空气流场,离子中速度场检测方案(粒子图像测速)

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检测样品: 其他
检测项目: 速度场
浏览次数: 501
发布时间: 2013-09-25
关联设备: 2种 查看全部
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北京欧兰科技发展有限公司

金牌17年

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全场测试。测试对象为辉光放电中的等离子体。和理论计算模拟相对比。对于电子设备散热,器件热传导规律的认识有借鉴和参照意义。

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The increasing complexity of electronic devices and components challengesconventional cooling techniques. For continued development in the electronics field,innovative cooling techniques are required. This thesis examines heat transfer enhancement of a heated plate experiencing low-velocity forced convection. A wire-torod corona discharge electrode configuration was used to generate a counter-flow ionic wind so as to direct the bulk gas flow in such a manner as to induce hot spot cooling.Particle image velocimetry (PIV) studies were conducted to profile the interactionbetween the bulk flow and counter-flow ionic wind and show how the hydrodynamicinteractions result in a downward flow towards the heated surface and characteristic recirculation zones. This impingement-like effect enhanced the convection cooling of the heated plate, reducing the temperature by as much as 5 K. Convection coefficient was enhanced by up to 36% in the heat transfer experiments. In the PIV experiments,seeding particles were used to obtain the fluid flow profile. As corona discharge creates a charged environment, seeding particles may get charged, and this may result in deviation from fluid flow due to Coulombic forces on the particles. To ensure the fidelity of the PIV results in these experiments, a simplified particle tracking analysis wasconducted, solving the modified Basset-Boussinesq-Oseen (BBO) equation for particlemotion and including charging and electric field effects to simulate the effects of corona discharge. The results obtained from these simulations were used to affirm the validity of the PIV results.
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自适应粒子成像测速场仪(PIV)

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北京欧兰科技发展有限公司为您提供《空气流场,离子中速度场检测方案(粒子图像测速)》,该方案主要用于其他中速度场检测,参考标准--,《空气流场,离子中速度场检测方案(粒子图像测速)》用到的仪器有德国LaVision PIV/PLIF粒子成像测速场仪、自适应粒子成像测速场仪(PIV)