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Aspect ratio effects on heat transfer in MHD laminar flow through rectangular channels in the plasma facing components of fusion reactors

机译:长宽比对MHD层流通过聚变反应堆面向等离子体组件中矩形通道的传热的影响

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Convective heat transfer in MHD laminar flow through rectangular ducts in the plasma facing components (PFCs) of fusion reactors is analyzed numerically to estimate: the effects of channel aspect ratio, defined as the ratio of the lengths of the plasma facing side to the other side. The adverse effect of the nonuniformity of surface heat flux on Nusselt number (Nu) at the plasma facing side can be alleviated by increasing the aspect ratio of a rectangular duct. At the center and corner of the plasma facing side of a square duct, the Nu for non-MHD flow are 6.8 and 2.2, respectively, for uniform surface heat flux. In the presence of a strong transverse magnetic field, Nu at the center and corner increases to 23 and 3.4, respectively. However, when the heat flux is highly nonuniform, as in the PFCs, Nu decreases from 23 to 3.1 at the center and from 3.4 to 3.0 at the corner. When the aspect ratio is increased to 4, Nu at the center and corner increase to 5.0 and 4.75, or by 47% and 58%, respectively. The optimum aspect ratio for best thermal performance is a function of transverse magnetic field strength and increases with it.
机译:对MHD层流通过聚变反应堆等离子面对组件(PFC)中矩形管道的对流传热进行了数值分析,以估算:通道纵横比的影响,定义为等离子面对侧与另一侧的长度之比。通过增加矩形管的长宽比,可以减轻表面热通量不均匀对等离子面对侧的努塞尔数(Nu)的不利影响。在方形管道的面向等离子体的侧面的中心和角,非MHD流动的Nu分别为6.8和2.2,以实现均匀的表面热通量。在强横向磁场的作用下,中心和拐角处的Nu分别增加到23和3.4。但是,当热通量高度不均匀时(如PFC中一样),Nu在中心从23降低到3.1,在角部从3.4降低到3.0。当长宽比增加到4时,中心和角落的Nu分别增加到5.0和4.75,即分别增加47%和58%。获得最佳热性能的最佳长宽比是横向磁场强度的函数,并随横向磁场强度的增加而增加。

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