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Effective viscosity of puller-like microswimmers: a renormalization approach

机译:类拉丝机的有效粘度:重新归一化方法

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摘要

Effective viscosity (EV) of suspensions of puller-like microswimmers (pullers), for example Chlamydamonas algae, is difficult to measure or simulate for all swimmer concentrations. Although there are good reasons to expect that the EV of pullers is similar to that of passive suspensions, analytical determination of the passive EV for all concentrations remains unsatisfactory. At the same time, the EV of bacterial suspensions is closely linked to collective motion in these systems and is biologically significant. We develop an approach for determining analytical EV estimates at all concentrations for suspensions of pullers as well as for passive suspensions. The proposed methods are based on the ideas of renormalization group (RG) theory and construct the EV formula based on the known asymptotics for small concentrations and near the critical point (i.e. approaching dense packing). For passive suspensions, the method is verified by comparison against known theoretical results. We find that the method performs much better than an earlier RG-based technique. For pullers, the validation is done by comparing them to experiments conducted on Chlamydamonas suspensions.
机译:难以对所有游泳者浓度进行测量或模拟,而像拉克达莫纳斯藻类这样的拉式微游泳器(拉杆)的悬浮液的有效粘度(EV)。尽管有充分的理由期望拉拔器的EV与被动悬挂相似,但对于所有浓度的被动EV的分析测定仍不能令人满意。同时,细菌悬浮液的EV与这些系统中的集体运动密切相关,在生物学上具有重要意义。我们开发了一种方法来确定在所有浓度下的拉马悬挂以及被动悬挂的分析电动势估计。所提出的方法基于重归一化组(RG)理论的思想,并基于已知的渐近线在较小浓度和接近临界点(即接近密集堆积)的情况下构造EV公式。对于被动悬架,通过与已知理论结果进行比较来验证该方法。我们发现该方法的性能比基于RG的早期技术要好得多。对于拉拔器,通过将它们与衣藻悬挂系统进行的实验进行比较来进行验证。

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