论文标题

研究浸入湍流中的板上波动力的起源

Investigating the origins of fluctuation forces on plates immersed in turbulent flows

论文作者

Putt, Daniel, Ostilla-Mónico, Rodolfo

论文摘要

即使系统平均为固定,也可能在具有复杂能量分区的系统中产生净力。这些力通常称为波动力,因为它们由于对物体的特性而产生的,因此它们会被称为波动力。我们继续对Spandan \ emph {et al。},\ textit {sci进行调查。 Adv。,6(14),EABA0461}(2020),他在均质各向同性湍流中发现了两个平行的正方形板之间有吸引力的波动力(hit)。我们进行模拟,以系统地改变板尺寸和雷诺数。在$re_λ= 100 $的小板显示单调力依赖性,最大的力对于最小的板间隔,而中和大板显示在中间分离处具有最大吸引力的力的非单调行为。我们发现,与能量相关的统计数据无法解释对力的板分离的依赖性,但是与涡度有关的统计数据确实显示出与最大力相对应的板分离周围的定性变化。这表明板块在影响强烈的涡度结构中的作用对于力的行为至关重要。通过减少$re_λ$,我们表明去除涡流拉伸会减少吸引力,但并不能完全消除它,并发现中间距离处的局部最大值成为局部最小值。这证实了吸引力与涡度有关,同时暗示存在第二种机制 - 支持对早期工作的两倍起源的提议:板既限制了缝隙中能量结构的存在,又限制了强烈的涡流结构,彼此之间会互相延伸,从而导致压力下降。

A net force can arise on objects which lie in systems with complex energy partitions, even if the system is on average stationary. These forces are usually called fluctuation forces, as they arise due to the objects modifying the character of the fluctuations within the system. We continue the investigation of Spandan \emph{et al.}, \textit{Sci. Adv., 6(14), eaba0461} (2020), who found an attractive fluctuation force between two parallel square plates in homogeneous isotropic turbulence (HIT). We conduct simulations which systematically vary the plate size and Reynolds number. At $Re_λ=100$ small plates show a monotonic force dependence, with a maximum force for the smallest plate separations, while medium and large plates show a non-monotonic behaviour of the force with maximum attractive force at intermediate separations. We find that energy-related statistics cannot explain the dependence on plate separation of the force, but that statistics related to vorticity do show qualitative variations around the plate separation corresponding to the maximum force. This suggests that the role of plates in affecting intense vorticity structures is critical to the behaviour of the force. By decreasing $Re_λ$, we show that removing vortex stretching decreases the attractive force, but does not completely eliminate it, and find that the local maximum at intermediate distances becomes a local minimum. This confirms that the attractive force is related to vorticity, while suggesting that a second mechanism is present -- supporting the proposal for a two-fold origin from earlier work: the plates both restrict the presence of energy structures in the slit and pack intense vortical structures which stretch each other causing the pressure to drop.

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