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Total magnetic force on a ferrofluid droplet in microgravity

机译:在微匍匐液体中的铁磁流体液滴的总磁力

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摘要

The formulation of the total force exerted by magnetic fields on ferrofluids has historically been a subject of intense debate and controversy. Although the theoretical foundations of this problem can now be considered to be well established, significant confusion still remains regarding the implementation of the associated expressions. However, the development of future applications in low-gravity environments is highly dependent on the correct modeling of this force. This paper presents a contextualized analysis of different proposed calculation procedures and validation in a space-like environment. Kinematic measurements of the movement of a ferrofluid droplet subjected to an inhomogeneous magnetic field in microgravity are compared with numerical predictions from a simplified physical model. Theoretical results are consistent with the assumptions of the model and show an excellent agreement with the experiment. The Kelvin force predictions are included in the discussion to exemplify how an incomplete modeling of the magnetic force leads to significant errors in the absence of gravity.
机译:由磁场施加的磁场上施加的总力的制剂历来是争论和争议的主题。虽然现在可以认为这个问题的理论基础是很好的,但很大的混乱仍然仍然关于相关表达的实施。然而,在低重力环境中的未来应用的发展高度依赖于对该力的正确建模。本文介绍了对空间环境中不同建议的计算程序和验证的上下文分析。将经过微重力的非均匀磁场的铁磁流体液滴的运动测量与简化物理模型的数值预测进行了比较。理论结果与模型的假设一致,并与实验表现出很好的一致性。在讨论中包括Kelvin力预测以举例说明磁力的不完全建模如何导致严重性的显着误差。

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