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    • 1. 发明专利
    • Local cleaning air conditioning system
    • 本地清洁空调系统
    • JP2011002108A
    • 2011-01-06
    • JP2009142924
    • 2009-06-16
    • Shimizu Corp清水建設株式会社
    • SUZUKI YOSHINOBUSHIRATANI TAKESHIKOMATSUBARA MASAYUKIHASEBE WATARUIZAWA KOICHI
    • F24F7/06
    • PROBLEM TO BE SOLVED: To provide a local cleaning air conditioning system capable of reducing cost, with respect to the local cleaning air conditioning system not distributing the cleaning air from just above the heating element as a cleaned object.SOLUTION: This local cleaning air conditioning system 100 in which the cleaning air of low temperature is distributed to the heating element 10 disposed in a room 2 to clean a surface of the heating element 10, includes heat exchange means 30 disposed at upper parts of the heating element 10 for cooling the air and supplying the air of low temperature, and air cleaning means 20 disposed at oblique upper parts or sides of an upper part of the heating element 10 for cleaning the air of low temperature supplied from the heat exchange means 30, and supplying the cleaning air toward the upper part of the heating element 10.
    • 要解决的问题:提供一种能够降低成本的局部清洁空调系统,相对于不将清洁空气从正好分布在加热元件上方的本地清洁空调系统作为清洁物体。解决方案:本地清洁空调 其中低温清洁空气被分配到设置在房间2中的加热元件10以清洁加热元件10的表面的系统100包括设置在加热元件10的上部以用于冷却空气的热交换装置30 并提供低温空气,以及设置在加热元件10的上部的倾斜上部或侧面的空气净化装置20,用于清洁从热交换装置30供应的低温空气,并将清洁空气供给 加热元件10的上部。
    • 2. 发明专利
    • Local cleaning air-conditioning system
    • 本地清洁空调系统
    • JP2006112755A
    • 2006-04-27
    • JP2004303173
    • 2004-10-18
    • Shimizu Corp清水建設株式会社
    • SUZUKI YOSHINOBUSHIRATANI TAKESHIKOMATSUBARA MASAYUKIKAJIMA TOMOAKI
    • F24F7/06
    • PROBLEM TO BE SOLVED: To provide a local cleaning air-conditioning system for locally cleaning a necessary range.
      SOLUTION: A heat exchange device 2 sucks air within a clean room 10 and blows out air having executed cooling load into the clean room 10, and an air cleaning device 3 sucks the air blown by the heat exchanger 2, and blows out cleaned air toward a local place within the clean room 10. Consequently, since the air cleanliness of the desired local place is increased, compared with the circumference, wastes of facility cost and energy consumption by supplying clean air to an unnecessary place to clean it can be eliminated. Since a partition for providing a return space for returning the air to the air cleaning device 3 is dispensed with, the waste of facility cost can be eliminated, and space efficiency such as story height of the clean room 10 can be improved. Further, the construction cost can be reduced, and the construction term can be also shortened.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供用于局部清洁必要范围的局部清洁空调系统。 解决方案:热交换装置2吸入洁净室10内的空气,将执行的冷却负荷的空气吹出到清洁室10内,空气净化装置3吸入由热交换器2吹出的空气,吹出 清洁空气朝向洁净室10内的本地。因此,由于与周围相比,与周围相比,通过向不需要的地方供应清洁空气来清洁设备成本和能量消耗的浪费,可以增加期望的局部位置的空气清洁度 被淘汰。 由于省去了用于将空气返回到空气净化装置3的返回空间的分隔件,可以消除设备成本的浪费,并且可以提高洁净室10的空间效率如故事高度。 此外,可以减少施工成本,也可以缩短施工期限。 版权所有(C)2006,JPO&NCIPI
    • 3. 发明专利
    • Mist removal apparatus
    • MIST拆卸装置
    • JP2007275763A
    • 2007-10-25
    • JP2006105218
    • 2006-04-06
    • Shimizu Corp清水建設株式会社
    • SUZUKI YOSHINOBUSHIRATANI TAKESHIKOMATSUBARA MASAYUKIIZAWA KOICHI
    • B01D46/10B01D39/16B01D47/00B01D53/34B01D53/77D04H1/4291G02F1/13
    • PROBLEM TO BE SOLVED: To efficiently remove a mist generated from a production apparatus in a liquid crystal plant, or the like. SOLUTION: A mist removal apparatus 10 is attached to various apparatus using a chemical, for removing a chemical mist contained in an exhaust gas G from the apparatus, and uses a non-woven fabric comprising a polyolefin fiber as a filter 11 for capturing the mist to be removed. The filter is arranged in a raised posture to be along with the vertical plane, the density of the fiber along with the horizontal direction is relatively made lower than that in the vertical direction, and a dropping route is so secured that a re-requefied chemical component naturally drops along with the fiber in the vertical direction without blocking the fiber in the horizontal direction. It is preferable that the surface of the filter has a sprinkler mechanism 13 for sprinkling washing water, and a sprinkler pipe formed with a number of sprinkling holes at predetermined intervals on the lower peripheral surface may be used as the sprinkler mechanism. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:为了有效地除去由液晶装置中的制造装置产生的雾等。 解决方案:使用化学品将除雾装置10附着到各种装置上,用于从装置中除去废气G中所含的化学雾,并使用包含聚烯烃纤维的无纺布作为过滤器11 捕获要除去的雾气。 过滤器以垂直平面的升高姿态布置,纤维的密度以及水平方向的密度相对于垂直方向的密度相对低,并且确保了下降路线,以确保重新排出的化学品 组分随着纤维在垂直方向自然滴落而不会在水平方向上阻塞纤维。 优选的是,过滤器的表面具有用于喷洒洗涤水的喷洒器机构13,并且可以使用在下周面上以预定间隔形成有多个喷洒孔的喷洒管作为喷洒机构。 版权所有(C)2008,JPO&INPIT
    • 4. 发明专利
    • Mist removing filter
    • MIST去除过滤器
    • JP2003305322A
    • 2003-10-28
    • JP2002113812
    • 2002-04-16
    • Shimizu Corp清水建設株式会社
    • SUZUKI YOSHINOBUSHIRATANI TAKESHISHIMIZU KAZUO
    • G02F1/13B01D39/20
    • PROBLEM TO BE SOLVED: To provide a high performance mist removing filter easy in maintenance and used for collecting chemical liquid mist contained in exhaust gas.
      SOLUTION: The mist removing filter 2 is formed by vertically arranging a plurality of stainless steel fibers 6 provided so as to be extended in member length to integrate them. The greater part of the stainless steel fibers 6 is vertically arranged and the chemical liquid mist collected by the mist removing filter 2 is gathered to a lower part along the stainless steel fibers 6 by utilizing gravitational action to prevent pressure loss. When the diameter of the fibers is set to 12 μm or less, collection efficiency is good but there is a tendency to easily raise pressure loss. When the diameter of the fibers is set to 50 μm or more, no compaction is generated even if chemical liquid mist is collected but a removing ratio becomes irregular. Accordingly, the diameter of the stainless steel fibers 6 is set to about 12-50 μm in order to obtain a higher removing ratio and a stable removing capacity.
      COPYRIGHT: (C)2004,JPO
    • 要解决的问题:提供易于维护的高性能除雾过滤器,并用于收集废气中所含的化学液体雾。 解决方案:除雾过滤器2是通过垂直布置设置成在构件长度上延伸的多个不锈钢纤维6而形成的,以使它们整合。 不锈钢纤维6的大部分是垂直布置的,并且由除雾过滤器2收集的化学液体雾通过利用重力作用聚集到不锈钢纤维6的下部以防止压力损失。 当纤维的直径设定为12μm以下时,收集效率良好,但存在易于提高压力损失的倾向。 当纤维的直径设定为50μm以上时,即使收集了化学液体雾,但除去比例变得不规则,也不产生压实。 因此,为了获得更高的除去率和稳定的除去能力,将不锈钢纤维6的直径设定为约12〜50μm。 版权所有(C)2004,JPO
    • 5. 发明专利
    • Air cleaning device
    • 空气清洁装置
    • JP2012217581A
    • 2012-11-12
    • JP2011085577
    • 2011-04-07
    • Shimizu Corp清水建設株式会社
    • SUZUKI YOSHINOBUSHIRATANI TAKESHIKOMATSUBARA MASAYUKIHASEBE WATARU
    • A61L9/16A61L9/01B01D53/14B01D53/18
    • PROBLEM TO BE SOLVED: To provide an air cleaning device for a clean room, which provides an excellent cleaning effect.SOLUTION: A filling material 12 with a hydrophilic property, which allows to-be-treated air to pass through as an upward stream, while the air makes contact with the material, and which also retains cleaning water, is arranged inside a filling tower 11 through which the to-be-treated air passes. The filling material retains the cleaning water by spraying the cleaning water from above the filling material by a cleaning water supply mechanism 20. Then, the to-be-treated air is cleaned by allowing the to-be-treated air to pass through the filling tower, while having contact with the filling material, and allowing contamination substances to be dissolved in the cleaning water retained in the filling material. The filling material is made by alternately laminating molded fabrics which are obtained by heat-sealing a fabric material made of polyester and a mesh material made of polypropylene, and spacers which are obtained by molding the mesh material made of polypropylene into a waveform, wherein the molded fabrics and the spacers are vertically postured inside the filling tower. The waveform formed in the spacers gives a horizontal transverse wave. The cleaning water supply mechanism is configured to supply the cleaning water containing ozone water.
    • 要解决的问题:提供一种洁净室的空气净化装置,其提供优异的清洁效果。 解决方案:具有亲水性的填充材料12,其允许待处理的空气作为向上的流通过,同时空气与材料接触并且还保留清洁水,布置在内部 待处理空气通过的填充塔11。 填充材料通过由清洗水供给机构20从填充材料的上方喷洒清洗水来保持清洗水。然后,被处理空气通过允许被处理空气通过填充物 塔,同时与填充材料接触,并且允许污染物质溶解在保留在填充材料中的清洁水中。 填充材料通过将由聚酯制成的织物材料和由聚丙烯制成的网状材料进行热封而获得的模制织物和通过将由聚丙烯制成的网状材料成型为波形而获得的间隔物交替层压, 模制织物和间隔件在填充塔内垂直姿态。 在间隔物中形成的波形产生水平横波。 清洗水供给机构构成为供给含有臭氧水的清洗水。 版权所有(C)2013,JPO&INPIT
    • 6. 发明专利
    • Clean room
    • 整理房间
    • JP2006071167A
    • 2006-03-16
    • JP2004254127
    • 2004-09-01
    • Shimizu Corp清水建設株式会社
    • SUZUKI YOSHINOBUSHIRATANI TAKESHIKOMATSUBARA MASAYUKIKAJIMA TOMOAKI
    • F24F7/06F24F9/00
    • PROBLEM TO BE SOLVED: To provide a clean room for delivering the cleaned air corresponding to a manufacturing device installed in a clean chamber, and improving space efficiency of a clean area.
      SOLUTION: The cleaned air supplied toward the substantially horizontal direction in the clean chamber 5 by an air cleaner 6, is delivered to the manufacturing device 10. Thus the cleaned air flows along a glass substrate G horizontally placed on the manufacturing device 10. As a result, the cleaned air is not disturbed even when a processing part 10b is formed at an upper part of the glass substrate G, and the glass substrate G can be constantly sealed by the cleaned air by washing away dust from the processing part 10b. In a case of performing a process of coating the glass substrate G with chemical including a solvent, a rate of diffusion of the solvent to an upper part is decreased by the cleaned air supplied toward the substantially horizontal direction. As an air passage for performing recirculating ventilation of mainly the airflow in the substantially horizontal direction, is formed, a floor or ceiling chamber becomes unnecessary, space efficiency can be improved, and a construction cost for duct work can be reduced.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种用于输送对应于安装在清洁室中的制造装置的清洁空气的洁净室,并且提高清洁区域的空间效率。 解决方案:通过空气滤清器6在清洁室5中向基本上水平的方向供应的净化空气被输送到制造装置10.因此,清洁的空气沿着水平放置在制造装置10上的玻璃基板G流动 结果,即使在玻璃基板G的上部形成处理部10b,清洁空气也不会受到干扰,并且可以通过从处理部分清除灰尘而被清洁的空气恒定地密封玻璃基板G. 10B。 在进行用包含溶剂的化学品涂布玻璃基板G的工序的情况下,通过向大致水平方向供给的净化空气使溶剂向上部扩散的速度降低。 作为主要在大致水平方向上进行气流的再循环通风的空气通路,形成有不需要地板或天花板室的空气通路,能够提高空间效率,能够降低管道工作的施工成本。 版权所有(C)2006,JPO&NCIPI
    • 8. 发明专利
    • Turbulence type clean room
    • TURBULENCE类型清洁室
    • JP2004278887A
    • 2004-10-07
    • JP2003069598
    • 2003-03-14
    • Sharp CorpShimizu Corpシャープ株式会社清水建設株式会社
    • SUZUKI HIDEYUKISHIRATANI TAKESHISUZUKI YOSHINOBUMIZUHARA KAZUKI
    • F24F7/06
    • PROBLEM TO BE SOLVED: To inexpensively perform the cleaning process and heating process of the air in a room with high space efficiency without wasting the space.
      SOLUTION: A heat exchanger 2 for sucking the air in a room 1 and blowing out the air into the room after processing the cooling/heating load, and an air cleaning device 3 for sucking the air blown out from the heat exchanger 2 and blowing out the cleaned air into the room, are mounted at an upper part in the room 1. Whereby the the air heated by the heat exchanger 2 is cleaned and blown out by the air cleaning device 3, and the air blown out by the air cleaning device 3 and convected in the room 1 is sucked by the heat exchanger 2 to be processed, and circulated in the room 1. Whereby the operation cost can be reduced without generating the waste air flow. Further by installing both of the heat exchanger 2 and the air cleaning device in the same room, a duct for moving the air by air flow becomes unnecessary, and the space can be effectively utilized. Further the construction cost for the duct work can be reduced, and a construction time can be shortened.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:为了廉价地执行空间效率高的房间中的空气的清洁处理和加热处理,而不浪费空间。 解决方案:一种用于吸入房间1中的空气并在处理冷却/加热负载之后将空气吹入室内的热交换器2和用于吸入从热交换器2吹出的空气的空气净化装置3 并且将清洁的空气吹入房间中,安装在房间1的上部。由热交换器2加热的空气被空气净化装置3清洁和吹出,并且由 室内1对流的空气净化装置3被被处理的热交换器2吸入,并在室内循环。由此可以降低运行成本而不产生废气流。 此外,通过将热交换器2和空气净化装置两者安装在同一个房间中,不需要用于通过气流移动空气的管道,并且可以有效地利用空间。 此外,可以减少管道工作的施工成本,并且可以缩短施工时间。 版权所有(C)2005,JPO&NCIPI