터널누수 제어방법
    32.
    发明公开
    터널누수 제어방법 有权
    隧道泄漏控制方法

    公开(公告)号:KR1020090023832A

    公开(公告)日:2009-03-06

    申请号:KR1020070088897

    申请日:2007-09-03

    Abstract: A tunnel water leakage control method is provided that the safety accident by the contamination of the tunnel inside side by the water leakage and freeze can be prevented. A tunnel water leakage control method comprises following steps: a step of setting up in the steel rib in advance prevention of leakage ball(130); a step injecting the hardening property water leakage preventive material(140) including the mortar in the prevention of leakage ball shotcrete(111,112,113) are hardened; a step charging the air gap in which the injected water leakage preventive material is to the water leakage and is blocked. The prevention of leakage ball comprises the tube member in which the penetration hole is formed along the water leakage.

    Abstract translation: 提供隧道漏水控制方法,可以防止由漏水和冻结引起的隧道内部污染的安全事故。 隧道漏水控制方法包括以下步骤:预先防止泄漏球(130)在钢筋中设置的步骤; 在防止泄漏球喷射混合物(111,112,113)中注入包含砂浆的硬化性防水材料(140)的步骤被硬化; 对注入的防漏水材料进行泄漏并堵塞的气隙填充的步骤。 泄漏球的防止包括沿着漏水形成贯通孔的管构件。

    그라우트 믹싱장치
    34.
    发明授权
    그라우트 믹싱장치 有权
    灌浆混合装置

    公开(公告)号:KR101843048B1

    公开(公告)日:2018-03-28

    申请号:KR1020170089042

    申请日:2017-07-13

    CPC classification number: B28C5/0887 B28C5/16

    Abstract: 본발명은시멘트와물이교반되면서혼합될때 시멘트입자가응집되는현상을방지하여그라우트의입도를저감시키고, 이로써그라우트가구조물에원활하게주입될수 있도록한 그라우트믹싱장치에관한것으로, 본발명에따른그라우트믹싱장치는, 시멘트와물이투입되어혼합되는믹싱챔버를구비한본체와; 상기믹싱챔버내에투입된시멘트와물을교반하는교반유닛과; 상기믹싱챔버내에서상기교반유닛에의해혼합되는시멘트와물의혼합물이연속적으로통과하는거름망을구비한필터유닛과; 상기거름망을진동시키는진동유닛;을포함하는것을특징으로한다.

    Abstract translation: 当该混合物在搅拌的同时水泥和水,以避免这种现象,所述水泥颗粒絮凝和降低水泥浆的粒径,因此,本发明涉及一种水泥浆混合装置是水泥浆,根据本发明的水泥浆顺利地注入到结构 该混合装置包括:主体,其具有混合室和混合有水泥和水的混合室; 搅拌单元,用于搅拌引入混合室的水泥和水; 一个过滤单元,具有一个筛通道,通过该通道水泥和水的混合物通过搅拌单元连续地通过混合室; 振动屏幕的振动装置。

    터널내 지하수 및 배수용 유공관을 이용한 지중열교환 방법
    35.
    发明授权
    터널내 지하수 및 배수용 유공관을 이용한 지중열교환 방법 有权
    使用地下水和HUME管道进行隧道排水的热交换器

    公开(公告)号:KR101349085B1

    公开(公告)日:2014-01-16

    申请号:KR1020120036224

    申请日:2012-04-06

    CPC classification number: Y02E10/10

    Abstract: 본 발명은 특히 터널 내 배수되는 지하수를 순환시켜 열교환하는 지중 열교환기를 이용한 냉난방 방법에 관한 것으로써, 본 발명은 터널에 설치되는 배수용 유공관을 제작할 때 지중열교환기용 열교환 파이프를 미리 파형강판에 장착하고, 상기 열교환 파이프가 장착된 파형강판을 유공관으로 제작하고, 상기 열교환 파이프가 장착된 유공관을 터널 배수관으로 설치하고, 상기 터널 배수관에 지중열교환기를 장착하는 터널내 지하수 및 배수용 유공관을 이용한 지중열교환 방법이 제공된다. 이에 열교환 파이프를 설치하기 위한 별도의 시공공종이 생략될 수 있고, 온도가 일정한 지하수를 이용하여 경제적인 지중열교환 방법 제공이 가능하게 된다.

    지중 열교환기 시공방법
    38.
    发明公开
    지중 열교환기 시공방법 有权
    地热换热管施工方法

    公开(公告)号:KR1020100022739A

    公开(公告)日:2010-03-03

    申请号:KR1020080081406

    申请日:2008-08-20

    CPC classification number: F24T10/15 F24T2010/53 Y02E10/125

    Abstract: PURPOSE: An underground heat exchanger construction method is provided to reduce time, cost and effort for drilling an inserting hole. CONSTITUTION: An insertion hole is punched on a base excavated face or slope(S10). An underground heat-exchanger installed at the circumference of a nail part. The nail part is consisting of the divided tube in which a nail is inserted to the inside(S20). The outside of the divided tube of the nail part is filled with grout material and is cured(S30). A front panel is fixed on an inlet part of the insertion hole. The end part of the nail is fixed on the front panel(S40).

    Abstract translation: 目的:提供一种地下换热器施工方法,以减少钻孔时间,成本和努力。 构成:在基础挖掘面或斜坡上冲孔插入孔(S10)。 安装在指甲部分周围的地下热交换器。 指甲部分由将钉子插入内部的分割管构成(S20)。 指甲部分的分割管的外部填充有灌浆材料并固化(S30)。 前面板固定在插入孔的入口部分上。 钉子的末端固定在前面板上(S40)。

    팩을 이용한 마이크로 파일 기초공법
    39.
    发明公开
    팩을 이용한 마이크로 파일 기초공법 有权
    基础施工方法使用包装和桩使用的微型桩

    公开(公告)号:KR1020100012550A

    公开(公告)日:2010-02-08

    申请号:KR1020080074010

    申请日:2008-07-29

    CPC classification number: E02D5/62 E02D2200/1671 E02D2250/003 E02D2300/0018

    Abstract: PURPOSE: A construction method for a micro pile using a pack and a pile assembly using the same are provided to obtain a required strength without hoarding an outer casing after construction is completed. CONSTITUTION: A pile assembly(100) and a construction method of a micro pile using a pack comprises a pipe(110) and a pack(120). The pipe has multiple injection material discharge holes. The injection material discharge holes are formed in a soft layer(2) of ground and are vertically separated from each other. The pack is installed by covering the pipe, located in the soft layer, so that the pack is expanded by an injection material injected through the injection material discharge holes.

    Abstract translation: 目的:提供一种使用包装的微桩和使用其的桩组件的施工方法,以在施工完成后不囤积外壳,获得所需的强度。 构成:桩组件(100)和使用包装的微桩的施工方法包括管(110)和包(120)。 该管道具有多个注射材料排放孔。 注入材料排出孔形成在地层的软层(2)中并且彼此垂直分离。 通过覆盖位于软层中的管道来安装该包装,以便通过注射材料排出孔注入的注射材料使包装膨胀。

    지반 내부의 구조 및 함수 상태를 측정할 수 있는 전기비저항 탐사 장치
    40.
    发明公开
    지반 내부의 구조 및 함수 상태를 측정할 수 있는 전기비저항 탐사 장치 无效
    检测地面和水保持状态结构的电阻率检测装置

    公开(公告)号:KR1020090024018A

    公开(公告)日:2009-03-06

    申请号:KR1020070089192

    申请日:2007-09-03

    Inventor: 정재형 배규진

    CPC classification number: Y02A90/342

    Abstract: An electrical resistivity survey device is provided to measure an inner structure and a hydrous state of a ground at the same time by integrating a moisture sensor with an electrode unit for measuring resistance. An electrode unit(100) for measuring resistance measures resistivity inside the ground. A moisture sensor(200) senses the hydrous state inside the ground. The hydrous state of the ground is determined by the potential of the water included in the ground. The electrode unit for measuring the resistance and the moisture sensor are integrated as one body. The electrode unit for measuring the resistance and the moisture sensor are connected through a cable(110). A controller(300) produces the structure and the hydrous state inside the ground by analyzing a signal of the electrode unit and the moisture sensor. A display unit(600) displays data about the structure and the hydrous state inside the ground produced by the controller to the outside. A key operating unit(700) inputs the command signal for outputting the data about the structure and the hydrous state inside the ground.

    Abstract translation: 提供一种电阻率测量装置,用于通过将水分传感器与用于测量电阻的电极单元集成来同时测量地面的内部结构和含水状态。 用于测量电阻的电极单元(100)测量地面内的电阻率。 水分传感器(200)感测地面内的含水状态。 地面的含水状态由地下水中的水势决定。 用于测量电阻的电极单元和水分传感器被集成为一体。 用于测量电阻的电极单元和水分传感器通过电缆(110)连接。 控制器(300)通过分析电极单元和水分传感器的信号来产生地下的结构和含水状态。 显示单元(600)将由控制器产生的地面内的结构和含水状态的数据显示到外部。 键操作单元(700)输入用于输出关于地面内的结构和含水状态的数据的命令信号。

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