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Body-force-driven multiplicity and stability of combined free and forced convection in rotating curved ducts: Coriolis force

机译:体力驱动的旋转弯管中自由对流和强制对流组合的多重性和稳定性:科里奥利力

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A numerical study is made on the fully developed bifurcation structure and stability of forced convection in a rotating curved duct of square cross-section. Solution structure is determined as variation of a parameter that indicates the effect of rotation (Coriolis-force-driven multiplicity). Three solutions for the flows in a stationary curved duct obtained in the work of Yang and Wang [1] are used as initial solutions of continuation calculations to unfold the solution branches. Twenty-one solution branches are found comparing with five obtained by Selmi and Nandakumar [2]. Dynamic responses of the multiple solutions to finite random disturbances are examined by the direct transient computation. Results show that characteristics of physically realizable fully developed flows changes significantly with variation of effect of rotation. Fourteen sub-ranges are identified according to characteristics of physically realizable solutions. As rotation effect changes, possible physically realizable fully-developed flows can be stable steady 2-cell state, stable multi-cell state, temporal periodic oscillation between symmetric/asymmetric 2-cell/4-cell flows, temporal oscillation with intermittency, temporal chaotic oscillation and temporal oscillation with pseudo intermittency. Among these possible physically realizable fully developed flows, stable multi-cell state and stable steady 2-cell state exist as dual stable. And oscillation with pseudo intermittency is a new phenomenon. In addition to the temporal oscillation with intermittency, sudden shift from stationary stable solution to temporal chaotic oscillation is identified to be another way of onset of chaos.
机译:对充分发展的分叉结构和方形截面旋转弯管中强制对流的稳定性进行了数值研究。解决方案结构被确定为指示旋转效果的参数变化(科里奥利力驱动的多重性)。在Yang和Wang [1]的工作中获得的三个固定弯管中流动的解被用作连续计算的初始解以展开解分支。与Selmi和Nandakumar [5]获得的5个相比,发现了21个解分支。通过直接瞬态计算检查了多种解决方案对有限随机扰动的动态响应。结果表明,随着旋转效应的变化,物理上可实现的充分发展的流的特征将发生显着变化。根据物理上可实现的解决方案的特征,确定了14个子范围。随着旋转效果的变化,可能的可物理实现的完全发展的流可以是稳定的2单元稳定状态,稳定的多单元状态,对称/非对称2单元/ 4单元流之间的时间周期振荡,具有间歇性的时间振荡,时间混沌振荡和时间振荡,具有伪间歇性。在这些可能的可物理实现的充分发展的流程中,稳定的多单元状态和稳定的稳定2单元状态以双重稳定状态存在。具有伪间歇性的振荡是一种新现象。除了具有间歇性的时间振荡外,从静止稳定解到时间混沌振荡的突然转变被认为是另一种引起混沌的方式。

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