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Application of the Numerical Techniques for Modelling Fluidization Process Within Industrial Scale Boilers

机译:数值技术在工业规模锅炉内流化过程建模中的应用

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摘要

The numerical simulation of the large scale industrial circulating fluidized bed (CFB) boilers, working under air- and oxy-fuel combustion are presented in this paper. Moreover, two-dimensional experimental rig used for numerical model validation is described. For three-dimensional numerical simulations two industrial compact CFB boilers were selected installed in Polish Power Plants. Numerical simulations were carried out using three-dimensional model where the dense particulate transport phenomenon was simultaneously modelled with combustion process. The fluidization process was modelled using the hybrid Euler–Lagrange approach. Within the paper, readers can find information about used computational technique and a number of reference to specific work. The impact of radiative heat transfer on predicted temperature profile within the CFB boiler was investigated in presented work. Moreover, the novel model for retrieving radiative properties of gases under oxy-fuel combustion process was used. The evaluated temperature and pressure profiles during numerical simulations were compared against measured data collected during boiler air-fuel operation. Collected data was also used for validating numerical model of the oxy-fuel combustion model. Stability of the model and its sensitivity on changes of composition of the oxidizer were studied. This simulations were evaluated to check the response of the numerical model on changing the combustion conditions from air- to oxy-fuel combustion process. The comparison of the pressure and temperature profiles for all considered cases gave comparable trends in contrary to measured data.
机译:本文给出了在空气和含氧燃料燃烧下工作的大型工业循环流化床(CFB)锅炉的数值模拟。此外,描述了用于数值模型验证的二维实验装置。为了进行三维数值模拟,选择了两个工业紧凑型CFB锅炉安装在波兰电厂中。使用三维模型进行了数值模拟,其中密集颗粒传输现象与燃烧过程同时进行了建模。流化过程使用欧拉-拉格朗日混合方法进行建模。在本文中,读者可以找到有关使用的计算技术的信息以及对特定工作的大量参考。在目前的工作中,研究了辐射传热对CFB锅炉内预测温度分布的影响。此外,使用了一种新颖的模型来检索氧-燃料燃烧过程中气体的辐射特性。将数值模拟中评估的温度和压力曲线与锅炉空燃操作期间收集的测量数据进行比较。收集的数据也用于验证氧-燃料燃烧模型的数值模型。研究了模型的稳定性及其对氧化剂组成变化的敏感性。对该模拟进行了评估,以检查数值模型在将燃烧条件从空气燃烧转换为含氧燃料燃烧过程时的响应。对于所有考虑到的情况,压力和温度曲线的比较给出了与测量数据相反的可比趋势。

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