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首页> 外文期刊>Experiments in Fluids >An experimental study of unsteady natural convection in a reservoir model subject to periodic thermal forcing using combined PIV and PIT techniques
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An experimental study of unsteady natural convection in a reservoir model subject to periodic thermal forcing using combined PIV and PIT techniques

机译:PIV和PIT组合技术在周期性热强迫作用下的储层模型非恒定自然对流的实验研究。

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The present experimental investigation is concerned with the transient flow response in a reservoir model to periodic heating and cooling at the water surface. The experiment reveals a stable stratification of the water body during the heating phase and an unsteady mixing flow in the reservoir during the cooling phase. It is shown that thermal instabilities play an important role in breaking up the residual circulation and initiating a reverse flow circulation in deep waters after the switch of thermal forcing from heating to cooling. Moreover, the heating from the water surface results in a stable large-scale convective roll that is clearly observed in the experiment. The present flow visualization is carried out with the application of thermo-chromic liquid crystals. Quantitative temperature and velocity fields are extracted using Particle Image Thermometry and Particle Image Velocimetry techniques. Understanding of the flow mechanisms pertinent to this problem is important for predicting the transport of nutrients and pollutants across reservoirs.
机译:目前的实验研究涉及在储层模型中对水面周期性加热和冷却的瞬态流动响应。实验表明,在加热阶段水体稳定分层,在冷却阶段水库中混合流不稳定。结果表明,在将热强迫从加热转换为冷却后,热不稳定性在深水中打破残余循环和引发逆流循环中起着重要作用。此外,水表面的加热导致稳定的大型对流辊,这在实验中可以清楚地观察到。当前的流动可视化是通过使用热致变色液晶进行的。使用粒子图像测温和粒子图像测速技术提取定量的温度和速度场。了解与该问题有关的流动机制对于预测营养物和污染物在水库之间的运输非常重要。

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