首页> 外文期刊>International Journal of Heat and Mass Transfer >Effect of fin waviness and spacing on the lateral vortex structure and laminar heat transfer in wavy-plate-fin cores
【24h】

Effect of fin waviness and spacing on the lateral vortex structure and laminar heat transfer in wavy-plate-fin cores

机译:翅片波纹度和间距对波浪形翅片芯中横向涡结构和层流传热的影响

获取原文
获取原文并翻译 | 示例
       

摘要

Laminar forced convection in air (Pr = 0.7) in two-dimensional wavy-plate-fin channels with sinusoidal wall corrugations is numerically simulated. Constant property, periodically developed flow in uniform wall temperature plate channels is considered. Velocity and temperature fields, isothermal Fanning friction factor, and Colburn factor are presented for different flow rates (10≤Re≤1000), wall-corrugation severity (0.125≤γ≤0.5), and fin spacing (0.1≤ε≤3.0). Lateral vortices or re-circulation cells develop in the wavy-wall troughs as the axial flow gets separated downstream of the wall-corrugation peaks and re-attaches upstream of the subsequent wall peak, and their strength and coverage is a function of Re, γ andε. As the plate separationεdecreases, however, viscous forces dominate and dampen the swirl; with very largeε, the impact of wall waviness diminishes and the core fluid flows largely undisturbed. The surface waviness-induced periodic disruption and thinning of boundary layers along with lateral swirl mixing produce high local heat fluxes near the wall peak regions. The overall heat transfer coefficient increases many fold compared to that in flat-plate channels with relatively small increases in the concomitant pressure drop penalty. The optimum (i/f) enhancement is obtained in the swirl flow regime (Re > 100) withγ> 0 and 1.0≤ε≤1.2.
机译:二维波浪板翅通道中正弦壁波纹在空气中的层流强迫对流(Pr = 0.7)被数值模拟。考虑恒定特性,考虑在均匀的壁温板通道中周期性发展的流动。给出了不同流速(10≤Re≤1000),壁波纹强度(0.125≤γ≤0.5)和翅片间距(0.1≤ε≤3.0)时的速度和温度场,等温扇形摩擦因数和科尔本因数。当轴向流在壁波纹峰的下游分离并在随后的壁峰的上游重新附着时,波浪形壁槽中会形成侧向涡流或再循环单元,其强度和覆盖率是Re,γ的函数和ε。然而,随着板间距的减小,粘性力起主导作用,并减弱了旋流。 ε很大时,壁波纹的影响减小,并且岩心流体的流动基本不受干扰。表面波纹引起的边界层周期性破坏和变薄以及横向旋流混合在壁峰区域附近产生高局部热通量。与平板通道相比,总的传热系数增加了许多倍,伴随的压降损失相对较小。在γ> 0且1.0≤ε≤1.2的涡流状态(Re> 100)下获得最佳(i / f)增强。

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