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    • 2. 发明专利
    • Boring device
    • 镗孔装置
    • JP2014173304A
    • 2014-09-22
    • JP2013045767
    • 2013-03-07
    • Hightech Kkハイテック株式会社General Environmental Technos Co Ltd株式会社環境総合テクノス
    • KOMIYA KUNIMORIKATAYAMA TATSUO
    • E21B3/02
    • PROBLEM TO BE SOLVED: To provide a boring device in which a drill rod is easily fixed and released and which is excellent in work efficiency.SOLUTION: A boring device includes: a lifting part 21 having a vertically penetrating insertion hole; a cylindrical guide part 51 having an inside passing to the insertion hole; a cylindrical spindle 31 having an inside passing to the guide part; a drill rod 41 inserted into the spindle; and a cylindrical attachment/detachment part 65 covering the outer periphery of the guide part and ascendable and descendable with respect to the guide part. A ball is fitted into a groove part of the drill rod adjusted to suit the height of a through-hole by ascent or descent of the attachment/detachment part, a taper part of the attachment/detachment part is brought into contact with the ball and the drill rod is fixed, the ball becomes movable in the thickness direction of the guide part by ascent or descent of the attachment/detachment part, and fixation of the drill rod 41 is released.
    • 要解决的问题:提供一种钻杆容易固定和释放并且工作效率优异的钻孔装置。解决方案:一种钻孔装置,包括:具有垂直贯穿插入孔的提升部21; 具有穿过插入孔的内侧的圆筒形引导部51; 具有内部通过引导部的圆筒形心轴31; 插入主轴的钻杆41; 以及覆盖引导部的外周并相对于引导部上升且下降的圆筒状的安装·拆卸部65。 将球安装到钻杆的槽部中,通过上下连接/拆卸部分调整为适合通孔的高度,使附接/拆卸部的锥形部与球接触, 钻杆被固定,球可以通过上/下部分的上升或下降在导向部的厚度方向上移动,并且解除钻杆41的固定。
    • 6. 发明专利
    • Form structure, construction method of form structure, and construction method of reinforced concrete wall body
    • 形式结构,结构构造方法和加固混凝土墙身体的施工方法
    • JP2010037818A
    • 2010-02-18
    • JP2008202225
    • 2008-08-05
    • General Environmental Technos Co Ltd株式会社環境総合テクノス
    • KOWADA AKIRAKANAZAWA MINORUHISHIKAWA KAZUMI
    • E04B2/86
    • PROBLEM TO BE SOLVED: To prevent the protraction of the construction time when the construction or repair of a reinforced concrete wall. SOLUTION: The form structure 20 is provided with a plurality of form panels 30 and a supporting member 50. A stud bolt 31 is provided upright in four corners of the plurality of form panels 30 which are arranged side by side in all directions. Rectangular mounting plates 51 are connected to both sides of the supporting member 50 which is arranged in the part equal to the angle corner part of the form panel 30 so that it is extended in the width direction of the wall body. A notch part 51A is formed on both the right and left sides of the top-and-bottom side of the mounting plate 51. The form panel 30 is fixed to the mounting plate 51 in a state where the stud bolts 31, which are formed in the upper angle corner part positioned close to each other in the form panel 30 adjacent to each other, are each housed in the notch part 51A on both the right and left sides of the bottom side of the mounting plate 51 and in a state where the stud bolts 31, which are formed in the lower angle corner part positioned close to each other in the form panel 30 adjacent to each other, are each housed in the notch part 51A on both the right and left sides of the top side of the mounting plate 51. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为了防止钢筋混凝土墙的施工或维修施工时间的延长。 解决方案:模板结构20设置有多个模板30和支撑构件50.在多个模板30的四个角部中竖直设置双头螺栓31,所述双头螺栓31在所有方向上并排布置 。 矩形安装板51连接到支撑构件50的两侧,其布置在等同于成形板30的角部的部分中,使得其在壁体的宽度方向上延伸。 在安装板51的上下两侧的左右两侧形成有切口部51A。在形成有双头螺栓31的状态下,形成板30被固定在安装板51上 在彼此相邻的形式板30中靠近彼此定位的上角部,分别容纳在安装板51的底侧的左右两侧的切口部51A中,并且在 形成在彼此相邻的形式板30中彼此靠近的下角角部分中的双头螺栓31分别容纳在凹口部分51A中,位于凹槽部分51A的右侧和左侧 安装板51.版权所有(C)2010,JPO&INPIT
    • 7. 发明专利
    • Remote image acquiring system and remote image acquiring method
    • 远程图像获取系统和远程图像采集方法
    • JP2009257831A
    • 2009-11-05
    • JP2008104716
    • 2008-04-14
    • General Environmental Technos Co LtdKansai Electric Power Co Inc:TheNikon Systems Inc株式会社ニコンシステム株式会社環境総合テクノス関西電力株式会社
    • KOIDE HIROSHIKONO YUKIHIKOISHII MASAHIRO
    • G01N21/88G06T1/00H04N7/18
    • PROBLEM TO BE SOLVED: To properly acquire an image for evaluating the wall surface state of a structure even if a dangerous work is not performed.
      SOLUTION: This remote image acquiring system is equipped with: an imaging device which acquires evaluating image data setting a part of a structure to an imaging range by the rising or falling with respect to the structure becoming an evaluation target while changing the imaging range; an illuminator for applying illumination light to the imaging range at the time of acquirement of the evaluating image data by the imaging device; a first control device for controlling the driving of the imaging device and the illuminator; and a second control device for transmitting the control data, which shows the driving control contents of the imaging device and the illuminator, to the first control device by the radio communication with respect to the first control device and receiving the evaluating image data from the first control device.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:即使不进行危险作业,也可以适当地取得用于评价结构的壁面状态的图像。 解决方案:该远程图像获取系统配备有:成像装置,其在改变成像的同时,获取评估图像数据,该图像数据将结构的一部分相对于成为评估对象的结构通过上升或下降来设置为成像范围 范围; 照明装置,用于在通过所述摄像装置获取所述评价图像数据时将照明光施加到所述摄像范围; 用于控制成像装置和照明器的驱动的第一控制装置; 以及第二控制装置,用于通过无线电通信相对于第一控制装置将表示成像装置和照明器的驱动控制内容的控制数据发送到第一控制装置,并从第一控制装置接收评估图像数据 控制装置 版权所有(C)2010,JPO&INPIT
    • 8. 发明专利
    • Method for fixing carbon dioxide in coal seam
    • 在煤层中固定二氧化碳的方法
    • JP2008229494A
    • 2008-10-02
    • JP2007072534
    • 2007-03-20
    • General Environmental Technos Co Ltd株式会社環境総合テクノス
    • NAKO MASAOKOMAKI HIRONOBUKAWABATA HIDEKIYAMAMOTO SHIGEOFUJIOKA MASASHI
    • B01J19/00B01J20/20C01B32/50
    • Y02C10/08
    • PROBLEM TO BE SOLVED: To efficiently fix carbon dioxide in a coal seam by suppressing the swelling of the coal seam in its critical places caused by pressurized carbon dioxide injected thereinto to stably maintain the coal seam in a state of high penetrability by carbon dioxide, or by intermittently improving the injection of pressurized carbon dioxide thereinto.
      SOLUTION: The method for fixing carbon dioxide in a coal seam whereby pressurized carbon dioxide is injected into a hole well communicating with an underground coal seam to cause injected carbon dioxide to penetrate into the coal seam so that injected carbon dioxide is adsorbed by the coal seam, comprises injecting pressurized highly penetrative gas in place of carbon dioxide comprising a substance having higher penetration to coal such as nitrogen than that of carbon dioxide into the coal seam having swollen due to the injection of carbon dioxide, and subsequently injecting pressurized carbon dioxide again into the coal seam with its permeability to carbon dioxide having been improved by the injection of the highly penetrable gas. Thus the swelling of coal is prevented or suppressed by the highly penetrable gas and gas flow paths therein constricted by the swelling of coal are enlarged, and thereby carbon dioxide can be efficiently injected and caused to penetrate into the coal seam at a lower pressure, and the amount of carbon dioxide fixed therein and the recovery of hydrocarbon gas released by the injection of carbon dioxide are increased.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:通过抑制煤层中由加压二氧化碳引起的关键位置的煤层膨胀,有效地固定煤层中的二氧化碳,以稳定地将煤层维持在碳渗透性高的状态 或通过间歇地改善加压二氧化碳的注入。 解决方案:将煤层中的二氧化碳固定的方法,其中将加压的二氧化碳注入井底与井底煤层连通的孔中,以使注入的二氧化碳渗入煤层,使得注入的二氧化碳被吸附 煤层包括将加压的高穿透性气体代替二氧化碳,代替含二氧化碳的二氧化碳,所述二氧化碳包括具有比二氧化碳更高的煤渗透性的物质进入由于注入二氧化碳而溶胀的煤层中,然后注入加压碳 二氧化碳再次进入煤层,其二氧化碳的渗透性通过注入高渗透气体而得到改善。 因此,通过高渗透性的气体和煤气流动阻碍或抑制煤的膨胀,由于煤的膨胀而收缩的煤气扩大,从而可以有效地注入二氧化碳,并在较低的压力下渗入煤层, 固定在其中的二氧化碳的量和通过注入二氧化碳释放的烃气的回收率增加。 版权所有(C)2009,JPO&INPIT
    • 9. 发明专利
    • UNDERGROUND PERMEATION MONITORING METHOD FOR CARBON DIOXIDE BY USING γ RAY SPECTROMETRY
    • 通过使用伽马射线光谱测定二氧化碳的地下渗透监测方法
    • JP2008095394A
    • 2008-04-24
    • JP2006278793
    • 2006-10-12
    • General Environmental Technos Co LtdNpo Think Tank Kyoto Institute Of Natural History株式会社環境総合テクノス特定非営利活動法人シンクタンク京都自然史研究所
    • NAKO MASAOKOMAKI HIRONOBUFUJITA MASAHITOYAMAMOTO SHIGEONISHIMURA SUSUMUKATSURA IKUO
    • E21B43/18B01J19/00E21B49/08G01T1/16G01T1/167G01T1/36G01V5/12
    • PROBLEM TO BE SOLVED: To provide an underground permeation monitoring method for carbon dioxide for monitoring behavior of the pressed-in carbon dioxide in the ground.
      SOLUTION: This underground permeation monitoring method for the carbon dioxide is applied in a production system of hydrocarbon-based gas, for fixing the carbon dioxide for recovering the hydrocarbon-based gas mainly composed of methane gas discharged by being substituted with the carbon dioxide from a production well 4, after being fixed to coal in a lower layer 2 by pressing in carbon dioxide gas from a press-in well 3 communicating with the lower layer 2 among a plurality of these hole wells, by arranging the plurality of hole wells communicating with an underground coal layer (a permanent layer 1 and the lower layer 2). A detector of a radiation strength meter (γ ray spectrometer) is arranged in a bottom part in an observation hole bored at five points A, B, C, D and E at an interval. The behavior in the ground of the pressed-in carbon dioxide, that is, an underground permeation state of the carbon dioxide and a production state of underground gas caused by this state, can be monitored by investigating a change with the lapse of time of γ ray strength by the radiation strength meter, simultaneously when pressing the carbon dioxide gas in the press-in well 3.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供二氧化碳的地下渗透监测方法,用于监测地下压入二氧化碳的行为。 解决方案:该二氧化碳的地下渗透监测方法应用于烃类气体的生产系统中,用于固定二氧化碳以回收主要由通过碳取代排出的甲烷气体的烃类气体 二氧化硅从生产井4中通过在多个这些孔中与下层2连通的压入井3中的二氧化碳气体中压制在下层2中的煤之后,通过将多个孔 与地下煤层(永久层1和下层2)连通的井。 辐射强度计(γ射线光谱仪)的检测器以一定间隔配置在五点A,B,C,D,E五点的观察孔的底部。 可以通过研究随着时间的流逝改变γ的变化来监测压入二氧化碳的地下行为,即二氧化碳的地下渗透状态和由该状态引起的地下气体的生成状态 通过辐射强度计测量射线强度,同时压入压入孔3中的二氧化碳气体。版权所有(C)2008,JPO&INPIT