首页> 外文会议>The 2001 ASME International Mechanical Engineering Congress and Exposition, 2001, Nov 11-16, 2001, New York, New York >TRANSIENT CONVECTIVE HEAT TRANSFER OF AIR JET IMPINGING ONTO A CONFINED CERAMIC-BASED MCM DISK
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TRANSIENT CONVECTIVE HEAT TRANSFER OF AIR JET IMPINGING ONTO A CONFINED CERAMIC-BASED MCM DISK

机译:空气射流在密闭陶瓷基MCM盘上的瞬态对流传热

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Transient heat transfer behavior from a horizontally confined ceramic-based MCM disk with jet impingement has been systematically explored. The relevant parameters influencing heat transfer performance are the steady-state Grashof number, jet Reynolds number, and ratio of jet separation distance to nozzle diameter. In addition, an effective time, ton, representing a certain transient time when the mixed convection effect due to jet impingement and buoyancy becomes significant relative to heat conduction, is introduced. Both the transient chip and average Nusselt numbers on the MCM disk surface decrease with time in a very beginning period of 0≤ t ≤t_(on), whereas it gradually increases or keeps constant with time and finally approaches the steady-state value in the period of t_(on)≤ t ≤ t_s. As compared with the steady-state results, if the transient chip and average heat transfer behaviors may be considered as a superposition of a series of quasi-steady states, the transient chip and average Nusselt numbers in all the present transient experiments can be properly predicted by the existing steady-state correlations when t≥ 4 min in the power-on transient period.
机译:已经系统地研究了具有射流冲击的水平受限陶瓷基MCM盘的瞬态传热行为。影响传热性能的相关参数是稳态Grashof数,射流雷诺数以及射流分离距离与喷嘴直径之比。另外,引入有效时间ton,该有效时间ton表示当由于射流冲击和浮力引起的混合对流效应相对于热传导变得显着时的特定过渡时间。在0≤t≤t_(on)的最开始阶段,MCM磁盘表面上的瞬态芯片数和平均Nusselt数都随时间减小,而随时间逐渐增大或保持恒定,最后达到稳态时的稳态值。 t_(on)≤t≤t_s的周期。与稳态结果相比,如果可以将瞬态芯片和平均传热行为视为一系列准稳态的叠加,则可以正确预测当前所有瞬态实验中的瞬态芯片和平均Nusselt数在通电瞬态期间t≥4 min时,通过现有的稳态相关性来确定。

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