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Numerical simulation of the leaky dielectric microdroplet generation in electric fields

机译:电场中泄漏电介质微滴产生的数值模拟

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摘要

Microdroplet generation has a vast range of applications in the chemical, biomedical, and biological sciences. Several devices are applied to produce microdroplets, such as Co-flow, T-junction and Flow-focusing. The important point in the producing process is controlling the separated fluid volume in these devices. On the other hand, a large number of liquids, especially aqueous one, are influenced by electric or magnetic fields. As a consequence, an electric field could be used in order to affect the separated fluid volume. In this study, effects of an electric field on the microdroplet generation in a Co-flow device are investigated numerically. Furthermore, effects of some electrical properties such as permittivity on the separating process of microdroplets are studied. Leaky dielectric and perfect dielectric models are used in this investigation. According to the results, in the microdroplet generating process, leaky dielectric fluids show different behaviors, when an electric field is applied to the device. In other words, in a constant electric field strength, the volume of generated microdroplets can increase or decrease, in comparison with the condition without the electric field. However, for perfect dielectric fluids, droplet volume always decreases with increasing the electric field strength. In order to validate the numerical method of this study, deformation of a leaky dielectric droplet in an electric field is investigated. Results are compared with Taylor theoretical model.
机译:微滴的产生在化学,生物医学和生物科学中具有广泛的应用。应用了几种设备来产生微滴,例如并流,T型结和流聚焦。生产过程中的重点是控制这些设备中分离出的液体量。另一方面,大量液体,尤其是水性液体,会受到电场或磁场的影响。结果,可以使用电场以影响分离的流体体积。在这项研究中,数值研究了共流装置中电场对微滴产生的影响。此外,研究了诸如介电常数的一些电性能对微滴分离过程的影响。本研究使用泄漏的电介质和完美的电介质模型。根据结果​​,在微滴产生过程中,当向设备施加电场时,泄漏的介电液表现出不同的行为。换句话说,在恒定的电场强度下,与没有电场的情况相比,产生的微滴的体积可以增加或减少。但是,对于理想的介电液,液滴体积总是随着电场强度的增加而减小。为了验证本研究的数值方法,研究了漏电介质滴在电场中的变形。将结果与泰勒理论模型进行比较。

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