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樟脑驱动转子的尺寸与其角速度之间的关系。

Relationship between the size of a camphor-driven rotor and its angular velocity.

作者信息

Koyano Yuki, Gryciuk Marian, Skrobanska Paulina, Malecki Maciej, Sumino Yutaka, Kitahata Hiroyuki, Gorecki Jerzy

机构信息

Department of Physics, Chiba University, Chiba 263-8522, Japan.

Institute of Physical Chemistry, Polish Academy of Sciences, Warsaw 01-224, Poland.

出版信息

Phys Rev E. 2017 Jul;96(1-1):012609. doi: 10.1103/PhysRevE.96.012609. Epub 2017 Jul 31.

Abstract

We consider a rotor made of two camphor disks glued below the ends of a plastic stripe. The disks are floating on a water surface and the plastic stripe does not touch the surface. The system can rotate around a vertical axis located at the center of the stripe. The disks dissipate camphor molecules. The driving momentum comes from the nonuniformity of surface tension resulting from inhomogeneous surface concentration of camphor molecules around the disks. We investigate the stationary angular velocity as a function of rotor radius ℓ. For large ℓ the angular velocity decreases for increasing ℓ. At a specific value of ℓ the angular velocity reaches its maximum and, for short ℓ it rapidly decreases. Such behavior is confirmed by a simple numerical model. The model also predicts that there is a critical rotor size below which it does not rotate. Within the introduced model we analyze the type of this bifurcation.

摘要

我们考虑一个由两个樟圆盘粘贴在塑料条两端下方制成的转子。圆盘漂浮在水面上,塑料条不接触水面。该系统可绕位于塑料条中心的垂直轴旋转。圆盘会散发樟脑分子。驱动力矩来自圆盘周围樟脑分子表面浓度不均匀导致的表面张力不均匀性。我们研究作为转子半径ℓ函数的稳定角速度。对于大的ℓ,角速度随ℓ增加而减小。在ℓ的特定值时,角速度达到最大值,而对于小的ℓ,它迅速减小。这种行为由一个简单的数值模型得到证实。该模型还预测存在一个临界转子尺寸,低于此尺寸转子不会旋转。在引入的模型中,我们分析这种分岔的类型。

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