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    • 81. 发明授权
    • 시추공 내 시료 채취 장치 및 방법
    • 示波器装置及其方法
    • KR101394171B1
    • 2014-05-14
    • KR1020130076468
    • 2013-07-01
    • 한국지질자원연구원
    • 성기성김정찬채기탁
    • E21B49/08E21B49/10
    • E21B49/081
    • The present invention relates to a device and a method for collecting a sample in a borehole, capable of accurately collecting the sample while preventing foreign substances from flowing inside at a targeted depth in the borehole and controlling collection speed by monitoring a measured situation of the sample. The present invention includes a collection cylinder collecting the sample in the borehole; a first camera monitoring a sample discharge unit included in the collection cylinder and the borehole; a first motor inserting the collection cylinder into the sample discharge unit; a vacuum container containing the sample flowing from the collection cylinder; a waterproofing unit having a hollow which is a path for forward and backward movements of the collection cylinder; and a support unit preventing the foreign substances from flowing into the borehole by attaching the waterproofing unit by discharging the sample. The first motor also includes a plurality of protrusions engaged by corresponding to a plurality of grooves included in the collection cylinder.
    • 本发明涉及一种用于收集井眼中的样品的装置和方法,能够精确地收集样品,同时防止异物在井眼中的目标深度内部流入,并通过监测样品的测量情况来控制收集速度 。 本发明包括将样品收集在钻孔中的收集筒; 第一摄像机监视包括在收集气缸和钻孔中的样品排出单元; 第一电动机将采集气缸插入到样品排出单元中; 包含从收集筒流出的样品的真空容器; 具有中空部的防水单元,所述中空部是所述收集滚筒的向前和向后运动的路径; 以及支撑单元,其通过排出样品来附接防水单元来防止异物流入井眼。 第一马达还包括与包括在收集滚筒中的多个槽对应的多个突起。
    • 82. 发明授权
    • 실시간 데이터 검출이 가능한 압력 코어 샘플러
    • 实时数据传感压力芯片采样器
    • KR101386024B1
    • 2014-04-16
    • KR1020130093317
    • 2013-08-06
    • (주)지오스캔미래인더스트리(주)
    • 기정석이계광
    • E21B49/08E21B47/26E21B49/02
    • E21B49/025B63B35/4413G01N1/08
    • The present invention relates to a pressure core sampler capable of real-time data sensing, and the objective thereof is to sense the properties of a core sample in real time during the entire process from the extraction to recovery of the core sample and sense stratum properties with accuracy and reliability by using the core sample. The pressure core sampler capable of real-time data sensing according to the present invention includes perforating means for perforating a hole in a stratum; extracting means for extracting a core sample in a sample barrel while drilling the stratum with the perforating means; and data recording means (100) for sensing and storing property data including the temperature and pressure of the core sample extracted in the sample barrel of the extracting means. The data recording means has a housing (110) that is separably connected to the extracting means; a sensor (120) that is directly or indirectly connected to the housing, in which a sensing terminal is directly or indirectly arranged with the sample barrel of the extracting means so that the properties including the temperature and pressure of the core sample extracted in the sample barrel are sensed periodically at each of predetermined hours; a memory (130) that stores the data sensed by the sensor; and communication means for transmitting the data stored in the memory to a server. [Reference numerals] (120) Sensor; (130) Memory; (140) Communication module; (150) Communication port
    • 本发明涉及一种能够进行实时数据检测的压力芯采样器,其目的是在从提取到回收核心样品的整个过程中实时感测核心样品的性质,并感测层的性质 通过使用核心样品,具有准确性和可靠性。 根据本发明的能够进行实时数据传感的压力芯采样器包括用于对层中的孔进行穿孔的穿孔装置; 提取装置,用于在用所述穿孔装置钻探所述层的同时,提取样品筒中的芯样品; 以及数据记录装置(100),用于感测和存储包括提取装置的样品筒中提取的芯样品的温度和压力的性质数据。 数据记录装置具有可分离地连接到提取装置的壳体(110) 直接或间接地连接到壳体的传感器(120),其中感测端子直接或间接地布置有提取装置的样品筒,使得包括在样品中提取的芯样品的温度和压力的性质 每个预定时间周期性地检测桶; 存储器(130),其存储由所述传感器感测的数据; 以及用于将存储在存储器中的数据发送到服务器的通信装置。 (附图标记)(120)传感器; (130)记忆; (140)通讯模块; (150)通讯口
    • 84. 发明授权
    • 지반의 수압시험방법
    • 液压测试方法
    • KR101279064B1
    • 2013-06-26
    • KR1020120089083
    • 2012-08-14
    • (주)대명엔지니어링
    • 추중팔
    • E02D1/02E21B49/08E02D33/00G01N15/08
    • E02D1/02E02D33/00E21B49/081G01N15/0826
    • PURPOSE: A hydraulic test method for the ground is provided to accurately measure the hydraulic conductivity of a rock layer by measuring leakage pressure. CONSTITUTION: A hydraulic test method for the ground comprises the following steps: inserting a hydraulic test device(100) into a borehole(1) to reach a rock layer(2); fixing the hydraulic test device through a packer and forming a testing hole area(11) in the lower part; supplying hydraulic pressure to the testing hole area by a hydraulic pressure supplying device(200) and measuring the leakage pressure in the upper part of the hydraulic test device; detecting the leakage of the packer by measuring the hydraulic pressure in a packer hydraulic pressure supplying device(300); measuring the hydraulic conductivity of the rock layer through the hydraulic pressure of the hydraulic pressure supplying device; and repeating the above steps by moving the hydraulic test device to the upper part of the borehole after measuring the leakage pressure.
    • 目的:提供地面液压试验方法,通过测量泄漏压力来精确测量岩层的水力传导性。 构成:地面的液压试验方法包括以下步骤:将液压试验装置(100)插入钻孔(1)到达岩层(2); 通过封隔器固定液压测试装置并在下部形成测试孔区域(11); 通过液压供给装置(200)向测试孔区域供给液压并测量液压测试装置上部的泄漏压力; 通过测量封隔器液压供给装置(300)中的液压来检测封隔器的泄漏; 通过液压供应装置的液压测量岩层的水力传导性; 并且通过在测量泄漏压力之后将液压测试装置移动到钻孔的上部来重复上述步骤。
    • 85. 发明公开
    • 시추공조사용 도르래 장치
    • 通用方向钻孔设备用于井眼调查
    • KR1020130060578A
    • 2013-06-10
    • KR1020110126712
    • 2011-11-30
    • 한국원자력연구원
    • 김건영박경우류지훈지성훈
    • E21B49/08
    • E21B47/01G01V9/02
    • PURPOSE: A pulley device for inspecting a borehole is provided to improve the accuracy of a hydraulics test and borehole logging by rotating the top of a fixing device and automatically matching the directions of pulley, wire, and inspection devices. CONSTITUTION: A pulley device(100) for inspecting a borehole comprises a top main body(101), a bottom main body(102), and a pulley(110). A bearing(120) is rotatably inserted into the top and bottom main bodies. The pulley is rotatably installed in the top main body. The pulley hangs a probe wire and a conduction line. A pulley device is connected to a borehole casing which is joined to a borehole formed on the ground and rotates the pulley in a power application direction to the pulley.
    • 目的:提供用于检查钻孔的滑轮装置,通过旋转固定装置的顶部并自动匹配滑轮,导线和检查装置的方向来提高液压测试和钻孔测井的精度。 构成:用于检查钻孔的滑轮装置(100)包括顶部主体(101),底部主体(102)和滑轮(110)。 轴承(120)可旋转地插入顶部和底部主体中。 滑轮可旋转地安装在顶部主体中。 滑轮悬挂探针线和导线。 滑轮装置连接到钻孔壳体,钻孔壳体连接到形成在地面上的钻孔,并且将滑轮沿着动力施加方向旋转到滑轮。
    • 86. 发明授权
    • Boring apparatus
    • 闷器
    • KR101205978B1
    • 2012-11-28
    • KR20120063580
    • 2012-06-14
    • E21B49/02E21B49/08
    • E21B49/025E21B25/18
    • PURPOSE: A boring apparatus for preventing sample loss and sample from scattering in a core is provided to prevent submarine sediments located at the inside of a core by sealing the top of the core using a stopper. CONSTITUTION: A boring apparatus for preventing sample loss and sample from scattering in a core comprises an outer tube(10), a core(20), a stopper(30), a screw(40), and a stopper moving unit(50). The outer tube is inserted into a seabed. The core is located inside the outer tube and is inserted into the seabed with the outer tube. The inserted core is filled with submarine sediments. The stopper seals the top of the core. The screw is located at the top of the core. When the inserted outer tube and core are pulled up, the screw is rotated. The stopper moving unit moves the stopper to the top of the core to seal the top of the core.
    • 目的:提供一种用于防止样品损失和样品在芯中散射的无孔装置,以通过使用塞子密封芯的顶部来防止位于芯部内部的海底沉积物。 构成:用于防止样品损失和样品在芯中飞散的钻孔装置包括外管(10),芯(20),止动件(30),螺钉(40)和止动器移动单元(50) 。 外管插入海底。 核心位于外管内部,并与外管插入海底。 插入的核心充满了潜艇沉积物。 塞子密封芯的顶部。 螺丝位于芯的顶部。 当插入的外管和芯被拉起时,螺丝旋转。 止动器移动单元将止动件移动到芯的顶部以密封芯的顶部。
    • 87. 发明授权
    • 가스채취장치 및 이의 방법
    • 气体收集装置和方法
    • KR101189037B1
    • 2012-10-08
    • KR1020110041518
    • 2011-05-02
    • 한국원자력연구원
    • 류지훈고용권김건영이항복박상원박주완
    • E21B49/08G01N1/22
    • E21B49/084C09K8/594E21B43/168G01N1/22
    • PURPOSE: A gas sampling apparatus and method are provided to improve work efficiency by simplifying a process for separating gas from underground water. CONSTITUTION: A gas sampling apparatus(100) comprises an underground water housing unit(110), a reaction gas supply unit(120), a pressure control unit(130), and a gas sampling unit(140). The underground water housing unit selectively receives underground water therein. The reaction gas supply unit selectively sends reaction gas for separating gas from underground water to the underground water housing unit. The pressure control unit is selectively connected to the underground water housing unit and corrects the pressure of the underground water received in the underground water housing unit. The gas sampling unit is selectively connected to the underground water housing unit and samples gas separated from the underground water.
    • 目的:提供一种采气装置和方法,通过简化从地下水分离气体的方法来提高工作效率。 构成:气体取样装置(100)包括地下水收容单元(110),反应气体供应单元(120),压力控制单元(130)和气体采样单元(140)。 地下水容器单元有选择地接收地下水。 反应气体供给单元选择性地发送用于将气体从地下水分离到地下水收容单元的反应气体。 压力控制单元选择性地连接到地下水储存单元,并且校正地下水储存单元中接收的地下水的压力。 气体采样单元选择性地连接到地下水收集单元,并对与地下水分离的气体进行取样。
    • 88. 发明公开
    • 지중 열전도도 측정장치
    • 地球电导率的测量装置
    • KR1020120012266A
    • 2012-02-09
    • KR1020100074315
    • 2010-07-30
    • 사단법인 한국냉동공조인증센터
    • 최충현김민준
    • G01N25/18E21B49/08G01V9/00
    • G01N25/18E21B49/08F25B30/06G01V9/00Y02E10/44
    • PURPOSE: A measuring device for geothermal conductivity is provided to precisely control the amount of heating using a motor operated valve. CONSTITUTION: A measuring device for geothermal conductivity comprises first and second pipes(110,120), a first flow path(130), a heating unit(140), a temperature sensor(161), and a data processing unit(170). The first pipe extracts underground water from a well. The second pipe discharges underground water to the well. One and the other ends of the first flow path are connected to the first and second pipes. The heating unit heats underground water flowing into the first flow path. The temperature sensor measures the temperature of the inlet/outlet of the first flow path. The data processing unit stores data measured from the temperature sensor and calculates geothermal conductivity by processing the stored data.
    • 目的:提供用于地热导电性的测量装置,以使用电动阀精确控制加热量。 构成:用于地热导电性的测量装置包括第一和第二管道(110,120),第一流动路径(130),加热单元(140),温度传感器(161)和数据处理单元(170)。 第一根管子从井中提取地下水。 第二条管道将地下水排放到井中。 第一流路的一端和另一端连接到第一和第二管。 加热单元加热流入第一流路的地下水。 温度传感器测量第一流路的入口/出口的温度。 数据处理单元存储从温度传感器测量的数据,并通过处理所存储的数据来计算地热导电率。
    • 89. 发明授权
    • 지하수 연속 채수기 및 이를 이용한 채수방법
    • 顺序地下水采样器及其采样方法
    • KR101106721B1
    • 2012-01-18
    • KR1020090113200
    • 2009-11-23
    • 한국지질자원연구원
    • 이봉주김용제
    • E21B49/08E21B43/00
    • G01N1/14E21B49/082
    • 본 발명은 지하수 연속 채수기 및 이를 이용한 채수방법에 관한 것으로서, 보다 상세하게는 제 1관(pipe)과 제 2관, 그리고 제 1실린더부와 제 2실린더부로 구성되어 있다. 제 1관은 진공 시료 채수병 콘테이너로서의 역할을 담당하며 제 2관에 내입되어 고정되며, 제 2관은 2개의 실린더와 연결되어 있어 제 2실린더의 전진과 후퇴에 따라 제 1관을 감싸며 수직방향으로 상승 및 하강하게 되며, 제 1실린더의 전진과 후퇴에 따라서는 제 1실린더 피스톤 끝부분에 장착된 주사기 바늘을 제 1관 최하단부의 진공 시료 채수병 고무 마개를 관통시키거나 주사기 바늘을 진공 시료 채수병과 분리시키는 역할을 담당한다. 제 2실린더와 제 1실린더가 연속적으로 전진하면 제 1관 하단부의 진공 시료 채수병에 지하수 시료를 주입되게 되며, 제 1실린더와 제 2실린더가 연속적으로 후퇴하면 지하수 시료 주입이 완료된 진공 시료 채수병이 중력에 의해 제 1관으로부터 아래 방향으로 이탈하게 된다. 이러한 과정을 반복하면서 지하수 시추공 내 특정 심도의 지하수 시료를 연속적으로 채수하는 지하수 연속 채수기 및 이를 이용한 채수방법에 관한 것이다.
      지하수 연속 채수기, 실린더, 진공 시료 채수병
    • 90. 发明公开
    • 인라인 지하수 시료채취에 의한 라돈농도 측정 방법 및 장치
    • 通过在线采样方法测量地下水中的氡的方法和装置
    • KR1020110135842A
    • 2011-12-19
    • KR1020110113954
    • 2011-11-03
    • 박영웅
    • 박영웅
    • G01T1/15G01N33/18E21B49/08
    • G01T1/167G01N1/10G01N33/18G01T7/02Y10S250/02
    • PURPOSE: A method and a device for measurement of radon in underground water using in-line sampling are provided to prevent the leakage of radon caused during transfer of a sample and to minimize a measurement error due to the increase of radon produced from radium included in underground water. CONSTITUTION: A method for measurement of radon in underground water using in-line sampling is as follows. Underground water is sampled by connecting a housing, which is embedded with a time integration type measuring device, to a facility using underground water. The radon concentration of an air layer in the housing is measured. The radon concentration of underground water is calculated by substituting the measured value for a specific equation.
    • 目的:提供一种使用在线采样测量地下水中氡气的方法和装置,以防止样品转移过程中氡气泄漏,并将由于镭产生的氡产生的氡增加所导致的测量误差降至最低 地下水。 构成:使用在线采样测量地下水中氡的方法如下。 通过将嵌入时间一体化型测量装置的壳体连接到使用地下水的设备来采样地下水。 测量壳体中空气层的氡浓度。 地下水的氡浓度是通过用特定方程的测量值代入来计算的。