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首页> 外文期刊>Experimental Heat Transfer >EVALUATION OF A CLEANING PROCEDURE FOR MICRO-STRUCTURED DEVICES BY OPTICAL INSPECTION
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EVALUATION OF A CLEANING PROCEDURE FOR MICRO-STRUCTURED DEVICES BY OPTICAL INSPECTION

机译:通过光学检查评估微结构设备的清洁程序

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摘要

Fouling and cleaning evaluations are commonly performed integrally, for instance, via pressure drop measurements of selected devices. For micro-structured devices, local fouling and cleaning behavior is of great interest due to the reduced dimensions and characteristic lengths of some hundred micrometers, which can lead to totally blocked microchannels. In this work, a method for local visual cleaning evaluations in microchannels was investigated. It is based on a visually accessible micro heat exchanger with a digital microscope that can be moved to different observation points within one experiment. Captured images are converted via a MATLAB~® (The MathWorks, Natick, Massachusetts, USA) algorithm into black-and-white images containing only one descriptor for each pixel: soiled (black) or clean (white). The soil coverage is then calculated through the ratio of black pixels to the number of all pixels in the regarded images. It is shown that the method is suitable for on-line monitoring of cleaning progress in microchannels. Different developments in the calculated soil coverage are discussed. Decreasing soil coverage is found for successful cleaning methods; increasing soil coverage is found for blocked sections, which act like a filter for upstream detached particles or agglomerates; and constant soil coverage is found for sections with no change in soiled surface area. Gas bubble growth at attached particles for nucleation are found in sudden and short increases of the soil coverage.
机译:结垢和清洁评估通常是整体执行的,例如,通过所选设备的压降测量。对于微结构器件,由于减小尺寸和减少数百微米的特征长度,局部结垢和清洁行为引起人们极大的兴趣,这可能导致微通道完全堵塞。在这项工作中,研究了一种在微通道中进行局部视觉清洁评估的方法。它基于带有数字显微镜的可视微型热交换器,可以在一个实验中移动到不同的观察点。捕获的图像通过MATLAB〜(美国马萨诸塞州纳蒂克的MathWorks公司)算法转换为黑白图像,每个像素仅包含一个描述符:脏污(黑色)或纯净(白色)。然后通过黑色像素与所关注图像中所有像素的数量之比来计算土壤覆盖率。结果表明,该方法适用于微通道清洗过程的在线监测。讨论了计算的土壤覆盖率的不同发展。发现减少土壤覆盖是成功的清洁方法。发现阻塞部分的土壤覆盖率增加,这些部分就像过滤器,用于上游分离的颗粒或团块;并且发现土壤表面积不变的部分土壤覆盖率保持不变。在土壤覆盖范围突然增加和短暂增加的过程中,发现附着颗粒处的气泡生长。

著录项

  • 来源
    《Experimental Heat Transfer》 |2014年第5期|376-388|共13页
  • 作者单位

    Technische Universitaet Braunschweig, Institute for Chemical and Thermal Process Engineering, Brunswick, Germany;

    Technische Universitaet Braunschweig, Institute for Chemical and Thermal Process Engineering, Brunswick, Germany;

    Technische Universitaet Braunschweig, Institute for Chemical and Thermal Process Engineering, Brunswick, Germany;

    Technische Universitaet Braunschweig, Institute for Chemical and Thermal Process Engineering, Brunswick, Germany;

  • 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

    micro heat exchanger; fouling; process intensification; process development; batch versus continuous operation;

    机译:微型热交换器结垢流程强化;工艺开发;分批与连续操作;

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