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EXPERIMENTAL MEASUREMENTS OF WIND-RESISTANT SUPPORT IN A CIRCULAR STACK DESIGN

机译:圆形堆叠设计中防风支架的实验测量

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Higher capacities of power plants together with increased awareness on environmental considerations have led to taller height of stacks. It is seen that strong wind can result in falling of stacks. So aerodynamic considerations of stacks is very important in order to save the falling of stacks. One stack is not enough in industries and power sectors and two or three stacks are required for proper operation of the unit. It is very important to arrange the stacks in proper way to resist their downfall. The present experimental study concentrates on the mutual effect of three nearby stacks on each other at three different arrangements, viz. linear, side-by-side and triangular. The experiments find out the directions of resultant forces acting on the stacks in different configurations so that proper arrangement of supports can be made with respect to the wind directionality obtained from local meteorological data. The other conclusions that could be drawn from these experiments are: (a) the second stack in along wind linear arrangement experiences the most drag and hence is much more susceptible to falling down with high gusts, whereas the last stack experiences the least drag and hence less prone to the downfall. (b) In side-by-side arrangement, although the middle one experiences maximum drag, the lift forces on the right and left stacks are far greater and hence the resultant force on them are much more in comparison to the middle one. (c) In the triangular arrangement also, the lift force being so pronounced on the right and left corner stacks, the resultant force on them will be much higher in comparison to that on the front stack sitting at the apex of the triangle. Thus, this study is important in studying the effect of wind force on three stacks in different arrangements and is very helpful in placing the supports in proper places in order to avoid failing of stack-like structures due to wind.
机译:发电厂的更高容量随着对环境考虑因素的提高而导致叠层的高度更高。值得看出,强风会导致堆叠下降。因此,堆叠的空气动力学考虑对于挽救堆栈的下降非常重要。在行业和电源行业中,一堆堆栈不够,并且需要两组或三个堆栈来正确操作本机。以适当的方式安排堆栈是非常重要的,以抵抗他们的垮台。目前实验研究专注于三种不同布置,Ziz在彼此的三个附近堆叠的相互影响。线性,并排和三角形。实验在不同配置中找到了作用在堆叠上的所得力的方向,从而可以对从局部气象数据获得的风化方向进行适当的支撑装置。可以从这些实验中得出的另一种结论是:(a)沿着风线性排列的第二堆叠最大拖动,因此更容易用高阵风跌倒,而最后一堆又能拖累拖累不太容易出现垮台。 (b)以旁边的布置,虽然中间的经历了最大阻力,但右侧和左堆叠的升力远远远甚大,因此与中间的相比之下,它们上的所得势更多。 (c)在三角形布置中,伸出力在右侧和左角堆叠中如此明显,与坐在三角形的前堆叠上的前堆叠上,它们的所得到的力将要高得多。因此,该研究对于研究风力在不同布置中的三个堆叠的影响方面很重要,并且非常有助于将支撑件放置在适当的地方,以避免由于风引起的堆叠状结构。

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