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    • 1. 发明专利
    • 送気システム
    • 空气供应系统
    • JP2014202046A
    • 2014-10-27
    • JP2013081567
    • 2013-04-09
    • 大成建設株式会社Taisei Corp株式会社流機エンジニアリングRyuki Engineering:Kk
    • MARUYAMA OSAMUNISHIMURA AKIRA
    • E21F1/00E21F5/20
    • 【課題】地中に施工された導坑の分岐点で分岐した2以上のトンネルを施工するに当たり、導坑内において配管が敷設困難であるといった課題を解消でき、かつ経済的に2以上のトンネル内を換気するシステムを構築することのできる送気システムを提供する。【解決手段】地中Gに施工された導坑30(立坑)を介し、導坑30の分岐点30aで分岐した2以上のトンネル40A,40Bのそれぞれに送気する送気システム10であり、導坑30の坑外20(地上)に配設される1台の送風機1と、送風機1に流体連通して導坑30を通り、分岐点30aまで延びる1本の本管2と、分岐点30aにおいて1本の本管2から各トンネル40A,40Bに分岐した2以上の枝管3A,3Bとからなり、それぞれの枝管3A,3Bには枝管の先端から吐出される空気の送風量を調整する風量調整機4A,4Bが装備されている。【選択図】図1
    • 要解决的问题:提供一种能够解决管道难以布置在导频隧道中并且允许构建用于两个或更多个隧道的内部经济通风的系统的空气供应系统,当两个或更多个 构筑在地下建造的先导隧道的分支点处的隧道分支。解决方案:供气系统10将空气供给到在先导隧道30的分支点30a处通过先导通道(轴)分支的两个或更多个隧道40A,40B, 空气供应系统10包括:一个设置在飞行员隧道的外部20(地面)上的送风机1; 与鼓风机1连通的一个主管2,穿过导引通道30,并延伸到分支点30a; 以及在分支点30a处从主管2分支到各个隧道40A,40B的两个或更多个支管3A,3B。 分支管3A,3B分别配备有用于调节从分支管的末端排出的空气的鼓风量的空气量调节器4A,4B。
    • 2. 发明专利
    • Apparatus for gas reaction of liquid to be treated
    • 气体反应液待处理的装置
    • JP2014140814A
    • 2014-08-07
    • JP2013011161
    • 2013-01-24
    • Ryuki Engineering:Kk株式会社流機エンジニアリング
    • NISHIMURA AKIRA
    • B01J10/00B01D19/00B01D61/00C02F1/66
    • PROBLEM TO BE SOLVED: To provide a high-reaction efficiency apparatus for gas reaction of a liquid to be treated.SOLUTION: A gas reaction apparatus 10 for contacting and reacting a gas G with a liquid W1 to be treated comprises: a reaction tank 11; a feed passage 81 for the liquid W1 connected to the reaction tank 11; a feed pump P1 provided on the midstream of the feed passage 81; a gas G-mixing path 83 connected to the feed passage 81 at the upstream side of the feed pump P1; a filter 21 through which the liquid W1 fed into the reaction tank 11 is passed to separate the gas G mixed in the liquid W1 from the liquid W1; and a circulation path 83 whose one end is connected to the reaction tank 11 and the another end is connected to the feed passage 81 at the upstream side of the feed pump P1. The apparatus 10 is composed so that the gas G accumulating in the reaction tank 11 circulates through a circulation path 84.
    • 要解决的问题:提供用于待处理液体的气体反应的高反应效率装置。解决方案:用于使气体G与待处理的液体W1接触和反应的气体反应装置10包括:反应罐11 ; 连接到反应槽11的液体W1的进料通道81; 设置在进料通道81的中游的进料泵P1; 在进料泵P1的上游侧连接到进料通道81的气体G混合路径83; 供给到反应槽11中的液体W1通过的过滤器21将液体W1中混合的气体G与液体W1分离; 以及一端与反应槽11连接而另一端与供给泵P1的上游侧的供给路81连接的循环路径83。 组合装置10使积聚在反应槽11中的气体G循环通过循环路径84。
    • 3. 发明专利
    • Powder refilling facility and accelerator refilling facility
    • 粉末改造设施和加速器修复设施
    • JP2010174496A
    • 2010-08-12
    • JP2009017717
    • 2009-01-29
    • Ryuki Engineering:Kk株式会社流機エンジニアリング
    • NISHIMURA AKIRA
    • E21D11/10B65G53/16B65G65/40
    • PROBLEM TO BE SOLVED: To provide a powder refilling facility such as an accelerator refilling facility for which hard labor is not required for installation and removal.
      SOLUTION: This powder refilling facility includes a refilling tank 20 having an inlet 21 for powder F, a conveying flow passage 30 to which the powder F in the refilling tank 20 is fed, and a compressor 40 for blowing a carrier air A1 into the conveying flow passage 30. The powder F1 fed into the conveying flow passage 30 is conveyed into the powder tank 100 by means of the carrier air A1. The powder refilling facility further includes a lid device 50 affixed to the powder tank 100, a return flow passage 60 communicating with an outlet 53 formed in the lid device 50, and a dust collection means 70 to which an discharged air A2 passing through the inside of the return flow passage 60 is guided. The powder F2 discharged from the outlet 53 together with the discharged air A2 is guided to the dust collection means 70, and the discharged powder F2 collected by the dust collection means 70 is returned to the inside of the refilling tank 20.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种粉末填充设备,例如不需要用于安装和拆卸的劳动的加速器再填充设备。 解决方案:该粉末填充设备包括:具有粉末F的入口21的再填充槽20,补充罐20中的粉末F被供给的输送流路30;以及用于吹送载气A1的压缩机40 输送到输送流路30中的粉末F1通过载气A1输送到粉罐100内。 粉末补充设备还包括固定在粉盒100上的盖装置50,与形成在盖装置50中的出口53连通的回流通道60以及通过内部的排出空气A2的集尘装置70 引导回流通道60。 从出口53排出的粉末F2与排出空气A2一起被引导到集尘装置70,并且由灰尘收集装置70收集的排出的粉末F2返回到再填充罐20的内部。 (C)2010,JPO&INPIT
    • 4. 发明专利
    • Dust removal equipment and dust removal method
    • 除尘设备和除尘方法
    • JP2008063739A
    • 2008-03-21
    • JP2006240072
    • 2006-09-05
    • Ryuki Engineering:KkTaisei Corp大成建設株式会社株式会社流機エンジニアリング
    • TOTSUGI KAZUOHARADA HIROSHIHAYASHI MASAYA
    • E21F5/20
    • PROBLEM TO BE SOLVED: To provide dust removal equipment and a dust removal method, which enable dust to be effectively and efficiently recovered from polluted air generated in a tunnel, and which enable the maintenance of a proper environment in the tunnel and an increase in the construction efficiency of the tunnel.
      SOLUTION: This dust removal equipment 100 comprises: a movable dust collecting chamber 1 which is equipped with an air inlet 11a for the polluted air; filter materials 41 etc. for adsorbing and removing the dust D from the polluted air sucked into the dust collecting chamber 1; a plurality of pipelines 51 etc. which are provided in positions corresponding to the filter materials 41 etc., respectively, so as to move the dust D, falling/accumulated downward, by air; and a hopper portion 61 which recovers the moved dust. The movement of the dust by the air is sequentially and intermittently performed and controlled toward the pipeline 56 close to a recovery means, from the pipeline 51 in a position farthest away from the recovery means.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供除尘设备和除尘方法,其能够有效地从隧道中产生的污染空气中回收灰尘,并且能够在隧道中维持适当的环境,并且 提高隧道施工效率。 解决方案:该除尘设备100包括:可移动集尘室1,其配备有用于污染空气的进气口11a; 过滤材料41等,用于从被吸入集尘室1的污染空气吸附除去灰尘D; 分别设置在与过滤材料41等对应的位置上的多个管路51等,以便通过空气移动下降/累积的尘埃D; 以及回收移动的灰尘的料斗部61。 空气中的尘埃的运动从远离回收装置的最远处的管道51顺序并间歇地执行并被控制到靠近回收装置的管道56。 版权所有(C)2008,JPO&INPIT
    • 5. 发明专利
    • Dust collecting device of electric furnace
    • 集尘装置电炉
    • JP2014126215A
    • 2014-07-07
    • JP2012280682
    • 2012-12-25
    • Ryuki Engineering:Kk株式会社流機エンジニアリング
    • NISHIMURA AKIRA
    • F27D17/00F27B3/10
    • PROBLEM TO BE SOLVED: To provide a dust collecting device of an electric furnace which exhibits excellent dust collecting performance in both a state that a furnace cover does not cover an opening of the electric furnace and a state that the cover covers the opening.SOLUTION: An air blow-out nozzle 20 and an air suction nozzle 10 are arranged at positions which sandwich an opening 2A of an electric furnace 2, and air sucked from the suction nozzle 10 is sent to a dust collector 50 through a first passage 81. Furthermore, a second passage 82 for making the blow-out nozzle 20 and the first passage 81 communicate with each other is arranged, and air switching means 40 for switching a flow direction of air to a forward direction or a reverse direction is arranged in the second passage 82. Then, in a state that a furnace cover 3 does not cover the opening 2A, air in the second passage 82 flows to the forward direction, is made to blow out of the blow-out nozzle 20, and sucked from the suction nozzle 10, and on the other hand, in a state that the furnace cover 3 covers the opening 2A, the air in the second passage 82 flows to the reverse direction, and sucked from the blow-out nozzle 20.
    • 要解决的问题:提供一种电炉的集尘装置,其在炉盖不覆盖电炉的开口的状态和罩盖开口的状态下都具有优异的集尘性能。解决方案: 空气吹出喷嘴20和吸气喷嘴10布置在夹着电炉2的开口2A的位置,并且从吸嘴10吸入的空气通过第一通道81被送到集尘器50.另外 设置有用于使吹出喷嘴20和第一通路81彼此连通的第二通道82,并且在第二通道82中布置有用于将空气的流动方向向正向或反向切换的空气切换装置40 然后,在炉盖3不覆盖开口2A的状态下,第二通路82中的空气朝向前方流动,从吹出喷嘴20吹出,从壳体 在喷嘴10上,另一方面,在炉盖3覆盖开口2A的状态下,第二通路82中的空气向相反方向流动,并从吹出喷嘴20吸入。
    • 6. 发明专利
    • Deodorizing apparatus and deodorizing method
    • 除臭装置和除臭方法
    • JP2011251250A
    • 2011-12-15
    • JP2010126724
    • 2010-06-02
    • Ryuki Engineering:Kk株式会社流機エンジニアリング
    • NISHIMURA AKIRA
    • B01D53/38A61L9/14A61L9/16B01D46/00B01D53/81B01F7/04
    • PROBLEM TO BE SOLVED: To provide a deodorizing apparatus which performs stable deodorization and is economical.SOLUTION: The deodorizing apparatus for gas G1 containing a malodorous component has: an atomizing means 25 for turning a neutralizing liquid X into dry fog Wd; a mixing/agitating means 27 for mixing and agitating the dry fog Wd of the neutralizing liquid X provided by the atomizing means 25 and the gas G1 containing the malodorous component; an adsorbent mixing means 28, 28A, B for mixing a powdery adsorbent Y with the gas G1 subjected to processing of the mixing/agitating means 27; and a filter 29B through which the gas G1 with the adsorbent Y mixed by the adsorbent mixing means 28, 28A, B passes.
    • 要解决的问题:提供一种进行稳定除臭并且经济的除臭装置。 解决方案:用于含有恶臭成分的气体G1的除臭装置具有:用于将中和液体X转变为干雾Wd的雾化装置25; 用于混合和搅拌由雾化装置25提供的中和液体X的干雾Wd和含有恶臭成分的气体G1的混合/搅拌装置27; 用于将粉末状吸附剂Y与经过混合搅拌装置27处理的气体G1混合的吸附剂混合装置28,28A,B; 和通过吸附剂混合机构28,28A,B混合的吸附剂Y的气体G1通过的过滤器29B。 版权所有(C)2012,JPO&INPIT
    • 7. 发明专利
    • Center form
    • 中心形式
    • JP2008031715A
    • 2008-02-14
    • JP2006205689
    • 2006-07-28
    • Gifu Kogyo Co LtdOhbayashi CorpRyuki Engineering:Kk岐阜工業株式会社株式会社大林組株式会社流機エンジニアリング
    • ASANO NOBUHIDETOTANI KAORUKURAMITSU KENTAROHONDA HIDEOHIRAOKA TERUNORINISHIMURA AKIRA
    • E21D11/10
    • PROBLEM TO BE SOLVED: To shorten a construction period of tunnel work while turning an inside working closed space SP1 of a center form 1 in an excellent work environment regardless of the season.
      SOLUTION: This center form 1 has a form 21 arranged along the inner wall surface S1 of a tunnel when placing lining concrete C2, and is movably guided in the excavation direction of the tunnel, and has a front partition member 30a arranged at a front end in the moving direction of the center form 1 and partitioning a cutting face side space SP2 in front of the front end and the center form 1, a rear partition member 30b arranged at the rear end of the center form 1 and partitioning a pit mouth side space Sp3 in the rear of the rear end and the center form 1, and an air conditioner 51 adjusting the temperature of the working closed space SP1 partitioned and formed inside the center form 1 by the front partition member 30a and the rear partition member 30b.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:在优良的工作环境中,不管季节如何,都可以缩短中心形式1的内部工作封闭空间SP1,从而缩短隧道工程的施工周期。 解决方案:该中心形式1具有沿着隧道的内壁面S1布置的形式21,当铺设衬里混凝土C2时,沿隧道的挖掘方向可移动地被引导,并且具有布置在 在中心形式1的移动方向上的前端,并且在前端和中心形式1的前面分割切割面侧空间SP2;布置在中心形式1的后端的后分隔构件30b, 位于后端后部的凹坑口侧空间Sp3和中心形式1,以及调节由前分隔构件30a和后分隔件在中心形式1内分隔形成的工作封闭空间SP1的温度的空调51 会员30b。 版权所有(C)2008,JPO&INPIT
    • 9. 发明专利
    • Gas cleaning method and apparatus therefor
    • 气体清洁方法及其装置
    • JP2003334424A
    • 2003-11-25
    • JP2002144716
    • 2002-05-20
    • Ryuki Engineering:Kk株式会社流機エンジニアリング
    • NISHIMURA AKIRA
    • B01D53/38B01D53/81B01D53/86B01J35/02
    • PROBLEM TO BE SOLVED: To provide a highly efficient gas cleaning method using a granular photocatalyst, and a gas cleaning apparatus. SOLUTION: A polluted gas mixed with a titanium oxide type granular photocatalyst with a mean particle size of 5-500 nm is introduced into a fluidized reactor 10 and irradiated with ultraviolet rays from the high output mercury lamp 15 arranged in the fluidized reactor 10 to decompose a pollutant. The treated gas discharged from the fluidized reactor 10 is introduced into a separator 20 in which a cylindrical pleated hard sheet filter 25 is provided and the treated gas is passed through a filter 25 to be discharged to the outside while the separated granular photocatalyst is returned to the mixing process with the polluted gas. The granular photocatalyst is circulated and used. COPYRIGHT: (C)2004,JPO
    • 要解决的问题:提供使用粒状光催化剂的高效气体清洗方法和气体净化装置。 解决方案:将与氧化钛型颗粒状光催化剂混合的污染气体,平均颗粒尺寸为5-500nm,被引入到流化反应器10中,用布置在流化反应器中的高输出汞灯15照射紫外线 10分解污染物。 从流化反应器10排出的处理气体被引入到分离器20中,在该分离器20中设置有圆柱形的打褶硬片过滤器25,并且处理过的气体通过过滤器25以排出到外部,而分离的颗粒状光催化剂返回到 与污染气体的混合过程。 颗粒状光催化剂循环使用。 版权所有(C)2004,JPO
    • 10. 发明专利
    • Dust collecting apparatus
    • 集尘装置
    • JP2014180642A
    • 2014-09-29
    • JP2013058092
    • 2013-03-21
    • Ryuki Engineering:Kk株式会社流機エンジニアリング
    • NISHIMURA AKIRA
    • B01D46/24F24F7/00
    • PROBLEM TO BE SOLVED: To provide a dust collecting apparatus capable of reducing a section size without the need to sacrifice dust collection performance.SOLUTION: A dust collecting apparatus 1 includes: filter means 10 for capturing powder dust; and a casing body 20 for housing the filter means 10 therein. The filter means 10 is made into a cylindrical shape whose outer peripheral surface 11a serves as a capturing surface for the powder dust. The filter means 10 is disposed so that the axis thereof is oriented in a lateral direction. The dust collecting apparatus 1 further includes: rotation means 30 for rotating the filter means 10 around the axis thereof; and gas pulse means 40 for generating a gas pulse in the filter means 10.
    • 要解决的问题:提供一种能够减小截面尺寸而不需要牺牲集尘性能的集尘装置。解决方案:集尘装置1包括:用于捕获粉尘的过滤装置10; 以及用于将过滤装置10容纳在其中的壳体主体20。 过滤装置10制成圆筒形,其外周表面11a用作粉尘的捕获表面。 过滤器装置10设置成使得其轴线在横向方向上定向。 集尘装置1还包括:旋转装置30,用于围绕其轴线旋转过滤装置10; 以及用于在过滤装置10中产生气体脉冲的气体脉冲装置40。