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首页> 外文期刊>The Canadian Journal of Chemical Engineering >Modelling of heat transfer and pyrolysis reactions in an industrial ethylene cracking furnace
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Modelling of heat transfer and pyrolysis reactions in an industrial ethylene cracking furnace

机译:产业乙烯裂解炉中传热和热解反应的建模

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摘要

The development of a relatively simple mechanistic model for an industrial ethylene cracking furnace is described, including the estimation of selected model parameters to improve model predictions. Energy balance equations are developed to account for radiative, conductive, and convective heat transfer in the radiant section, and for convection and conduction in the ultra-selective heat exchanger (USX) and in the transfer line exchanger (TLE). Kinetic schemes by Ranjan et al. and Sundaram and Froment are used to model the cracking reactions. The heat transfer model is combined with mass and momentum balances to model gas composition, pressure, and temperature changes as a function of position along the reactor tubes. Initial values and uncertainty ranges are assigned to 44 model parameters based on information in the literature and our industrial sponsor. A sensitivity-based technique and a mean-squared-error (MSE) criterion are used to select the appropriate subset of 22 parameters for tuning. Parameters are estimated and model predictions are validated using industrial data. Model predictions provide a good match to data that were not used for estimation.
机译:描述了用于工业乙烯裂解炉的相对简单的机械模型的开发,包括所选择的模型参数来改善模型预测的估计。开发了能量平衡方程以考虑辐射部分中的辐射,导电和对流传热,以及在超选择性热交换器(USX)中和传输线交换器(TLE)中的对流和传导。 Ranjan等人的动力学计划。和Sundaram和Froment用于模拟开裂反应。传热模型与质量和动量平衡结合以模拟气体组成,压力和温度变化,作为沿反应器管的位置的函数。初始值和不确定性范围根据文献中的信息和我们的工业赞助商分配到44个模型参数。基于灵敏度的技术和平均方差错误(MSE)标准用于选择用于调谐的适当子集。估计参数并使用工业数据验证模型预测。模型预测提供了与未用于估计的数据的良好匹配。

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