首页> 外文会议>ASME international heat transfer conference;IHTC14 >HEAT TRANSFER BEHAVIOUR AND FLOW FIELD CHARACTERISATION OF IMPINGING SYNTHETIC JETS FOR A WIDE RANGE OF PARAMETERS
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HEAT TRANSFER BEHAVIOUR AND FLOW FIELD CHARACTERISATION OF IMPINGING SYNTHETIC JETS FOR A WIDE RANGE OF PARAMETERS

机译:大范围参数撞击合成射流的传热特性和流场表征

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Impinging synthetic jets are considered as a potential solution for convective cooling, in applications that match their main characteristics (high local heat transfer rates, zero net mass flux, scalability, active control). Nevertheless the understanding of heat transfer to synthetic jets falls short of that available for steady jets. To address this, this paper uses detailed flow field measurements to help identify the main heat transfer mechanisms in impinging synthetic jets.Local heat transfer measurements have been performed for an impinging round synthetic jet at a range of Reynolds numbers between 1000 and 3000, nozzle to plate spacings between 4D and 16D and stroke lengths (L_0) between ID and 32D. The heat transfer results show evidence of distinct regimes in terms of L_0/D and L_0/H ratios. Based on appropriate scaling, four heat transfer regimes are identified which justifies a detailed study of the flow field characteristics.High speed particle image velocimetry (PIV) has been employed to measure the time-resolved velocity flow fields of the synthetic jet to identify the flow structures at selected L_0/H values corresponding to the identified heat transfer regimes. The flow measurements support the same regimes as identified from the heat transfer measurements and provide physical insight for the heat transfer behaviour.
机译:在符合其主要特性(高局部传热速率,零净质量通量,可扩展性,主动控制)的应用中,撞击式合成射流被认为是对流冷却的潜在解决方案。然而,对于传热到合成射流的理解还不足以用于稳定射流。为了解决这个问题,本文使用了详细的流场测量来帮助确定撞击合成射流的主要传热机制。 对于撞击的圆形合成射流,已经进行了局部传热测量,测得的雷诺数范围为1000到3000,喷嘴到板的间距为4D到16D,行程长度(L_0)介于ID到32D。传热结果显示出在L_0 / D和L_0 / H比方面有明显区别的证据。基于适当的缩放比例,确定了四个传热机制,这证明了对流场特性进行详细研究的合理性。 高速粒子图像测速技术(PIV)已用于测量合成射流的时间分辨速度流场,以识别与选定的传热方式相对应的选定L_0 / H值处的流动结构。流量测量支持与从传热测量中确定的相同状态,并为传热行为提供物理洞察力。

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