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The development of negative ion generation equipment which is not accompanied by ozone

The development of negative ion generation equipment which is not accompanied by ozone
不伴随臭氧的负离子发生设备的开发
批准号:
13650055
负责人:
SHIMOKAWA Hirofumi
金额:
$0.64万
依托单位国家:
日本
项目类别:
Grant-in-Aid for Scientific Research (C)
财政年份:
2001
资助国家:
日本
项目状态:
已结题
起止时间:
2001 至 2003

项目摘要

项目成果

SHIMOKAWA Hirofumi的其他基金

相关文献

中文摘要
翻译
试验了不向环境产生臭氧的负离子生成装置的研制。所采用的方法是将感应场应用于微小水滴的产生。它用于从喷嘴喷射、对固体的碰撞和超声波雾化为分割方法。在本次研究中获得的一个知识整理如下:b[1]在喷射过程中,已知微小的水滴离子在喷管喷射过程中产生。在感应场的作用下,似乎得到了这样的结果。(1)可以通过注射电极的位置和电压来控制喷射过程中产生的起电雾量。(2)通过静电感应,可以产生超过自然喷射产生的负电荷量的2位数以上的带电雾。(3)有可能使低纯度的水产生许多带电雾(1)当水射流与金属发生碰撞时,在射流的极性上产生反极化的带电雾。(2)随着冲击角度的增大和冲击速度的增大,起电雾增大。(3)起电雾的产生速率很大程度上取决于水的电阻率,存在起电雾最小的电阻率。(4)当水射流在金属上的水层中发生碰撞时,就会出现这种现象。(5)对于反向极化起电雾的产生,可以认为是由于水面上诱导的像电荷分裂或水滴上极化电荷分裂所致超声波雾化(1)通过电极的位置可以使产生电流最大化。(2)与喷管喷射或碰撞相比,采用超声雾化的方法有可能使产生电流增加2位数。(3)在超声雾化中应用感应场的方法比其他方法更有效。少
英文摘要
The development of the negative ion generation equipment without the generation of ozone to the environment was tried. Used method applies the induction field in the minute water droplet generation. It used in ejecting from the nozzle, collision to the on solid and ultrasonic atomization for the division method.A knowledge got in this study is arranged in the following.[1] In the ejectingIt is known that the minute water droplet ion in the ejecting from the nozzle is generated. It seem to obtain the result, when the induction field is applied.(1) It is possible to control the quantity of electrification fog which arises in the ejecting by position and voltage of the injuced electrode.(2) By the electrostatic induction, it is possible to generate electrification fog over the 2 digits further than the quantity of negative charge witch arises in the natural ejecting.(3) It is possible to make to arise many electrification fog of the water with the low purity.[2] In the collision to the on … More solid(1) The reversely-polarized electrification fog arises on the polarity of the jet, when the water jet is made to collide o the metal.(2) The electrification fog increases, as the impact angle increases, and as the impact speed increases.(3) The generation rate of the electrification fog is greatly dependent on the resistivity of the water, and the resistivity in which the electrification fog is minimized exists.(4) This phenomenon arises, when the water jet collides in the layer in the water on the metal.(5) For the generation of the reverely-plarized electrification fog, it is considered to originate from division of image electric charge induced on the water surface or division of the polarization charge on water droplet.[3] The ultrasonic atomization(1) It is possible to maximize the generation current by the position of the electrode.(2) It is possible that the method by the ultrasonic atomization increases 2 digits the generation current in comparison with ejecting or in the collision from the nozzle.(3) The method for applying induction field in the ultrasonic atomization is more powerful than other method. Less
期刊论文(1)
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会议论文
下川博文: "水の噴出時および衝突時の負イオンの発生"神奈川工科大学研究報告. 28-B. 33-39 (2004)
Hirofumi Shimokawa:“水喷射和碰撞期间负离子的产生”神奈川技术学院研究报告28-B 33-39(2004)。
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通讯作者:
Function Enhancement of Polymer Pipe Internal Wall by RF Plasma
  • 批准号:
    10650028
  • 项目类别:
    Grant-in-Aid for Scientific Research (C)
  • 资助金额:
    $1.98万
  • 财政年份:
    1998
  • 负责人:
    SHIMOKAWA Hirofumi
  • 依托单位:
Impact Electrification of High Purity Water on Insulating Solids
  • 批准号:
    63550242
  • 项目类别:
    Grant-in-Aid for General Scientific Research (C)
  • 资助金额:
    $1.22万
  • 财政年份:
    1988
  • 负责人:
    SHIMOKAWA Hirofumi
  • 依托单位: