...
首页> 外文期刊>International journal of applied mechanics >Heat Transfer and Friction Factor Correlations for Solar Air Heater With Gap in V-Rib With Symmetrical Gap and Staggered Ribs
【24h】

Heat Transfer and Friction Factor Correlations for Solar Air Heater With Gap in V-Rib With Symmetrical Gap and Staggered Ribs

机译:V形肋间隙的太阳能空气加热器传热和摩擦因子相关性,具有对称间隙和交错肋

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The present experimental study is concerned with heat transfer analysis of air flowing in solar air heater duct with a gap in V-rib with symmetrical gap and staggered ribs geometry. The investigated parameters are Reynolds number (Re) of 4000-14,000, relative roughness pitch (p/e) of 12, relative roughness height (e/D-h) of 0.043, angle of attack (alpha) of 60 deg, relative staggered rib pitch (p/p) of 0.65, relative gap size (g/e) of 4, relative staggered rib size (r/e) of 4, relative gap position of additional gap in each symmetrical rib elements (d/w) of 0.65, relative gap size of additional gap in each symmetrical rib elements (g/e) of 1, number of main gaps (N-g) of 1, 2, 3, 4, and number of additional gap (n(g)) varying from 1 to 5. Fourteen roughened absorber plates were tested. The maximum enhancement in Nusselt number (Nu) and friction factor (f) was 2.34 and 2.79 times that of smooth surface corresponding to the number of main gaps (N-g) of 4 with the number of additional gaps (n(g)) of 4. The performance of the gap in V-rib with symmetrical gap and staggered rib geometry has been compared with the existing latest V-rib geometry and smooth surface. The proposed gap in V-rib with symmetrical gap and staggered ribs geometry has a better performance than the existing latest V-rib geometry. The following correlations have been developed for heat transfer and friction factor in terms of roughness and operating parameters. Heat transfer: Nur=0.0073(Re)0.9788(Ng)0.2790(ng)0.0184exp[-0.1678(ln(Ng))2]exp-0.0129(ln(ng))2] Friction factor:fr=0.0477(Re)-0.0678(Ng)0.5919(ng)-0.0562exp[-0.4922(ln(Ng))2]exp[-0.0487(ln(ng))2
机译:本实验研究涉及在太阳能空气加热器管道中流动的传热分析,其具有对称间隙的V形肋间隙和交错肋骨几何形状。研究参数是雷诺数(RE)为4000-14,000,相对粗糙度(P / e)为12,相对粗糙度高度(E / DH),0.043,攻角(alpha)60°,相对交错的肋间距(p / p)为0.65,相对间隙尺寸(g / e)为4,相对交错的肋尺寸(r / e)4,每个对称肋元件(d / w)的额外间隙的相对间隙位置为0.65,每个对称肋元件(g / e)的额外间隙的相对间隙尺寸为1,2,3,4的主间隙数(ng)的数量(ng)和额外间隙的数量(n(g))不同于1到测试了14个粗糙的吸收板。 NUSERET数(NU)和摩擦系数(F)中的最大增强为2.34和2.79倍的光滑表面对应于4的主要间隙(NG)的数量,其中4个具有4的额外间隙的数量(n(g)) 。与对称间隙和交错的肋骨几何形状的V形肋的间隙的性能与现有的最新V形肋骨几何和光滑表面进行了比较。具有对称间隙和交错肋骨几何形状的V形肋的拟议间隙具有比现有最新V形肋的几何形状更好。在粗糙度和操作参数方面,已经为传热和摩擦因子开发了以下相关性。传热:NUR = 0.0073(RE)0.9788(NG)0.2790(NG)0.0184×0.0184(NG))2] EXP-0.0129(LN(NG))2]摩擦因子:FR = 0.0477(RE) -0.0678(ng)0.5919(ng)-0.0562 exp [-0.4922(ln(ng))2] exp [-0.0487(ln(ng))2

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号