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首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Creation of very-low-Reynolds-number chaotic fluid motions in microchannels using viscoelastic surfactant solution
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Creation of very-low-Reynolds-number chaotic fluid motions in microchannels using viscoelastic surfactant solution

机译:使用粘弹性表面活性剂溶液在微通道中产生极低的雷诺数混沌流体运动

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Solutions of flexible high-molecular-weight polymers or some kinds of surfactant are viscoelastic fluids. The elastic stress is induced in such viscoelastic fluid flows and grows nonlinearly with the flow-rate resulting in many particular flow phenomena, including purely elastic instability. The purely elastic instability can even result in a kind of chaotic fluid motion, the so-called elastic turbulence, which is a recently discovered flow phenomenon and arises at arbitrarily small Reynolds number. By using viscoelastic surfactant solution, we attempted to create the peculiar chaotic fluid motions in several specially designed microchannels in which flows with curvilinear streamlines can be generated. The viscoelastic working fluids were aqueous solutions of surfactant, CTAC/NaSal (cetyltrimethyl ammonium chloride/sodium salicylate). CTAC solutions with weight concentration of 200 ppm (part per million) and 1000 ppm, respectively, at room temperature were tested. For comparison, water flows in the same microchannels were also visualized. The Reynolds numbers for all the microchannel flows were quite small (for solution flows, the Reynolds numbers were the order of or smaller than one) and the flow should be definitely laminar for Newtonian fluid. It was found that the regular laminar flow patterns for low-Reynolds-number Newtonian fluid flow in different microchannels were strongly deformed in solution flows: either asymmetrical flow structures or time-dependent vortical fluid motions appeared. These chaotic flow phenomena were considered to be induced by the viscoelasticity of the CTAC solutions. Discussions about the potential applications using such kind of chaotic fluid motions were also made.
机译:柔性高分子聚合物或某些表面活性剂的溶液是粘弹性流体。弹性应力在这种粘弹性流体流中引起,并随着流速非线性增长,从而导致许多特殊的流动现象,包括纯弹性不稳定性。纯粹的弹性不稳定性甚至可能导致一种混沌的流体运动,即所谓的弹性湍流,这是最近发现的流动现象,并且以任意小的雷诺数出现。通过使用粘弹性表面活性剂溶液,我们尝试在几个经过特殊设计的微通道中创建特殊的混沌流体运动,在这些微通道中可以生成具有曲线流线的流动。粘弹性工作流体是表面活性剂CTAC / NaSal(鲸蜡基三甲基氯化铵/水杨酸钠)的水溶液。测试了CTAC溶液在室温下的浓度分别为200 ppm(百万分之一)和1000 ppm。为了进行比较,还可以看到相同微通道中的水流。所有微通道流的雷诺数都非常小(对于溶液流,雷诺数为1或小于1的量级),并且对于牛顿流体,该流绝对应为层流。发现在不同的微通道中,低雷诺数牛顿流体的规则层流模式在溶液流中发生了强烈变形:出现了不对称的流动结构或随时间变化的涡旋流体运动。这些混沌流动现象被认为是由CTAC溶液的粘弹性引起的。还讨论了使用这种混沌流体运动的潜在应用。

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