首页> 外文期刊>Journal of Aerosol Science >Experimental and theoretical study of a cone-jet for an electrospray microthruster considering the interference effect in an array of nozzles
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Experimental and theoretical study of a cone-jet for an electrospray microthruster considering the interference effect in an array of nozzles

机译:考虑喷嘴阵列干扰效应的电喷雾微推力器锥喷实验与理论研究

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摘要

The interference effect on an array of electrospray emitters is analytically and experimentally investigated.An analytical model is presented to predict the behavior of the operating voltage with respect to emitter spacing in an array of emitters.The basic idea of these models is to superimpose the electric potential of individual emitters together in an array of emitters.If only one of the emitters operates and no liquid is supplied through the neighboring emitters,the potential required to form a stable cone-jet generally increases as the emitters move closer to each other due to electrical shielding.However,at very close spacing the required potential decreases.If all the emitters operate simultaneously,the operating voltage required for cone-jet spraying increases as the emitter spacing decreases;furthermore,there is no decrease in potential when the spacing is very close.The results of the analytical electrostatic interference model agree well with the experimental data.
机译:对电喷雾发射器阵列的干扰效应进行了分析和实验研究,提出了一个分析模型来预测工作电压相对于发射器阵列中的发射器间距的行为,这些模型的基本思想是叠加电如果只有一个发射器在运行,并且没有液体通过相邻的发射器供应,则形成稳定的锥形射流所需的电势通常会随着发射器彼此之间的移动而彼此接近而增加但是,在非常近的间距处,所需的电势会降低。如果所有的发射器同时工作,则锥射流喷涂所需的工作电压会随着发射器间距的减小而增加;此外,当间距非常小时,电势不会降低分析静电干扰模型的结果与实验数据吻合良好。

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