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A Novel Modelling Approach for Condensing Boilers Based on Hybrid Dynamical Systems

机译:基于混合动力系统的冷凝锅炉新型建模方法

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Condensing boilers use waste heat from flue gases to pre-heat cold water entering the boiler. Flue gases are condensed into liquid form, thus recovering their latent heat of vaporization, which results in as much as 10%–12% increase in efficiency. Modeling these heat transfer phenomena is crucial to control this equipment. Despite the many approaches to the condensing boiler modeling, the following shortcomings are still not addressed: thermal dynamics are oversimplified with a nonlinear efficiency curve (which is calculated at steady-state); the dry/wet heat exchange is modeled in a fixed proportion. In this work we cover these shortcomings by developing a novel hybrid dynamic model which avoids the static nonlinear efficiency curve and accounts for a time-varying proportion of dry/wet heat exchange. The procedure for deriving the model is described and the efficiency of the resulting condensing boiler is shown.
机译:冷凝式锅炉利用来自烟道气的废热来预热进入锅炉的冷水。烟气被冷凝成液态,从而回收了它们的汽化潜热,从而使效率提高了10%至12%。对这些热传递现象进行建模对于控制该设备至关重要。尽管有许多方法可以用于冷凝锅炉的建模,但仍不能解决以下缺点:热效率被非线性效率曲线简化了(在稳态下计算);干/湿热交换按固定比例建模。在这项工作中,我们通过开发一种新颖的混合动力模型来克服这些缺点,该模型避免了静态非线性效率曲线,并且说明了干/湿热交换的时变比例。描述了推导模型的过程,并显示了所得冷凝锅炉的效率。

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