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首页> 外文期刊>Nuclear engineering and technology >Single Bubble Dynamic Behavior in AL(2)O(3)/H2O Nanofluid on Downward-Facing Heating Surface
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Single Bubble Dynamic Behavior in AL(2)O(3)/H2O Nanofluid on Downward-Facing Heating Surface

机译:向下加热表面上AL(2)O(3)/ H2O纳米流体中的单气泡动力学行为

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摘要

After a severe accident to the nuclear reactor, the in-vessel retention strategy is a key way to prevent the leakage of radioactive material. Nanofluid is a steady suspension used to improve heat-transfer characteristics of working fluids, formed by adding solid particles with diameters below 100 nm to the base fluids, and its thermal physical properties and heat transfer characteristics are much different from the conventional working fluids. Thus, nanofluids with appropriate nanoparticle type and volume concentration can enhance the heat-transfer process. In this study, the moving particle semi-implicit method-meshless advection using flow-directional local grid method is used to simulate the bubble growth, departure, and sliding on the downward-facing heating surface in pure water and nanofluid (1.0 vol.% Al2O3/H2O) flow boiling processes; additionally, the bubble critical departure angle and sliding characteristics and their influence are also investigated. The results indicate that the bubble in nanofluid departs from the heating surface more easily and the critical departure inclined angle of nanofluid is greater than that of pure water. In addition, the influence of nanofluid on bubble sliding is not significant compared with pure water. Copyright (C) 2016, Published by Elsevier Korea LLC on behalf of Korean Nuclear Society.
机译:在核反应堆发生严重事故后,船内保留策略是防止放射性物质泄漏的关键方法。纳米流体是一种稳定的悬浮液,用于改善工作流体的传热特性,它是通过向基础流体中添加直径小于100 nm的固体颗粒而形成的,其热物理性质和传热特性与常规工作流体有很大不同。因此,具有合适的纳米颗粒类型和体积浓度的纳米流体可以增强传热过程。在这项研究中,使用流动粒子半隐式方法-使用流向局部网格方法的无网格对流来模拟纯水和纳米流体(1.0 vol。% Al2O3 / H2O)流动沸腾过程;此外,还研究了气泡的临界离去角和滑动特性及其影响。结果表明,纳米流体中的气泡更容易离开加热表面,并且纳米流体的临界离开倾斜角大于纯水。另外,与纯水相比,纳米流体对气泡滑动的影响并不显着。版权所有(C)2016,由Elsevier Korea LLC代表韩国核协会出版。

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