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Average Convective Heat Transfer Coefficients in Single Screw Extrusion of Non‐Newtonian Food Materials

机译:非牛顿食品原料单螺杆挤出的平均对流传热系数

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AbstractThis study deals with solving the Graetz‐Nusselt problem for single‐screw extrusion of power law fluids with viscous dissipation along the channel. The momentum and energy equations were solved numerically for the temperature and velocity profiles, which were then used for determining the Nusselt number. Results are presented in terms of the Nusselt, Brinkman, and reciprocal Graetz numbers.The results indicate that the Nusselt number is relatively unaffected by the Brinkman number, for both heating and cooling. However, the Brinkman number significantly affects the bulk temperature. For Brinkman numbers less than ‐40, the rate of viscous heat generation is greater than the convective cooling capacity of the extruder. Increasing the screw compression ratio produced significant increase in bulk temperature and Nusselt number for the case of heating. The Nusselt number is less sensitive to the flow behavior index for the case of cooling, while somewhat sensitive for the case of heating. Data from the literature were compared to results from this ana
机译:摘要本研究旨在求解沿通道粘性耗散的幂律流体单螺杆挤压的Graetz-Nusselt问题。对温度和速度分布的动量和能量方程进行数值求解,然后用于确定努塞尔数。结果以 Nusselt、Brinkman 和倒数 Graetz 数表示。结果表明,无论是加热还是冷却,努塞尔数都相对不受布林克曼数的影响。然而,Brinkman 数显着影响体积温度。对于小于 ‐40 的 Brinkman 数,粘性热的产生速率大于挤出机的对流冷却能力。在加热的情况下,增加螺杆压缩比可显著提高体积温度和努塞尔数。努塞尔数对冷却情况下的流动行为指数不太敏感,而对加热情况下则有些敏感。将文献数据与本分析的结果进行比较

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