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Modeling single-phase counter-current natural convection heat removal in horizontal heated channel connected to vertical piping

机译:在连接到垂直管道的水平加热通道中建模单相逆电流自然对流散热

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This paper develops a simple mathematical model to examine the heat transfer phenomena in a single-phase counter-current subcooled water flow in a volumetrically heated horizontal channel connected to an unheated vertical pipe at each end as shown in Figure 1. In Figure 1, the heated horizontal channel and the vertical pipes connected to it are initially filled with subcooled water up to a certain height in the vertical pipes. The vertical pipes can have horizontal runs. The piping arrangement in the model with horizontal fuel (i.e., heated) channels and vertical feeder pipes is relevant to a reactor such as the Canadian Deuterium Uranium (CANDU) reactor. The single-phase water flow condition considered in the model is relevant to CANDU in a shutdown, maintenance state where the main heat-transport-circuit pumps are shutoff and the shutdown-cooling pumps are or become unavailable. Under such postulated loss-of shutdown-cooling pump scenario, it is desirable to know whether the fuel fission-product decay heat can be adequately removed by single-phase subcooled water natural-circulation flow before the water in the fuel channels begins to boil. Boiling and the resulting two-phase conditions, condensation and changes in the buoyancy forces induce intermittent flow in the channel causing intermittent limited fuel heatup Ref [1-3]. Unlike counter-current flow of gas and liquid, counter-current flow of liquids, particularly the same miscible unequal-temperature liquids and in the geometry considered in this paper has not been studied either theoretically or experimentally to the authors' knowledge.
机译:本文开发了一种简单的数学模型,用于在电动加热的水平通道中检查单相逆流过脱水水流中的传热现象,如图1所示。在图1中,加热的水平通道和连接到它的垂直管子最初将过冷水填充到垂直管中的一定高度。垂直管道可以具有水平运行。具有水平燃料(即,加热的)通道和垂直进料管的模型中的管道布置与加拿大氘铀(CANDU)反应器等反应器相关。在模型中考虑的单相水流量条件与Candu相关的,在关闭主热传输电路泵的维护状态下,关闭冷却泵或不可用。在这种假定的关闭关闭冷却泵场景下,期望通过单相脱水水自然循环流动在燃料通道开始沸腾之前,可以知道燃料裂变 - 产品衰减热量是否可以充分地除去。沸腾和所得到的两相条件,浮力力的缩合和变化诱导在通道中的间歇流动导致间歇有限的燃料换热Ref [1-3]。与气体和液体的逆流流动不同,液体的逆流流动,特别是相同的混溶性不等温度液体和在本文中考虑的几何形状中未经理论上或实验在作者的知识上进行了研究。

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