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首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Experimental study of particulate fouling in partially filled channel with open-cell metal foam
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Experimental study of particulate fouling in partially filled channel with open-cell metal foam

机译:用开放式金属泡沫部分填充通道颗粒污垢的实验研究

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This study experimentally investigates particle transport and deposition processes in a partially filled channel with an open-cell metal foam. Various blockage ratio (a ratio of foam height and channel height) in range of 0.05-0.39, and pore density (10 and 30 PPI) were used to determine the effects of the foam microstructure and exterior shape on the propensity of particulate fouling. In-situ observations were conducted using a high-speed camera to determine the particle trajectory and velocity in the partially filled channel. Result shows a complex transport and deposition process, which is significantly influenced by the particle size and pore diameter. If merely considering the exterior shape of the foam, a higher blockage ratio causes more deposition in the upstream region. While, a low blockage ratio causes more deposition on the top surface of the foam block, regardless of pore density. These results demonstrate that the foam arrangement and heights play primary roles in influencing the preferential deposition areas, which is originally associated with flow behaviours in the partially filled channel. Interestingly, the foam microstructure not only blocks and traps the flowing particles, yet causing the breakage of particle clusters. These particles either disperse within the incoming flow or cause more depositions on the foam surfaces. The build-up deposits would increase the pressure drops, as expected, but the effects of pore density become insignificant over time.
机译:该研究通过开放式电池金属泡沫来实验在部分填充的通道中研究颗粒传输和沉积过程。在0.05-0.39的范围内(泡沫高度和通道高度的比例)和孔密度(10和30ppi)的各种堵塞率(泡沫高度和通道的比例)用于确定泡沫微观结构和外部形状对颗粒污垢倾向的影响。使用高速摄像机进行原位观察,以确定部分填充通道中的粒子轨迹和速度。结果表明复杂的传输和沉积过程,其受粒径和孔径的显着影响。如果仅考虑泡沫的外形状,则较高的阻塞比在上游区域中导致更多沉积。虽然,不管孔密度,低封闭率导致泡沫块的顶表面上的沉积更多。这些结果表明,泡沫布置和高度在影响优先沉积区域时发挥主要作用,其最初与部分填充的通道中的流动行为相关联。有趣的是,泡沫微观结构不仅块状和捕获流动的颗粒,但却导致颗粒簇的破损。这些颗粒在进入流动内分散或导致泡沫表面上的更多沉积。堆积沉积物如预期的那样,增加压降,但随着时间的推移,孔密度的影响变得微不足道。

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