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Flow Boiling Heat Transfer Characteristics of a Minichannel up to Dryout Condition

机译:直至干透状态的小通道的沸腾传热特性

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摘要

In this paper, the experimental flow boiling heat transfer results of a minichannel are presented. A series of experiments was conducted to measure the heat transfer coefficients in a minichannel made of stainless steel (AISI316) having an internal diameter of 1.70 mm and a uniformly heated length of 220 mm. R134a was used as a working fluid, and experiments were performed at two different system pressures corresponding to saturation temperatures of 27°C and 32°C. Mass flux was varied from 50 kglm~2 s to 600 kglm~2 s, and heat flux ranged from 2 kW/m~2 to 156 kW/m~2. The test section was heated directly using a dc power supply. The direct heating of the channel ensured uniform heating, which was continued until dryout was reached. The experimental results show that the heat transfer coefficient increases with imposed wall heat flux, while mass flux and vapor quality have no considerable effect. Increasing the system pressure slightly enhances the heat transfer coefficient. The heat transfer coefficient is reduced as dryout is reached. It is observed that the dryout phenomenon is accompanied with fluctuations and a larger standard deviation in outer wall temperatures.
机译:在本文中,给出了小通道流沸腾传热的实验结果。进行了一系列实验,以测量内径为1.70毫米,均匀加热长度为220毫米的不锈钢制微型通道(AISI316)的传热系数。 R134a用作工作流体,并在对应于27°C和32°C饱和温度的两种不同系统压力下进行了实验。质量通量从50 kglm〜2 s变化到600 kglm〜2 s,热通量从2 kW / m〜2到156 kW / m〜2不等。测试部分使用直流电源直接加热。通道的直接加热确保均匀加热,持续加热直至达到干透状态。实验结果表明,传热系数随施加的壁热通量的增加而增加,而质量通量和蒸汽质量没有明显的影响。增加系统压力会稍微提高传热系数。随着变干,传热系数降低。可以看出,变干现象伴随着外壁温度的波动和较大的标准偏差。

著录项

  • 来源
    《Journal of Heat Transfer》 |2011年第8期|p.081501.1-081501.10|共10页
  • 作者单位

    Applied Thermodynamics and Refrigeration,Department of Energy Technology,Royal Institute of Technology, KTH,Brinellvagen 68,100 44-SE Stockholm, Sweden;

    Applied Thermodynamics and Refrigeration,Department of Energy Technology,Royal Institute of Technology, KTH,Brinellvagen 68,100 44-SE Stockholm, Sweden;

    Applied Thermodynamics and Refrigeration,Department of Energy Technology,Royal Institute of Technology, KTH,Brinellvagen 68,100 44-SE Stockholm, Sweden;

  • 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

    microchannels; two-phase; boiling; heat transfer; dryout;

    机译:微通道;两相沸腾;传播热量;干;
  • 入库时间 2022-08-18 00:25:36

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