首页> 外文会议>ASME international conference on energy sustainability >DEVELOPING AN INVERSE HEAT CONDUCTION ANALYSIS TOOL FOR REAL TIME HEAT FLUX ESTIMATION IN DIRECTIONAL FLAME THERMOMETER APPLICATION
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DEVELOPING AN INVERSE HEAT CONDUCTION ANALYSIS TOOL FOR REAL TIME HEAT FLUX ESTIMATION IN DIRECTIONAL FLAME THERMOMETER APPLICATION

机译:开发用于方向火焰温度计的实时热通量估算的逆热传导分析工具

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Accurate measurement of heat flux and temperature can significantly affect the energy usage in several industrial applications, including furnace operation, metal processing, fire safety tests and more. Directional Flame Thermometers, or DFTs, offer the ability to use both temperature and heat flux measurements for furnace control. Currently, analysis of dynamic temperature data from the DFTs to compute heat flux information must be performed off-line at the conclusion of data-gathering by using software tools such as IHCP1D. Availability of a near real-time algorithm for accurate reduction of the data will allow for continual monitoring of the furnace during operation. This will result in better control over the process and significant savings in energy and cost. In this paper, a filter form of the inverse heat conduction algorithm is developed for utilization in DFTs. The algorithm is based on linearized solutions of the direct heat equation, and non-linear effects introduced by temperature dependent thermal properties are accounted for by interpolating of the resulting filter coefficients. The developed method is tested through several numerical experiments and also ANSYS model. A graphical user interface is developed in Lab VIEW to provide a friendly interface for the end user. The temperature data measured by thermocouples on the DFT are transmitted to the computer through data acquisition card and the developed tool in Lab View display the heat flux in a near real time fashion.
机译:精确测量热通量和温度会严重影响一些工业应用中的能源使用,包括炉操作,金属加工,防火安全测试等。定向火焰温度计(DFT)提供了将温度和热通量测量值同时用于炉子控制的功能。当前,必须使用软件工具(例如IHCP1D)在数据收集结束时离线进行DFT中的动态温度数据分析以计算热通量信息。用于精确减少数据的近实时算法的可用性将允许在运行过程中对熔炉进行连续监控。这将导致对过程的更好控制,并显着节省能源和成本。本文提出了一种逆热传导算法的滤波形式,用于DFT中。该算法基于直接热方程的线性化解,并且通过对所得滤波器系数进行插值来解决由温度相关的热特性引起的非线性影响。通过多次数值实验和ANSYS模型对所开发的方法进行了测试。 Lab VIEW中开发了图形用户界面,以为最终用户提供友好的界面。 DFT上通过热电偶测得的温度数据通过数据采集卡传输到计算机,并且Lab View中开发的工具以近乎实时的方式显示热通量。

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