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Ripaparametrien vaikutus H-tyyppisesti rivoitetun putkipakan kaasupuoliseen lämmönsiirtoon lämmöntalteenottokattilassa

机译:翅片参数对H型肋肋烟囱余热锅炉气体侧传热的影响

摘要

Alfa Laval Aalborg Oy designs and manufactures waste heat recovery systems utilizing extended surfaces. The waste heat recovery boiler considered in this thesis is a water-tube boiler where exhaust gas is used as the convective heat transfer medium and water or steam flowing inside the tubes is subject to cross-flow. This thesis aims to contribute to the design of waste heat recovery boiler unit by developing a numerical model of the H-type finned tube bundle currently used by Alfa Laval Aalborg Oy to evaluate the gas-side heat transfer performance. The main objective is to identify weaknesses and potential areas of development in the current H-type finned tube design. In addition, numerical simulations for a total of 15 cases with varying geometric parameters are conducted to investigate the heat transfer and pressure drop performance dependent on H-type fin geometry. The investigated geometric parameters include fin width and height, fin spacing, and fin thickness. Comparison between single and double tube type configuration is also conducted. Based on the simulation results, the local heat transfer and flow behaviour of the H-type finned tube is presented including boundary layer development between the fins, the formation of recirculation zone behind the tubes, and the local variations of flow velocity and temperature within the tube bundle and on the fin surface. Moreover, an evaluation of the effects of various fin parameters on heat transfer and pressure drop performance of H-type finned tube bundle has been provided. It was concluded that from the studied parameters fin spacing and fin width had the most significant effect on tube bundle performance and the effect of fin thickness was the least important. Furthermore, the results suggested that the heat transfer performance would increase due to enhanced turbulence if the current double tube configuration is replaced with single tube configuration, but further investigation and experimental measurements are required in order to validate the results.
机译:阿法拉伐奥尔堡公司设计和制造利用扩展表面的废热回收系统。本文所考虑的废热回收锅炉是一种水管锅炉,其中废气被用作对流传热介质,并且在管内流动的水或蒸汽会发生横流。本文旨在通过开发阿法拉伐·奥尔堡·奥尔伊公司目前用于评估气体侧传热性能的H型翅片管束的数值模型,为废热回收锅炉单元的设计做出贡献。主要目标是确定当前H型翅片管设计的弱点和潜在的发展领域。此外,针对15个具有不同几何参数的案例进行了数值模拟,以研究取决于H型翅片几何形状的传​​热和压降性能。研究的几何参数包括翅片宽度和高度,翅片间距和翅片厚度。还进行了单管和双管类型配置之间的比较。根据仿真结果,介绍了H型翅片管的局部传热和流动特性,包括翅片之间的边界层发展,管后的回流区的形成以及管内流速和温度的局部变化。管束和散热片表面。而且,已经提供了各种翅片参数对H型翅片管束的传热和压降性能的影响的评估。可以得出结论,从研究的参数来看,翅片间距和翅片宽度对管束性能影响最大,而翅片厚度的影响最不重要。此外,结果表明,如果用单管配置代替当前的双管配置,由于湍流增强,传热性能将提高,但是需要进一步的研究和实验测量以验证结果。

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    Laaksonen Pinja;

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  • 年度 2015
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