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    • 1. 发明授权
    • 지하 고압 유체 저장조 및 이를 이용한 CAES 시스템
    • CAES水库在地下储存高压流体和CAES系统使用它
    • KR101701263B1
    • 2017-02-03
    • KR1020140172804
    • 2014-12-04
    • 한국지질자원연구원
    • 류동우김현우박도현오태민이항복박의섭
    • B65D88/76E02D29/045
    • 본발명은고압의기체를지하의심부에저장하기위한고압유체저장조에관한것이다. 본발명에따른고압유체저장조는고압의유체를저장하기위하여지반을하방으로굴착하여형성되는캐번에매설되는것으로서, 밀폐성소재로이루어져내부에고압의유체가저장되는수용부가형성되는탱크본체와, 탱크본체와캐번의내벽사이에채워지는백필재에의하여형성되되, 캐번의하부에비하여상부가더 두껍게형성되는백필층및 캐번을폐쇄하기위한플러그를포함하는것에특징이있다.
    • 本发明涉及一种在地下深部存储高压气体的高压流体储存室。 根据本发明,将高压流体储存室放置在通过向下挖掘地面而形成的洞穴中以存储高压流体。 高压流体储存室包括:由密封材料制成的罐主框架,以在其内部具有用于存储高压流体的容纳单元; 由回填材料制成的回填层,其填充罐主框架和洞穴的内壁之间的部分,其顶部比洞穴的底部更厚; 和一个塞子关闭洞穴。 本发明提供一种高压流体储存室,其被制成用于相同流体储存空间的最安全的结构,以及使用该高压流体储存室的CAES系统。
    • 5. 发明公开
    • 기밀성과 안정성이 향상된 라이닝을 구비하는 압축공기 에너지 저장용 고압 유체저장조
    • 具有改进空气和稳定性的衬里的高压储罐
    • KR1020130048515A
    • 2013-05-10
    • KR1020110113395
    • 2011-11-02
    • 한국지질자원연구원
    • 류동우김형목선우춘송원경박도현
    • B65D88/76B65D90/04E04H7/18
    • PURPOSE: A high-pressure reservoir is provided to have improved structure by having improved sealability and stability,to minimize leakage of fluid. CONSTITUTION: A cavern(10) is formed by digging out bedrock and is for storing high pressure fluid. A lining(30) prevents leakage of fluid stored in a cavern and is installed in the inner side of the cavern to transfer fluid pressure to the bedrock. A shotcrete layer(31) is formed by placing a shotcrete onto the dig out side of the bedrock. The liner prevents leakage of fluid in the cavern by being spaced from the shotcrete layer at a specific interval. A backfill layer is filled between the liner and the shotcrete layer. A waterproof sheet is inserted between the liner and bagfil layer. The liner is formed of steel. The backfill layer is formed of concrete. A reinforcing material(35) is spread on between the waterproof sheet and liner to prevent shearing force on a frictional surface between the liner and the backfill layer.
    • 目的:提供高压储罐,通过提高密封性和稳定性,使流体的泄漏最小化,从而具有改进的结构。 构成:通过挖掘基岩而形成一个洞穴(10),用于储存高压流体。 内衬(30)防止存储在洞穴中的流体泄漏并安装在洞穴的内侧,以将流体压力传递给基岩。 喷浆混凝土层(31)通过将喷浆混合物放置在基岩的挖出侧而形成。 衬垫通过以特定间隔与喷浆混合层隔开来防止在洞穴中的流体泄漏。 填充层填充在衬套和喷浆混凝土层之间。 将防水片插入在衬垫和袋膜层之间。 衬里由钢制成。 回填层由混凝土形成。 增强材料(35)分散在防水片和衬垫之间,以防止在衬垫和回填层之间的摩擦表面上的剪切力。
    • 6. 发明公开
    • 플러그의 밀폐성이 향상된 고압 유체저장조
    • 具有改进空气密度的高压压力流体储存器
    • KR1020130000164A
    • 2013-01-02
    • KR1020110060697
    • 2011-06-22
    • 한국지질자원연구원
    • 류동우김형목박도현최병희송원경
    • B65D88/76B65D90/00B65D90/04
    • B65D88/76B65D90/04B65D90/54
    • PURPOSE: A high pressure fluid reservoir with improved air tightness of a plug is provided to prepare a fluid reservoir with the improved sealing performance by improving the structure of a plug in the fluid reservoir storing high pressure fluid such as compressed air. CONSTITUTION: A high pressure fluid reservoir with improved air tightness of a plug includes a cavern(10). The cavern is formed with an opening type end part by excavation of bedrock(g) to store a high pressure fluid. A plug(30) is formed with a contact surface wherein the underground bedrock is hanged and contacted when the cavern is pressurized by stored fluid. The cavern has a plug inserted into one side of the end part and the outer surface of the plug sticks to a bedrock. The end part of the plug is formed with a concave groove part for the link with the cavern to stick the outer surface to bedrock by the pressurization of fluid. The plug has a taper part narrowing in diameter to the direction away from the cavern and the outer surface of the extended part of the taper is formed with a contact surface. The extension part has widening diameter to the direction away from the cavern. The contraction part(32) has diameter to become again gradually smaller from the end part of the extension part. The plug is formed with a cylinder shape. The plug has a hole which passes through one side to the other side faces, and is capable of opening and shutting. The cavern has a tunnel shape or a silo shape in appearance. The groove part of the plug contacting with the cavern is attached with an air tight material.
    • 目的:提供一种具有改善的塞子气密性的高压流体储存器,以通过改善存储高压流体(例如压缩空气)的流体储存器中的塞子的结构来制备具有改进的密封性能的流体储存器。 构成:具有改善的塞子气密性的高压流体储存器包括洞穴(10)。 通过开挖基岩(g)来形成具有开口型端部以存储高压流体的洞穴。 塞子(30)形成有接触表面,其中地下基岩悬挂并且当洞穴被储存的流体加压时接触。 洞穴具有插入端部的一侧的插头,并且插头的外表面粘附到基岩上。 插塞的端部形成有用于与洞穴连接的凹槽部分,以通过流体的加压将外表面粘附到基岩。 插塞具有直径相对于离开洞穴的方向变窄的锥形部分,锥形延伸部分的外表面形成有接触表面。 延伸部分向远离洞穴的方向具有扩大的直径。 收缩部32具有从延伸部的端部逐渐变细的直径。 塞子形成为圆筒形状。 插头具有穿过一侧到另一侧面的孔,并且能够打开和关闭。 洞穴外观上具有隧道形状或筒仓形状。 与洞穴接触的塞子的凹槽部分用气密材料附着。
    • 9. 发明公开
    • 지하 고압 유체 저장조 및 이를 이용한 CAES 시스템
    • 储存在地下储存高强度流体和使用其的CAES系统
    • KR1020160068036A
    • 2016-06-15
    • KR1020140172804
    • 2014-12-04
    • 한국지질자원연구원
    • 류동우김현우박도현오태민이항복박의섭
    • B65D88/76E02D29/045
    • B65D88/76E02D29/045
    • 본발명은고압의기체를지하의심부에저장하기위한고압유체저장조에관한것이다. 본발명에따른고압유체저장조는고압의유체를저장하기위하여지반을하방으로굴착하여형성되는캐번에매설되는것으로서, 밀폐성소재로이루어져내부에고압의유체가저장되는수용부가형성되는탱크본체와, 탱크본체와캐번의내벽사이에채워지는백필재에의하여형성되되, 캐번의하부에비하여상부가더 두껍게형성되는백필층및 캐번을폐쇄하기위한플러그를포함하는것에특징이있다.
    • 本发明涉及一种在地下深部存储高压气体的高压流体储存室。 根据本发明,将高压流体储存室放置在通过向下挖掘地面而形成的洞穴中以存储高压流体。 高压流体储存室包括:由密封材料制成的罐主框架,以在其内部具有用于存储高压流体的容纳单元; 由回填材料制成的回填层,其填充罐主框架和洞穴的内壁之间的部分,其顶部比洞穴的底部更厚; 和一个塞子关闭洞穴。 本发明提供一种高压流体储存室,其被制成用于相同流体储存空间的最安全的结构,以及使用该高压流体储存室的CAES系统。