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首页> 外文期刊>International Journal of Thermal Sciences >Constructal entransy dissipation minimization of round tube heat exchanger cross-section
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Constructal entransy dissipation minimization of round tube heat exchanger cross-section

机译:圆管热交换器横截面的结构传递损失最小化

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摘要

Cross-section of round tube heat exchanger with porous materials is optimized by taking entransy dissipation rate minimization as optimization objective. The non-dimensional mean temperature differences of the cross-section with and without high conducting fins inserted are derived, respectively. By taking the radius ratio R_(in)/R_(out) between inner radius and outer radius as a design variable, the entransy dissipation rates are minimized. The heat transfer ability of the heat exchanger without high conducting fins inserted is improved as R_(in)/R_(out) increases, and the non-dimensional mean temperature difference decreases from 2/(3π) to 1/(3π). The heat transfer ability of the heat exchanger with high conducting fins inserted is much better than that without high conducting fins inserted, and the entransy dissipation rate varies a little when R_(in)/R_(out) apart from 1.
机译:以最小化通道耗散率为优化目标,优化了多孔材料圆管换热器的横截面。分别得出插入和不插入高导热鳍片时截面的无量纲平均温差。通过将内半径和外半径之间的半径比R_(in)/ R_(out)作为设计变量,可以最大程度地减小传输耗散率。随着R_(in)/ R_(out)的增加,没有插入高导热鳍片的热交换器的传热能力得到提高,并且无量纲平均温差从2 /(3π)减小至1 /(3π)。插入高导热鳍片的热交换器的传热能力比没有插入高导热鳍片的热交换器的传热能力要好得多,当R_(in)/ R_(out)大于1时,传热耗散率变化很小。

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