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Heat Transfer Study in 3-Pass Fire-Tube Boiler During a Cold Start-up

机译:冷启动期间3次灭火锅炉的传热研究

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In this work, we are interested to simulate the transient thermal-hydraulic behaviour of 3-pass fire-tube boiler during a cold start-up. A transient thermal model has been developed based upon energy balance equations of the main components of the boiler and the relevant correlations describing heat transfer phenomena taking place. The variation of the main thermal parameters describing the boiler dynamic behaviour, namely: temperatures of combustion gas, tube walls and water as well as heat transfer rates are also studied. The model validation has been performed by comparing the simulation results against experimental data obtained during the boiler start-up. The comparative study shows a good agreement between the simulation and the boiler operating data. Indeed, the maximum error in predicting the main parameters of the boiler was found to be acceptable and the deviations are mainly due to simplifications introduced in the model. The agreement between the simulation and experimental data reveals the accuracy and the suitability of the proposed model to estimate the dynamic behaviour of the studied boiler and other similar designs.
机译:在这项工作中,我们有兴趣在冷启动期间模拟3遍灭火锅炉的瞬态热液压行为。基于锅炉主要部件的能量平衡方程式开发了瞬态热模型,以及描述传热现象的相关相关性。还研究了描述锅炉动力学行为的主要热参数的变化,即:燃烧气体,管壁和水的温度以及传热速率。通过将模拟结果与在锅炉启动期间获得的实验数据进行比较来执行模型验证。比较研究显示了模拟和锅炉操作数据之间的良好一致性。实际上,发现预测锅炉的主要参数的最大误差是可接受的,并且偏差主要是由于模型中引入的简化。模拟和实验数据之间的协议揭示了所提出的模型来估计所学习锅炉和其他类似设计的动态行为的准确性和适用性。

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