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首页> 外文期刊>Chemical Engineering Science >Large eddy simulations and stereoscopic particle image velocimetry measurements in a scraped heat exchanger crystallizer geometry
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Large eddy simulations and stereoscopic particle image velocimetry measurements in a scraped heat exchanger crystallizer geometry

机译:刮板式热交换器结晶器几何形状中的大型涡流模拟和立体粒子图像测速仪测量

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摘要

The transport phenomena in scraped heat exchanger (HE) crystallizers are critical for the process performance. Fluid flow and turbulence close to the HE surface as generated by stirring elements and scraper blades are crucial in this respect as they aim at avoiding an insulating scale layer on the HE surface. For this reason we performed large-eddy simulations of the turbulent flow (at a Reynolds number of 5×10~4) in a typical cooling crystallizer geometry with a focus on the bottom region where the heat exchanging surface was located. The flow simulations were validated with stereoscopic PIV experiments performed higher up in the crystallizer. Water at a constant temperature was the working fluid in the experiments as well as in the simulations. For reasons of optical accessibility being hindered by the scrapers, the experiments could not be done near the heat exchanging surface. The flow structures as revealed by the large-eddy simulations could explain the local occurrence of scaling on an evenly cooled HE surface, and its irreproducibility caused by instantaneous cold spots.
机译:刮板式换热器(HE)结晶器中的运输现象对工艺性能至关重要。在这方面,由搅拌元件和刮刀产生的靠近HE表面的流体流动和湍流在这方面至关重要,因为它们的目的是避免HE表面上的绝缘垢层。因此,我们对典型冷却结晶器几何形状中的湍流(雷诺数为5×10〜4)进行了大涡模拟,重点是热交换表面所在的底部区域。通过在结晶器中较高位置进行的立体PIV实验验证了流动模拟。在实验以及模拟中,恒温水都是工作流体。由于刮板妨碍了光学可及性,因此无法在热交换表面附近进行实验。大涡模拟所揭示的流动结构可以解释在均匀冷却的HE表面结垢的局部发生,以及由瞬时冷点引起的不可再现性。

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