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

机译:圆形堆垛设计中抗风支撑的实验测量

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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 triangularrnarrangement 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:发电厂的更高容量以及对环境注意事项的越来越多的认识导致堆的高度更高。可以看出,强风可能导致烟囱掉落。因此,为了避免烟囱掉落,烟囱的空气动力学考虑非常重要。在工业和电力行业中,仅一堆是不够的,并且需要两三层才能正常运行设备。以适当的方式布置堆叠以防止其倒下非常重要。当前的实验研究集中在三个不同的排列,即三个附近的堆叠彼此的相互影响上。线性,并排和三角形。实验找出了以不同构型作用在烟囱上的合力的方向,从而可以相对于从当地气象数据获得的风向进行正确的支撑布置。从这些实验中可以得出的其他结论是:(a)沿风线性排列的第二个烟囱承受最大的阻力,因此更容易因阵风而跌落,而最后一个烟囱受到的阻力最小,因此(b)并排布置时,尽管中间的布置受到最大阻力,但左右叠层上的提升力要大得多,因此与之相比,施加在它们上面的合力要大得多中间一个。 (c)在三角形排列的情况下,左右角堆上的升力也是如此,与位于三角形顶点的前堆上的合力相比,作用在它们上的合力要大得多。因此,该研究对于研究风力对不同布置的三个堆垛的影响非常重要,并且对于将支撑物放置在适当的位置以免堆垛状结构因风而失效非常有帮助。

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