폭기처리용 미세공기 혼합노즐
    11.
    发明公开
    폭기처리용 미세공기 혼합노즐 无效
    使用电弧处理混合空气的喷嘴

    公开(公告)号:KR1020100068957A

    公开(公告)日:2010-06-24

    申请号:KR1020080127482

    申请日:2008-12-15

    Inventor: 김영덕 이연원

    Abstract: PURPOSE: A nozzle for mixing fine air for aeration treatment is provided to minimize aggregation between air bubble particles and buoyancy which is created due to the aggregation of the air bubble particles by spraying countless fine air bubbles with steam water. CONSTITUTION: A nozzle for mixing fine air for aeration treatment includes a nozzle body(11) which is connected to an discharge pipe(18) for steam water. An injection path having an internal diameter, which gradually narrow as reaching to a nozzle outlet(13) from the discharge pipe, is included inside the nozzle body. A cylindrical air chamber(14) is installed on the outer leading end of the nozzle body. Multiple microchannel(16) is radially formed along the circumference of the leading end of the nozzle body.

    Abstract translation: 目的:提供用于混合用于曝气处理的精细空气的喷嘴,以最小化由于气泡颗粒的聚集而产生的气泡颗粒和浮力之间的聚集,通过用蒸汽水喷射无数细小的气泡。 构成:用于混合用于曝气处理的精细空气的喷嘴包括连接到用于蒸汽水的排出管(18)的喷嘴体(11)。 具有从排出管到达喷嘴出口(13)时逐渐变细的内径的喷射路径被包括在喷嘴体内。 圆筒状空气室(14)安装在喷嘴体的外部前端。 多个微通道(16)沿着喷嘴体的前端的圆周径向地形成。

    자연에너지를 이용한 해수의 농축 및 담수화시스템
    12.
    发明授权
    자연에너지를 이용한 해수의 농축 및 담수화시스템 有权
    使用自然能源从海水中获取新鲜水的系统

    公开(公告)号:KR100768334B1

    公开(公告)日:2007-10-18

    申请号:KR1020060104134

    申请日:2006-10-25

    Inventor: 김영덕 이연원

    Abstract: A system for concentration and desalination of seawater using natural energy is provided to perform a desalination operation more promptly by accelerating evaporation and condensation of seawater under the vacuum conditions, minimize an operating cost of the system by utilizing natural energy to the maximum extent in the desalination operation, and further improve desalination efficiency of seawater by arranging an additional condensation structure of a condensate line or a heat pipe. A system(1) for concentration and desalination of seawater using natural energy comprises: a vacuum evaporation chamber(10) having a fresh water tray(12) and a filter(13) installed in an inner center thereof; a seawater line(11) which is inserted into an inner upper side of the vacuum evaporation chamber to form a vapor condensation part in a state that the seal water line extends from a seawater storage tank(5) and has a circulation pump(11a) installed thereon, and which extends from the inner upper side of the vacuum evaporation to an outer side of the vacuum evaporation, passes through a first heat exchanger(4), and is reinserted into an inner part of the vacuum evaporation chamber corresponding to a lower side of the fresh water tray such that a seawater spray nozzle(11b) is formed on a front end of the seawater line; a spa water line(3) which extends from a spa water circulation tank(2) and has a circulation pump(3a) installed thereon to form a structure of heat exchange with the seawater line in the first heat exchanger, and which is connected to the spa water circulation tank again; and a heat medium line(14) which has a circulation pump(14a) installed thereon, and has a closed circuit shape at an inner lower side of the vacuum evaporation chamber, of which one end is inserted into the vacuum evaporation chamber to form a seawater evaporation structure adjacently to the seawater spray nozzle, and of which the other end extends to an outer side of the vacuum evaporation chamber to exchange heat with hot water supplied from a power and heat generating tank(6) by a turbine(7).

    Abstract translation: 提供一种利用天然能源对海水进行浓缩和淡化的系统,通过在真空条件下加速海水的蒸发和冷凝,更及时地进行脱盐作业,通过最大限度地在淡化海水中利用天然能量来最小化系统的运行成本 通过设置冷凝管线或热管的附加冷凝结构,进一步提高海水的淡化效率。 用于使用天然能量对海水进行浓缩和脱盐的系统(1)包括:具有安装在其内部中心的淡水盘(12)和过滤器(13)的真空蒸发室(10) 在密封水线从海水储罐(5)延伸并具有循环泵(11a)的状态下插入真空蒸发室的内侧上部以形成蒸汽冷凝部的海水管线(11) 并且从真空蒸发的内侧上侧延伸到真空蒸镀的外侧,通过第一热交换器(4),并且重新插入真空蒸镀室的与下部相对应的内部 在海水线的前端形成有海水喷雾嘴11b, 一个从温泉水循环罐(2)延伸并具有循环泵(3a)的水疗水管线(3),其上安装有循环泵(3a),以形成与第一热交换器中的海水管线的热交换的结构,并且连接到 温泉水循环箱再次; 和具有安装在其上的循环泵(14a)的热介质管线(14),并且在真空蒸发室的内下侧具有闭路形状,其一端插入真空蒸发室中以形成 海水蒸发结构与海水喷嘴相邻,并且其另一端延伸到真空蒸发室的外侧,以与由涡轮机(7)从动力和发热箱(6)供应的热水进行热交换。

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