首页> 外文OA文献 >Developing convective flow in a square channel partially filled with a high porosity metal foam and rotating in a parallel-mode
【2h】

Developing convective flow in a square channel partially filled with a high porosity metal foam and rotating in a parallel-mode

机译:在方形通道中形成对流,部分填充高孔隙率金属泡沫并以平行模式旋转

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

The development of three-dimensional heat transfer and fluid flow in a square channel rotating in a parallel-mode has been investigated numerically. The duct is partially occupied by a foam material of high porosity ε ⩾ 0.89 and subjected to a uniform wall heat flux. In regards to the influence of rotation, both the centrifugal buoyancy and Coriolis forces are considered in the current study. The generalized model is used to mathematically simulate the momentum equations employing the Boussinesq approximation for the density variation. Moreover, thermal dispersion has been taken into account with considering that fluid and solid phases are in a local thermal non-equilibrium. The governing equations are discretized according to the finite volume method with employing a hybrid differencing scheme. Computations are performed for a wide range of parameters including the hollow ratio (0 ⩽ S ⩽ 1), foam porosity (0.89 ⩽ ε ⩽ 0.97), pore density (5PPI ⩽ ω ⩽ 40PPI), solid to fluid thermal conductivity ratio (250 ⩽ κ ⩽ 4000), Reynolds number (250 ⩽ Re ⩽ 2000), and rotation number (0 ⩽ Ro ⩽ 1), while the values of characteristic temperature difference and Prandtl numbers are maintained constant at ΔTc = 1000 °C and Pr = 0.7, respectively. Results reveal that flow resistance and heat transport are augmented with either decreasing the hollow ratio and foam porosity or increasing Reynolds and rotation numbers, while two contradictory trends are found for the impact of increasing pore density on heat transfer; either enhancing or suppressing depending on the size of hollow zone. In addition, both rotation and thermal dispersion have dominant roles in enhancing heat transfer at the higher levels of porosity or the lower values of conductivity ratios. However, these roles are reduced gradually with decreasing the foam porosity or increasing thermal conductivity ratio, but do not completely vanish. Eventually, the worth of using high porosity fibrous media in enhancing the heat transported through rotating channels has been inspected. An overall enhancement parameter is compared for the current study with a previous work regarding turbulent flow in a rotating clear channel, where it has been confirmed that the current proposal is practically justified and efficient.
机译:数值研究了在平行模式旋转的方形通道中三维传热和流体流动的发展。导管被高孔隙率ε⩾0.89的泡沫材料部分占据,并受到均匀的壁热通量。关于旋转的影响,目前的研究考虑了离心浮力和科里奥利力。广义模型用于对Boussinesq逼近进行密度变化数学模拟动量方程。此外,考虑到流体和固相处于局部热不平衡中,已经考虑了热分散。控制方程根据有限体积法采用混合微分方案离散化。对各种参数进行计算,包括空心比(0⩽S⩽1),泡沫孔隙率(0.89⩽ε⩽0.97),孔密度(5PPI⩽ω⩽40PPI),固液导热系数(250⩽) κ⩽4000),雷诺数(250⩽Re⩽2000)和转数(0⩽Ro⩽1),而特征温度差和Prandtl数的值在ΔTc= 1000°C和Pr = 0.7时保持恒定,分别。结果表明,随着中空率和泡沫孔隙率的降低或雷诺数和转数的增加,流动阻力和热传递都得到了增强,而孔隙密度增加对传热的影响却存在两个相反的趋势。根据中空区的大小增强或抑制。另外,在较高的孔隙率水平或较低的电导率比值下,旋转和热分散在增强传热方面均起主要作用。但是,随着泡沫孔隙率的降低或导热系数的增加,这些作用逐渐减小,但并未完全消失。最终,已经检验了使用高孔隙率纤维介质增强通过旋转通道传输的热量的价值。将当前研究的总体增强参数与关于旋转畅通通道中的湍流的先前工作进行了比较,在该工作中,已经确认了当前的建议实际上是合理且有效的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

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