/28F27B14/20F27B2014/0837F27D11/08F27D21/04F27D2009/0013F27D2019/0025Y02P10/216
    • A furnace cooling panel monitoring system utilizes individual cooling panel data to produce critical monitoring data. An exemplary cooling panel monitoring system utilizes the input from a plurality of temperature sensors configured to accurately measure the temperature change of cooling fluid flowing through each individual panel. The change in temperature from the inlet to the outlet of a cooling panel along with the flow rate of the cooling fluid through the panel can be used to calculate the a heat energy dissipation rate of the cooling panel, or heat flux. The flow rate through individual panels is determined by K-values or resistance to flow constants for a given cooling panel. The heat energy dissipation rate for individual panels can be provided to a user through a computer implemented monitoring program in real time. Alerts may be initiated by the computer implemented monitoring program when a threshold value has been exceeded.
    • 炉子冷却面板监控系统利用独立的冷却面板数据来产生关键的监控数据。 示例性的冷却面板监视系统利用来自多个温度传感器的输入,该多个温度传感器被配置为精确地测量流过每个单独面板的冷却流体的温度变化。 可以使用从冷却面板的入口到出口的温度变化以及通过面板的冷却流体的流量来计算冷却面板的热能耗散率或热通量。 通过独立面板的流量由给定冷却面板的K值或流动阻力常数决定。 单个面板的热能耗散率可以通过计算机实现的监控程序实时提供给用户。 当超过阈值时,警报可以由计算机实施的监测程序启动。