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Computational Fluid Dynamics Modeling of Rice Husk Combustion

机译:稻壳燃烧的计算流体动力学建模

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The combustion of rice husk fuel in a fixed bed reactor can be assumed very complicated. Researchers have studied this problem for many years. Such studies have been performed by both empirical and computational methods. However, due to the sharp increase in the development of computer science based packages, the Computational Fluid Dynamics (CFD) technique can be applied to simulate and analyse the performance of the combustion reaction. Consequently, this has saved on empirical expenditures and has additionally provided more understanding about the research objective. This paper models the computation of bed fuel combustion in a fixed bed reactor using Fluent version 12.0.16. The User Defined Functions (UDFs) were created to define the system as well as boundary conditions, and initial conditions. Furthermore, the source terms, heat exchanges and homogeneous reactions were also defined in UDFs. The species transport and volume reaction were used to model the gas phase, where the Eulerian model was employed to solve the problem using two phase modelling. The k-εsub-model was employed for turbulence, together with an unsteady model, as the problem was regarded as being unstable. The results obtained from the modelling work would give more understanding about the bed fuel combustion in fixed bed reactor.
机译:可以假定在固定床反应器中的稻壳燃料燃烧非常复杂。研究人员多年来已经研究过这个问题。通过经验和计算方法进行了这些研究。然而,由于基于计算机科学的封装的发展的急剧增加,可以应用计算流体动力学(CFD)技术来模拟和分析燃烧反应的性能。因此,这已保存在经验支出上,并另外提供了对研究目标的了解。本文使用流畅的12.0.16件,模拟了固定床反应堆中的床燃料燃烧的计算。创建了用户定义的函数(UDFS)以定义系统以及边界条件和初始条件。此外,源术语,热交换和均相反应也定义为UDF。物种运输和体积反应用于模拟气相,其中采用欧拉模型来使用两相模拟来解决问题。 K-εsub模型用于湍流,以及一个不稳定的模型,因为问题被认为是不稳定的。从建模工作中获得的结果将更加了解固定床反应器中的床燃料燃烧。

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