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Modelling of the Initial Part of a Smoke Plume from a Four-Flue Stack at a Thermal Power Station

机译:在热电站的四烟堆中建模烟雾羽毛的初始部分

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Multiflue stacks are finding ever increasing application at thermal power stations (TPS) in recent years. Until the present time, the opinion has prevailed that multiflue stacks at the same emission parameters offer lower floating-up height of flue gases than single-flue stacks do. Hence, they must be higher or be provided with devices making a single flume, such as common hoods, or due to a concentric slope of the outlet section of the stack flues. However, the research tools used up until now had poorer capabilities as compared to those implemented in the ANSYS Fluent software package. The process of combining jets outflowing from individual flues of a four-flue stack is studied and analyzed using the ANSYS Fluent package. Much attention is given to the selection of a proper turbulence model and its verification against generally accepted theoretical and experimental data. This revealed the effect of rapprochement of the jets’ axis from individual parallel flues similar to the Coanda effect. Comparison of the characteristics of cross sections in a combined plume from a four-flue stack and a plume from a single-flue stack having the same outflow parameters and the distance from the stack mouth, as well as using them as initial data for calculating the trajectory of the smoke plume, showed a good agreement of these trajectories. Selection of a turbulence model and a calculation scheme suitable for the considered conditions is rather complicated, as it is determined not only by physical and geometric parameters but also by the required model accuracy and available computer and time resources. Solutions are presented that are obtained using the ANSYS Fluent package in analyzing jet flows with a scale of approximately 100 m, and a procedure for selecting a turbulence model for a nonisothermal jet is described.
机译:近年来,Multifulue Stacks在热电站(TPS)上发现了越来越多的应用。直到目前,该意见已经占据了相同排放参数的多重堆叠提供的烟道气的较低浮动高度,而不是单烟堆。因此,它们必须更高或者具有制造单个水槽的装置,例如公共罩,或者由于堆叠烟道的出口部分的同心斜率。但是,与ANSYS流畅的软件包中实施的那些相比,推出的研究工具迄今为止往往具有较差的功能。研究并使用ANSYS流畅的包进行研究并分析了从四烟堆的各个烟道流出的喷射的过程。对普遍接受的理论和实验数据的验证提供了很多关注。这揭示了喷射轴与与焦饼效应类似的单独平行跳的影响的影响。从四烟囱堆叠的组合羽流中的横截面的特性与堆叠堆的单烟堆和堆嘴的距离,以及用作计算的初始数据烟雾羽流的轨迹,表现出这些轨迹的良好一致性。选择湍流模型和适用于所考虑的条件的计算方案是相当复杂的,因为它不仅由物理和几何参数确定,而且通过所需的模型精度和可用的计算机和时间资源来确定。提出了使用ANSYS流畅的封装在分析射流流动的分析中获得的溶液,并描述了用于为非吸收射流选择湍流模型的过程。

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