Heat Transfer Slot Matrix for Compact Rotary Heat Exchangers with Ultra-High Regeneration Ratio for Microturbines

IF 0.3 Q4 ENERGY & FUELS Problemele Energeticii Regionale Pub Date : 2023-02-01 DOI:10.52254/1857-0070.2023.1-57.10
A. Kostyukov, L. Kosach
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Abstract

This paper considers the problem of the influence of distancing elements in slot matrix channels on the thermohydraulic characteristics of the matrix of a rotary heat exchanger having various values of the height of the slot channels. The following tasks were carried out: mathematical modeling of thermohydraulic processes in different slot channels having constant height along them (from 0.3 mm to 0.5 mm); analysis of the influence of the slit channels' height, the number of distancing elements in rows, the distance between rows and the total number of elements on the average value of the Nusselt number and on the pressure drop; analysis of the effect of changes in speed and temperature conditions on thermal and hydraulic characteristics. The most important results are the following facts: the influence of the relative location of the distancing elements on the thermohydraulic characteristics of the flow is negligible; changes in the temperature and speed regime of the laminar flow practically does not affect the intensity of convection in the matrix channels; an increase in the height of the slot channel leads to a relatively small decrease in the average value of the Nusselt number. The significance of the results obtained is that they can be the basis for adjusting the methods of design calculations of rotary heat exchangers taking into account the decrease in thermal efficiency caused by the presence of distancing elements in the channels of their matrices. Recommendations can be made to minimize the number of distancing elements without considering their mutual location.
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微型涡轮机超高再生比紧凑型旋转热交换器换热槽矩阵
本文考虑了槽式换热器槽道中的间距元件对槽道高度不同的旋转换热器基体热工水力特性的影响问题。进行了以下任务:对不同槽道中的热工水力学过程进行数学建模,槽道具有恒定的高度(从0.3mm到0.5mm);分析狭缝通道的高度、行中间隔元件的数量、行间距离和元件总数对努塞尔数平均值和压降的影响;分析速度和温度条件的变化对热特性和水力特性的影响。最重要的结果是以下事实:隔离元件的相对位置对流动的热工水力特性的影响可以忽略不计;层流的温度和速度范围的变化实际上并不影响矩阵通道中的对流强度;槽沟道的高度的增加导致努塞尔数的平均值的相对较小的减小。所获得的结果的意义在于,它们可以作为调整旋转式换热器设计计算方法的基础,同时考虑到由于在其基体的通道中存在隔离元件而导致的热效率降低。可以提出建议,在不考虑相互位置的情况下尽量减少距离元件的数量。
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CiteScore
0.70
自引率
33.30%
发文量
38
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