首页> 外文会议>International conference on nanochannels, microchannels and minichannels;ICNMM2009 >HEAT TRANSFER CHARACTERISTICS OF GASEOUS SLIP FLOW IN CONCENTRIC MICRO ANNULAR TUBES
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HEAT TRANSFER CHARACTERISTICS OF GASEOUS SLIP FLOW IN CONCENTRIC MICRO ANNULAR TUBES

机译:集中式微环形管中气态滑移流的传热特性

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A concentric micro annular passage is a basic and important micro-geometry of micro-fluidic-systems from simple heat exchanger to the most complicated nuclear reactors. Therefore, heat transfer characteristics of gaseous flows in concentric micro annular tubes with constant heat flux whose value was positive or negative were numerically investigated. The slip velocity, temperature jump and shear stress work were considered on the slip boundary. The numerical methodology was based on the Arbitrary-Lagrangian-Eulerian (ALE) method. The computations were performed for two thermal cases. This is, the heat flux was constant at the inner wall and outer wall was adiabatic (Case 1) and the heat flux was constant at the outer wall and the inner wall was adiabatic (Case 2). Each constant heat flux of 10~4 Wm~(-2) for the positive value and -10~4 Wm~(-2) for the negative value was chosen. The outer tube radius ranged from 20 to 150 μm with the radius ratio 0.02, 0.05, 0.1, 0.25 and 0.5 and the ratio of length to hydraulic diameter was 100. The stagnation pressure was chosen in such a way that the exit Mach number ranges from 0.1 to 0.7. The outlet pressure was fixed at the atmospheric pressure. The heat transfer characteristics in concentric micro annular tubes were obtained. The wall and bulk temperatures with positive heat flux are compared with those of negative heat flux cases and also compared with those of the simultaneously developing incompressible flow. The results show that the compressible slip flow Nusselt number is different from that of incompressible flow. And, the temperatures normalized by heat flux have different trends whether heat flux value is positive or negative. A correlation for the prediction of the heat transfer characteristics of gas slip flow in concentric micro annular tubes is proposed.
机译:同心的微环形通道是从简单的热交换器到最复杂的核反应堆的微流体系统的基本且重要的微几何形状。因此,数值研究了恒定热通量为正或负的同心微环形管中气流的传热特性。在滑移边界上考虑了滑移速度,温度跃变和切应力功。数值方法基于任意拉格朗日欧拉(ALE)方法。针对两个热工况进行了计算。即,内壁的热通量是恒定的,外壁是绝热的(情况1),外壁和内壁的热通量是恒定的(情况2)。选择的恒定热通量分别为正值10〜4 Wm〜(-2)和负值-10〜4 Wm〜(-2)。外管半径范围为20至150μm,半径比为0.02、0.05、0.1、0.25和0.5,长度与水力直径的比为100。停滞压力的选择应使出口马赫数为0.1至0.7。出口压力固定在大气压。获得了同心微环形管中的传热特性。将具有正热通量的壁温和体温与负热通量的情况相比较,还与同时发展的不可压缩流的相比较。结果表明,可压缩滑流的努塞尔数与不可压缩流的数值不同。并且,通过热通量归一化的温度具有不同的趋势,无论热通量值是正还是负。提出了一种用于预测同心微环形管中气体滑流传热特性的相关性。

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