Computational Analysis for Good Thermal Exchange and Low Pressure Drop in Regenerative Air Preheaters

P. C. Mioralli, M. C. D. Silva, E. Avallone, P. H. Palota, P. S. G. Natividade
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引用次数: 2

Abstract

A computational analysis in a rotary regenerative air preheater subject to pre-established mass flow rate is performed. The heat transfer rate, the pressure drop and the outlet temperatures of gas streams are calculated from different matrix porosity values. The fluid flow and the convective heat transfer coefficient are determined from correlations. The total heat transfer is obtained using the Effectiveness-NTU method specific to regenerative air preheaters. Three typical regenerative air preheaters with both streams under the laminar flow regime are investigated. A range of porosity values that provide good thermal exchange and low pressure drop in the equipment is chosen for each examined air preheater. The behavior of the outlet temperatures of each gas stream as function of porosity is also analyzed. The results show that the porosity ranges shorten when the typical pressured drop values for each regenerative air preheater are introduced in the analysis. In addition, the behavior of the outlet temperatures is compatible with the behavior of the heat transfer rate as the porosity changes.
蓄热式空气预热器良好换热和低压降的计算分析
对旋转蓄热式空气预热器在预先设定的质量流量下进行了计算分析。根据不同的基质孔隙度值,计算了气流的传热速率、压降和出口温度。流体流量和对流换热系数由相关性确定。总换热量的计算采用了针对蓄热式空气预热器的有效性- ntu方法。研究了三种典型的层流双流蓄热式空气预热器。为每个检查的空气预热器选择一个孔隙率值范围,以提供良好的热交换和设备中的低压降。分析了各气流出口温度随孔隙度的变化规律。结果表明:在分析中引入各蓄热式空气预热器的典型压降值后,孔隙率范围缩短;此外,随着孔隙率的变化,出口温度的行为与换热率的行为是相容的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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