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    • 1. 发明公开
    • 유수의 열 추출 장치
    • 从流动水中提取热量的安装
    • KR1020100084603A
    • 2010-07-27
    • KR1020097013747
    • 2008-09-16
    • 주식회사 휴다임건축사사무소
    • 스투데르우어스
    • F28D21/00F28D1/06F28F21/08F24D17/02
    • F28D1/06E03F1/00F24D17/0005F24D2200/12F24D2200/20F28D7/0033F28D7/10F28D9/0031F28D21/0012F28F9/22F28F21/08Y02B10/70Y02B30/52Y02B30/566
    • PURPOSE: An apparatus for extracting heat from flowing water is provided to extract heat from waste water or cooling water flowing out from an industry facility using a heat exchange medium or to radiate heat to flowing liquid. CONSTITUTION: An apparatus(1) for extracting heat from flowing water extracts heat from liquid flowing through a pipe and radiates heat to liquid. The heat extracting apparatus comprises one or more heat exchangers(2.1, 2.2, 2.3). The heat exchanger makes direct contact with liquid flowing through the pipe. The heat exchanger comprises one or more containers(5) containing a circulating heat exchange medium and supply and discharge lines(8) for the heat exchange medium. The supply and discharge lines supply the heat exchange medium from a heat pump or discharge it to the heat pump. The heat exchanger is formed in the manner that the heat exchange surface formed by the heat exchanger surrounds the inside(3) of the pipe. The azimuth area formed with the heat exchange surface occupies at least 270°.
    • 目的:提供一种用于从流水中提取热量的设备,以便从使用热交换介质的工业设备流出的废水或冷却水中提取热量,或将热量辐射到流动的液体。 构成:用于从流水中提取热量的装置(1)从流过管道的液体中提取热量并将热量散发到液体。 该提取装置包括一个或多个热交换器(2.1,2.2,2.3)。 热交换器与流经管道的液体直接接触。 热交换器包括一个或多个容纳循环热交换介质的容器(5)和用于热交换介质的供给和排出管线(8)。 供给和排出管线从热泵供应热交换介质或将其排放到热泵。 热交换器以由热交换器形成的热交换面围绕管的内部(3)的方式形成。 形成有热交换表面的方位区域占据至少270°。
    • 2. 发明公开
    • 고압 열 교환기
    • 高压热交换器
    • KR1020050062544A
    • 2005-06-23
    • KR1020057003534
    • 2003-10-22
    • 모다인 매뉴팩츄어링 컴파니
    • 메모리스티븐비.인지안민휴즈그레고리지.
    • F28D7/00
    • F28F1/022F28D1/0478F28D7/0033F28D2021/0073
    • A heat exchanger including inlet and outlet header (72, 76) portions for a refrigerant (such as CO2), serpentine multiport tubes (62) each with a plurality of aligned tube runs (64, 66), and at least three plate assembly (84, 86, 88, 90) fluid paths. Each plate assembly (84, 86, 88, 90) fluid path includes a pair of spaced plates secured together at their edges to define an enclosed space with a fluid inlet and fluid outlet on opposite sides of the space. One plate of one fluid path (84) is positioned against first aligned tube runs (64, 66), one plate of a second (90) of the fluid paths (84, 86, 88, 90) is positioned against second aligned tube runs (64, 66), and third fluid path (86, 88) is positioned between the first and second aligned tube runs (64, 66). The plates may be substantially identical to one another.
    • 包括用于制冷剂(例如CO 2)的入口和出口集管(72,76)部分的热交换器,每个具有多个对准的管道(64,66)的蛇形多端口管(62)和至少三个板组件 84,86,88,90)流体路径。 每个板组件(84,86,88,90)流体路径包括在其边缘处固定在一起的一对间隔板,以在空间的相对侧上限定具有流体入口和流体出口的封闭空间。 一个流体路径(84)的一个板抵靠第一对准的管道(64,66)定位,第二(90)个流体路径(84,86,88,90)的一个板抵靠第二对准的管道 (64,66),并且第三流体路径(86,88)位于第一和第二对准管道运行(64,66)之间。 板可以基本上彼此相同。
    • 5. 发明授权
    • 폐열회수를 이용한 과열증기발생장치
    • 超级加热器使用废热
    • KR101266916B1
    • 2013-05-29
    • KR1020110133922
    • 2011-12-13
    • 주식회사 코렌스
    • 김태진조용국
    • F22G1/04F22G7/04
    • F01N5/02F01K23/10F22B1/18F22B1/1807F22B11/00F22B15/00F28D7/0033F28D21/0003F28F1/40F28F9/0243Y02E20/363
    • PURPOSE: A superheated steam generating device using waste-heat recovery is provided to minimize the thermal stress of an operating fluid tube through where a high temperature, high pressure operating fluid flows, thereby minimizing possibility of a leakage of the operating fluid. CONSTITUTION: A superheated steam generating device using waste-heat recovery comprises a housing unit(10), a plurality of exhaust gas tubes(21), and a plurality of working fluid tubes(31). The housing unit includes an inflow tank(11) into where exhaust gas flows and an outflow tank(12) where the exhaust gas flows out in both ends. The plurality of exhaust gas tubes is installed inside the housing unit and arranged while being spaced at a constant interval. The plurality of operating fluid tubes is arranged between the exhaust gas tubes. An inflow pipe(51) where operating fluid flows into and an outflow pipe(52) where the operating fluid flows out are installed in one side of the housing unit. The inflow and outflow pipes are connected to be individually communicated with the operating fluid tubes. The top surface and the bottom surface of the each operating fluid tube are directly in contact with the adjacent exhaust gas tube.
    • 目的:提供使用废热回收的过热蒸汽发生装置,以最小化工作流体管的热应力,通过高温高压工作流体流动,从而最小化工作流体泄漏的可能性。 构成:使用废热回收的过热蒸汽发生装置包括壳体单元(10),多个排气管(21)和多个工作流体管(31)。 壳体单元包括排气流入的流入箱(11)和两端排出废气的流出箱(12)。 多个排气管被安装在壳体单元内部并且以恒定间隔间隔布置。 多个工作流体管布置在废气管之间。 其中工作流体流入的流入管(51)和工作流体流出的流出管(52)安装在壳体单元的一侧。 流入和流出管被连接以与工作流体管单独连通。 每个工作流体管的顶表面和底表面与邻近的废气管直接接触。
    • 8. 发明公开
    • 튜브형 이중 열교환기
    • 管式双热交换器
    • KR1020130051658A
    • 2013-05-21
    • KR1020110116925
    • 2011-11-10
    • 김갑영
    • 김갑영
    • F28D7/00F28D7/02F28D7/08F28F1/00
    • F28D7/0033F28D7/04F28D7/16F28F21/084
    • PURPOSE: A tube type dual heat exchanger is provided to perform a heat exchange by forming the heat exchanger with target fluid to be integrated and to enable to install the heat exchanger inside various limited space. CONSTITUTION: A tube type dual heat exchanger comprises a first tube-shaped heat exchanger(10), a first tube airflow hole(12), a second tube-shaped heat exchanger(20), a second tube airflow hole(22), and header units(30). A plurality of first aluminum tubes(11) are separately arranged in the first tube-shaped heat exchanger. The first tube air flow holes are punched in the inside of the first tube-shaped heat exchanger in a longitudinal direction so that heat exchanging fluid(A) flows. The second tube airflow holes are punched in the inside of the second tube-shaped heat exchanger in a longitudinal direction so that target fluid and the heat exchanging fluid flow. The header units are joined to both ends of the first and second tube-shaped heat exchangers respectively so that the target fluid or the heat exchanging fluid can be entered and discharged.
    • 目的:提供一种管式双热交换器,通过将热交换器与要集成的目标流体形成热交换器,并将热交换器安装在各种有限的空间内。 构成:管式双热交换器包括第一管状热交换器(10),第一管气流孔(12),第二管状热交换器(20),第二管气流孔(22)和 标题单元(30)。 多个第一铝管(11)分别布置在第一管状热交换器中。 第一管气流孔在第一管状热交换器的内部沿纵向冲压,使得热交换流体(A)流动。 第二管气流孔在第二管状热交换器的内部沿纵向冲压,使得目标流体和热交换流体流动。 集管单元分别连接到第一和第二管状热交换器的两端,使得目标流体或热交换流体可以进入和排出。