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Local distribution of wall static pressure and heat transfer on a smooth flat plate impinged by a slot air jet

机译:狭缝空气射流撞击光滑平板上壁静压和传热的局部分布

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摘要

Local distribution of wall static pressure and heat transfer on a smooth flat plate impinged by a normal slot air jet is experimental investigated. Present study focuses on the influence of jet-to-plate spacing (Z/D_h) (0.5-10) and Reynolds number (2500-20,000) on the fluid flow and heat transfer distribution. A single slot jet with an aspect ratio (l/b) of about 22 is chosen for the current study. Infrared Thermal Imaging technique is used to capture the temperature data on the target surface. Local heat transfer coefficients are estimated from the thermal images using 'SMART VIEW software. Wall static pressure measurement is carried out for the specified range of Re and Z/D_h Wall static pressure coefficients are seen to be independent of Re in the range between 5000 and 15,000 for a given Z/D_h Nu values are higher at the stagnation point for all Z/D_h and Re investigated. For lower Z/D_h and higher Re, secondary peaks are observed in the heat transfer distributions. This may be attributed to fluid translating from laminar to turbulent flow on the target plate. Heat transfer characteristics are explained based on the simplified flow assumptions and the pressure data obtained using Differential pressure transducer and static pressure probe. Semi-empirical correlation for the Nusselt number in the stagnation region is proposed.
机译:实验研究了正常狭缝空气射流撞击在光滑平板上壁静压和传热的局部分布。目前的研究集中在射流板间距(Z / D_h)(0.5-10)和雷诺数(2500-20,000)对流体流动和传热分布的影响上。当前研究选择的是长宽比(l / b)约为22的单缝喷嘴。红外热成像技术用于捕获目标表面上的温度数据。使用'SMART VIEW软件可根据热图像估算局部传热系数。在给定的Re和Z / D_h范围内进行壁静压测量。对于给定的Z / D_h,壁静压系数被视为独立于Re在5000和15,000之间的范围内。所有Z / D_h和Re被调查。对于较低的Z / D_h和较高的Re,在传热分布中观察到次级峰。这可能归因于流体从目标板上的层流转换为湍流。基于简化的流量假设和使用压差传感器和静压探头获得的压力数据来解释传热特性。提出了停滞区域中努塞尔特数的半经验相关性。

著录项

  • 来源
    《Heat and mass transfer》 |2017年第2期|611-623|共13页
  • 作者

    Adimurthy M; Vadiraj V. Katti;

  • 作者单位

    Department of Automobile Engineering, BLDEA's Dr. P G H College of Engineering and Technology, Vijayapura, Karnataka, India;

    KLS Vishwanatharao Deshapande Rural Institute of Technology, Haliyal, Uttara Kannada, Karnataka 581329, India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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