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Natural convection in an enclosure with disconnected and conducting solid blocks

机译:封闭且导电的实心块的封闭空间中的自然对流

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Natural convection through a rectangular enclosure filled with a fluid bathing several discrete, conducting and disconnected solid objects is common in many applications, such as environmental control (e.g., indoor buildings, storage), materials processing (e.g., drying), food processing (e.g., baking), and electronics (e.g., cabinets). The case of an enclosure heated from the side and containing equally spaced, conducting solid square blocks is investigated here by using a continuum model, which treats the fluid and solid constituents individually. The dispersive effect of the solid constituent is isolated by increasing the number of solid blocks (N) while reducing their size as to maintain their relative total volume constant. Results obtained for a wide Rayleigh number (Rd) range and several values of solid-to-fluid conductivity ratio (k) show the strong hindrance effect of the blocks on the convection process to be dependent on a minimum number of blocks, N{sub}(min) for every Ra. An analytical expression predicting N{sub}(min) is proposed and validated by the numerical results.
机译:在许多应用中,例如对环境进行控制(例如,室内建筑物,存储),材料处理(例如,干燥),食品处理(例如,)的过程中,通过充满流体的矩形外壳进行自然对流是很常见的,该液体对多个离散的,导电的和断开的固体物体进行冲洗,烘烤)和电子设备(例如橱柜)。在这里,通过使用连续模型来研究从侧面加热并包含均匀分布的导电正方形块的外壳的情况,该模型分别处理流体和固体成分。通过增加固体嵌段(N)的数量同时减小其尺寸以保持其相对总体积恒定来分离固体成分的分散作用。在较宽的瑞利数(Rd)范围和数个固液电导率比(k)值下获得的结果表明,嵌段对流过程的强烈阻碍作用取决于最小的嵌段数N {sub }(每分钟Ra)。提出了预测N {sub}(min)的解析表达式,并通过数值结果进行了验证。

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