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Numerical studies on flow and heat transfer in membrane helical-coil heat exchanger and membrane serpentine-tube heat exchanger

机译:膜螺旋螺旋换热器和膜蛇形管换热器内流动和传热的数值研究

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The flow and heat transfer characteristics of synthesis gas (syngas) in membrane helical-coil heat exchanger and membrane serpentine-tube heat exchanger under different operating pressures, inlet velocities and pitches are investigated numerically. The three-dimensional governing equations for mass, momentum and heat transfer are solved using a control volume finite difference method. The realizable k-e model is adopted to simulate the turbulent flow and heat transfer in heat exchangers. There flows syngas in the channels consisting of the membrane helical coils or membrane serpentine tubes, where the operating pressure varies from 0.5 to 3.0 MPa. The numerically obtained heat transfer coefficients for heat exchangers are in good agreement with experimental values. The results show that the syngas tangential flow in the channel consisting of membrane helical coils is significant to the heat transfer enhancement to lead to the higher average heat transfer coefficient of membrane helical-coil heat exchanger compared to membrane serpentine-tube heat exchanger. The syngas tangential velocity in the membrane helical-coil heat exchanger increases along the axial direction, and it is independent of the gas pressure, increasing with the axial velocity and axial pitch rise and decreasing with the radial pitch rise.
机译:数值研究了在不同的工作压力,入口速度和螺距下,膜螺旋螺旋换热器和膜蛇形管换热器中合成气的流动和传热特性。使用控制体积有限差分法求解了质量,动量和热传递的三维控制方程。采用可实现的k-e模型来模拟热交换器中的湍流和传热。合成气在由膜螺旋线圈或膜蛇形管组成的通道中流动,其中操作压力在0.5到3.0 MPa之间变化。数值计算得出的换热器换热系数与实验值吻合良好。结果表明,与膜蛇形管式换热器相比,在膜螺旋盘管组成的通道中合成气的切向流对传热的提高具有重要意义,从而导致膜螺旋盘管换热器的平均传热系数更高。膜螺旋螺旋换热器中的合成气切向速度沿轴向增加,并且与气体压力无关,随轴向速度和轴向螺距的增加而增加,而随径向螺距的增加而减小。

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