The resultant electric field intensities and distributions on the heat transfer surface were numerically calculated. 通過(guò)數值分析,計算了不同電極布置下?lián)Q熱面上的電場(chǎng)強度及分布。
The results show that a longer residence time and a stronger electric field intensity can result in enhanced coalescing efficiency of the droplets. 包覆絕緣層的電極板在小間距下能有效破乳并防止擊穿,且電場(chǎng)強度越大停留時(shí)間越長(cháng),聚結效果越顯著(zhù)。