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    • 143. 发明公开
    • 유증기 분리기
    • 汽油分离器
    • KR1020130036460A
    • 2013-04-12
    • KR1020110100549
    • 2011-10-04
    • 한영태주식회사 춘천에이취피
    • 한영태
    • B01D5/00A47J37/00
    • B01D46/42F28D15/02F28D21/001
    • PURPOSE: A vapor separator is provided to liquefy the vapor into the oil and recollects, recollect the waste heat of the vapor by the heat exchange, effectively liquefy the oil of the vapor by using the subsurface water as the thermal medium, and increase the heating efficiency by using the waste heat of the vapor. CONSTITUTION: A vapor separator comprises a recollecting can(20), a heat exchanging box(50) placed in the top of the recollecting can, a heating system(34) of a heat pipe(30) arranged inside the heat exchanging box, and a heat absorbing unit(32) of the heat pipe arranged inside the recollecting can. When the vapor flows in the recollecting can through a hood(10), the vapor liquefies into the oil when passing the heat absorbing unit of the heat pipe, the liquefied oil is recollected to an oil reservoir(40) through an exhaust passage(21) of the recollecting can, the air separated from the oil is exhausted to the outside through an exhaust pipe(22), and a thermal medium of the heat exchanging box is heated by the heating system of the heat pipe. The thermal medium is the subsurface water, pulled up from a water tank(B) or the underground by a pump(80), heated in the heat exchanging box, and stored in a regenerative tank(70).
    • 目的:提供蒸汽分离器,将蒸汽液化成油,并通过热交换回收蒸汽的废热,通过使用地下水作为热介质,有效地使蒸汽的油液化,并增加加热 通过使用蒸汽的余热来实现效率。 构成:蒸汽分离器包括回收罐(20),放置在回收罐顶部的热交换箱(50),布置在热交换箱内部的热管(30)的加热系统(34),以及 设置在回收罐内部的热管的吸热单元(32)。 当蒸汽在回收罐中通过发动机罩(10)流动时,蒸汽在通过热管的吸热单元时液化成油,液化油通过排气通道(21)回收到储油器(40) ),从油分离的空气通过排气管(22)排出到外部,热交换箱的热介质被热管的加热系统加热。 热介质是地下水,由水箱(B)或地下通过泵(80)从热交换箱中加热并储存在再生罐(70)中。
    • 144. 发明公开
    • 히트 파이프 열교환기를 이용한 전기 보일러
    • 电热锅炉热管结构高效换热器
    • KR1020130020088A
    • 2013-02-27
    • KR1020110082484
    • 2011-08-17
    • 주식회사이앤에스테크
    • 신희섭윤득남
    • F22B1/28F22B1/30F28D15/02
    • F24H1/101F24H9/1818F24H9/2014F24H2250/10F28D15/02
    • PURPOSE: A high-efficiency boiler using an electrode and electricity with a heat exchanger structure using a heat pipe is provided to maximize the utilization of heat and thermal efficiency as a heat exchanger itself is functioned as a boiler. CONSTITUTION: A high-efficiency boiler using an electrode and electricity with a heat exchanger structure using a heat pipe(22) comprises four chambers, heat exchange pipes(16,17), and heat supply pipes(20,21). Chambers are formed respectively in the upper and lower parts of an electric boiler. The heat exchange pipes and heat supply pipes are embedded in the middle part of the electric boiler. The middle part itself functions as the heat pipe. The heat exchange pipes and heat supply pipes are respectively connected to the chambers and function as a heat transferring passage so that thermal efficiency can be improved.
    • 目的:提供一种使用电极和电力的高效锅炉,使用热管的热交换器结构,以最大限度地利用热和热效率,因为热交换器本身用作锅炉。 构成:使用电极和电力的高效锅炉使用热管(22)具有热交换器结构,包括四个室,热交换管(16,17)和供热管(20,21)。 分别形成在电锅炉的上部和下部。 热交换管和供热管嵌在电锅炉的中间部分。 中间部分本身作为热管。 热交换管和供热管分别连接到室并用作传热通道,从而可以提高热效率。
    • 145. 发明授权
    • 히트 파이프를 이용한 에너지 절약형 제습장치
    • 使用热管的节能型减湿器
    • KR101231810B1
    • 2013-02-08
    • KR1020120148498
    • 2012-12-18
    • 온시스텍 주식회사
    • 장영우
    • F24F3/14F28D15/02
    • F28D15/02F24F3/1405F24F3/153F24F2003/1446F28D2021/0038
    • PURPOSE: An energy-saving type dehumidifier using a heat pipe is provided to serve as a heat pipe because the pressure of working fluid is controlled by an evaporating pressure control valve to condense the working fluid at the air temperature of an outlet of a main cooler. CONSTITUTION: A dehumidifier comprises a precooler(1), a main cooler(4), and a reheater(2). In the main cooler, a compressor, a condenser, and a first temperature type expansion valve are connected by turns. The main cooler secondarily cools air entered in a state of being primarily cooled by the precooler and removes moisture contained in the air. The reheater reheats the air with heat generated when working gas is condensed. First and second cooling coils(11,12) are installed in the precooler. The inlet of the first cooling coil is connected to the outlet of the compressor by the condenser and a second temperature type expansion valve. The outlet of the second cooling coil is connected to the inlet of the compressor.
    • 目的:提供使用热管的节能型除湿器作为热管,因为工作流体的压力由蒸发压力控制阀控制,以在主冷却器的出口的空气温度下冷凝工作流体 。 构成:除湿器包括预冷器(1),主冷却器(4)和再热器(2)。 在主冷却器中,轮流连接压缩机,冷凝器和第一温度型膨胀阀。 主冷却器二次冷却以预冷器主要冷却的状态进入的空气,并去除空气中含有的水分。 再加热器在工作气体冷凝时产生的热量再次加热空气。 第一和第二冷却盘管(11,12)安装在预冷器中。 第一冷却盘管的入口通过冷凝器和第二温度型膨胀阀连接到压缩机的出口。 第二冷却盘管的出口连接到压缩机的入口。
    • 146. 发明公开
    • 세관형 히트파이프를 구비한 지열교환장치, 이를 이용한 도로-교량결빙 방지장치 및 지열 냉난방장치
    • 用于使用毛细管式热管的地热交换器的设备,用于防止道路冷冻和桥梁冷冻的装置,以及使用地热交换器的加热和冷却装置
    • KR1020120077307A
    • 2012-07-10
    • KR1020100139222
    • 2010-12-30
    • 아이스파이프 주식회사
    • 이상철
    • F24J3/08E01C11/26F25B30/06
    • F25B30/06E01C11/26F24T10/30F25B23/006F28D15/02F28D15/04Y02E10/16
    • PURPOSE: A geothermal heat exchanger equipped with a capillary heat pipe, anti-freezing device for roads and brides using the same, and geothermal air conditioning device are provided to store and use thermal energy only using the capillary heat pipe without additional devices such as pumps, and to increase the amount of geothermal heat. CONSTITUTION: A geothermal heat exchanger equipped with a capillary heat pipe comprises a heat exchange unit, and a heat transferring pipe(20). Working liquids(23) are injected into the heat transferring pipe formed into the capillary shape. One side of the heat transferring pipe placed near the heat exchange unit transfers heat, and the other side is buried under the ground. The heat transferring pipe transfers the heat of the heat exchange unit to under the ground if the ground is heated more than the underground. The heat transferring pipe transfers underground heat to the heat exchange unit if the ground is more cooled than the underground.
    • 目的:提供一种配备毛细管热管,道路防冻装置和使用其的新鲜热水器的地热换热器和地热空调装置,仅使用毛细管热管来储存和使用热能,而不需要附加装置如泵 ,并增加地热量。 构成:配备有毛细管热管的地热换热器包括热交换单元和传热管(20)。 将工作液体(23)注入形成为毛细管形状的传热管中。 放置在热交换单元附近的传热管的一侧传递热量,另一侧被埋在地下。 如果地面被加热到地下以上,传热管将热交换单元的热量传递到地下。 如果地面比地下更冷,传热管将地下热量转移到热交换单元。
    • 149. 发明公开
    • 히트파이프와 스카이브핀을 이용한 방열기구
    • 使用热管和轴承炉进行热放射实现
    • KR1020110073129A
    • 2011-06-29
    • KR1020090130300
    • 2009-12-23
    • 강주훈
    • 강주훈
    • F28D15/02F28F1/02F28F1/10
    • F28D15/02F28D15/0233F28F1/26
    • PURPOSE: A radiation mechanism using a heat pipe and a skived fin is provided to prevent noise and vibration occurred due to a heat radiating fan by maximizing a heat radiating effect using a heat sink without the heat radiating fan. CONSTITUTION: A radiation mechanism using a heat pipe and a skived fin comprises a vacuum pipe(11), a heat source(20), and multiple rounded fins(30). Multiple uneven parts(12) are formed on the inner surface of the vacuum pipe. The heat source is attached on one side of a heat pipe. When heat is transferred from the heat source to the heat pipe, the heat pipe rapidly transfers the heat to the other part through a heat medium. The fins are shaped on the surface of the other part except a part where the heat source is attached at uniform intervals.
    • 目的:提供使用热管和刮刀的辐射机构,以通过使用不带散热风扇的散热器最大化散热效果来防止由于散热风扇而产生的噪声和振动。 构成:使用热管和刮翅的辐射机构包括真空管(11),热源(20)和多个圆形翅片(30)。 在真空管的内表面上形成多个不均匀部分(12)。 热源安装在热管的一侧。 当热量从热源传递到热管时,热管通过热介质将热量快速传递到另一部分。 翅片在另一部分的表面上成形,除了以均匀间隔连接热源的部分。