首页> 外文会议>International Mechanical Engineering Congress and Exposition 2007 >NUMERICAL INVESTIGATIONS OF THE JET BREAKUP REGIME OF ELECTROSPRAY IONIZATION USING A CARBON FIBER EMITTER
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NUMERICAL INVESTIGATIONS OF THE JET BREAKUP REGIME OF ELECTROSPRAY IONIZATION USING A CARBON FIBER EMITTER

机译:使用碳纤维发射器的电喷雾电离射流破裂系统的数值研究

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This paper presents numerical investigations of jet breakup in electrospray ionization using a carbon fiber emitter. The emitter has a pointed carbon fiber located coaxial with a fused silica capillary of 360μm OD and 75μm ID, with its tip extending 30 micron beyond the capillary exit. The model employs leaky-dielectric formulations to solve electrodynamics and volume-of-fluid technique for tracking the interface. The existing leaky-dielectric model is modified to consider presence of free charges both in the bulk of the liquid as well as on the interface. A velocity perturbation is used at the capillary inlet to emulate the naturally occurring disturbance necessary for the jet breakup. The model is first validated by comparing the model predictions with experimental results for a conventional emitter. Then, it is used to simulate electrospray performance of the carbon fiber emitter, including the Taylor cone and jet breakup processes. The influence of emitter geometry and operating conditions are thoroughly investigated. The droplet diameter and velocity are correlated with flow rate and the correlation results are compared with that reported in literature.
机译:本文介绍了使用碳纤维发射器进行电喷雾电离时射流破裂的数值研究。发射器的尖端碳纤维与外径为360μm,内径为75μm的熔融石英毛细管同轴,其尖端延伸超过毛细管出口30微米。该模型采用漏电介质公式来解决电动力学问题,并采用流体体积技术来跟踪界面。对现有的泄漏电介质模型进行了修改,以考虑在液体的大部分以及界面中都存在自由电荷。在毛细管入口处使用速度扰动来模拟喷流破裂所需的自然扰动。首先通过将模型预测值与常规发射器的实验结果进行比较来验证模型。然后,它用于模拟碳纤维发射器的电喷雾性能,包括泰勒锥和射流破碎过程。彻底研究了发射器几何形状和工作条件的影响。液滴直径和速度与流速相关,并将相关结果与文献报道的结果进行比较。

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