Effectiveness of Copper as an Electrode Material on Enhancement of Electrohydrodynamic Drying Process

M. S. Khan, M. Rehman
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Abstract

In the present investigation, enhancement in the drying rate by an AC corona discharge from a single Copper (Cu) needle electrode was evaluated experimentally. The electrode generates corona wind (ionic wind), which impinges on, and eliminates moisture from the surface of a moist test sample. The corona discharge was generated by connecting the needle electrode to an alternating current (AC) power source. The drying sample consisted of 5mm soda lime glass beads saturated with water. Experiments were performed in the presence and absence of airflow over the drying samples, which were subjected to the corona discharge. The discharge was regulated, and experiments were conducted with 1 kV increments from the corona inception voltage till the sparkover occurred. Each experiment lasted for at least two hours and fifty minutes. The weight loss in the sample containers and the ambient temperature and relative humidity were all monitored. In each instance, a companion experiment was conducted concurrently. The results show that Copper (Cu) as an electrode material effectively influences the enhancement of an EHD drying process. With low-velocity cross-flow ( ) assisting in the drying enhancement.
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铜作为电极材料对电流体动力干燥过程的强化效果
在本研究中,实验评估了单铜针电极的交流电晕放电对干燥速率的提高。电极产生电晕风(离子风),它撞击并消除潮湿测试样品表面的水分。电晕放电是通过将针电极与交流电源连接而产生的。干燥样品由5毫米钠石灰玻璃珠浸水组成。实验是在存在和不存在气流的干燥样品,这是受到电晕放电。调节放电,从电晕起始电压开始,以1 kV的增量进行实验,直到发生火花。每次实验至少持续2小时50分钟。监测样品容器的失重情况以及环境温度和相对湿度。在每个实例中,同时进行了一个同伴实验。结果表明,铜(Cu)作为电极材料可以有效地影响EHD干燥过程的增强。具有低速交叉流(),有助于干燥增强。
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