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    • 61. 发明授权
    • 기계식 증기 재압축기를 위한 과열증기 냉각장치
    • 用于机械蒸气回收器的超级蒸发器的冷却装置
    • KR101582297B1
    • 2016-01-06
    • KR1020130166959
    • 2013-12-30
    • 선테코 유한회사
    • 이주선
    • F04D29/58F04D29/42F25B11/00
    • 본발명은분사노즐로부터분사되는액적의크기를작게하여전열면적을넓혀그 냉각효율을높이면서, 서징현상에의한주변장치의파손을예방할수 있으며, 동시에바이패스유체를소정의온도로냉각할때 이를정밀하게조절할수 있도록하는과열증기냉각장치에관한것으로, 과열증기가통과하는관로와, 이관로에냉각수를공급하는냉각수공급수단과, 이냉각수공급수단에연결되어상기관로내로냉각수를분사하는분사노즐과, 냉각수공급수단과분사노즐의사이에설치되어냉각수의유압을조절하는압력조절밸브와, 압력조절밸브를제어하도록연결된제어수단과, 압력조절밸브와분사노즐사이에설치되어냉각의유압을측정하고측정된데이터를상기제어수단에송신하는제 1 압력감지계와, 분사노즐의분사방향전방에위치하여분사직후의냉각수의유압을측정하고측정된데이터를제어수단에송신하도록설치되는제 2 압력감지계와, 분사노즐의분사방향전방에위치하여냉각후의증기의온도를측정하고측정된데이터를제어수단에송신하는온도감지계를포함하고, 제어수단은상기제 1 압력감지계와제 2 압력감지계로부터얻어진냉각수의분사전후의차압, 및상기온도감지계에서측정된증기의온도측정치에의거하여, 관로를통과하는증기가소정의온도에도달하도록압력조절밸브를제어하도록구성된다.
    • 62. 发明授权
    • 냉동싸이클을 이용한 발전장치
    • 使用制冷循环的发电装置
    • KR101515933B1
    • 2015-05-04
    • KR1020140117369
    • 2014-09-04
    • 김봉석
    • 김봉석
    • F01K25/10F01D15/10F25B11/00
    • 본발명은냉동싸이클을이용한발전장치에관한것으로, 압축기, 응축기, 수액기, 팽창밸브, 증발기의구성요소를구비하고있는냉동싸이클에있어서, 상기압축기와응축기를잇는압축기출구라인에는압축기에서고온고압으로압축되어토출되는냉매가스의토출압력에의하여회전하는회전력을얻는회전체와, 상기회전체의회전축회전작동으로부터전기를생산하는발전기가설치되어있는발전장치를포함하는구성으로된 것을특징으로하는발명이다.
    • 本发明涉及使用制冷循环的发电装置。 制冷循环包括:压缩机; 冷凝器 液体接收器 膨胀阀; 和蒸发器。 连接压缩机和冷凝器的压缩机的出口线包括:旋转体,其从制冷剂气体的排出压力接收旋转动力,在压缩机中在高温和高压下被压缩后排出; 以及发电装置,其具有发电机,用于从旋转体的旋转轴的循环动作产生动力。
    • 63. 发明公开
    • 생수용기 캡, 이와 결합하는 냉온수기 및 이를 제작하는 금형
    • 弹簧水封闭机,同时加热的水冷加热机及其制造模具
    • KR1020130096795A
    • 2013-09-02
    • KR1020120018263
    • 2012-02-23
    • 모성순
    • 모성순
    • B65D51/18B65D51/20F25B11/00B29C33/00
    • B65D51/20B65D1/20B65D11/08
    • PURPOSE: A cap for a water bottle is provided to improve the efficiency of production by reducing the time and cost of production with improved structure. CONSTITUTION: A cap for a water bottle comprises a body part (110) in a cylindrical shape with an open top; a bottom part for closing the bottom of the body part; an inserting part (130) in a cylindrical shape with cavity inside which is protruded upward from the bottom part; a folding part (121) which includes a tap part (122) to be broken by the contact with the water receiving pipe of the drinking water dispenser and seals the bottom of a inserting part; and a moving stopper (140) combined to open and close the top of the inserting part. The body part, the bottom part, the inserting part and the folding part are molded into a single body. A receiving space for receiving the folding part is formed between the inner surface of the inserting part and the outer surface of the water receiving pipe.
    • 目的:提供一个水瓶盖,通过改善结构减少生产的时间和成本,提高生产效率。 构成:用于水瓶的盖包括具有开口顶部的圆柱形的主体部分(110); 用于关闭身体部分的底部的底部部分; 一个圆柱形的插入部分(130),其内部从底部向上突出; 折叠部分(121),包括通过与饮用水分配器的接水管接触而被破坏的密封部分(122)并且密封插入部分的底部; 以及组合以打开和关闭插入部分的顶部的移动止动件(140)。 主体部分,底部部分,插入部分和折叠部分被模制成单体。 在插入部的内表面和吸水管的外表面之间形成有用于接收折叠部的容纳空间。
    • 64. 发明授权
    • 무냉매 냉방장치
    • 没有制冷剂的空气冷却装置
    • KR101173518B1
    • 2012-08-14
    • KR1020100056705
    • 2010-06-15
    • (주)엔바텍허정욱주식회사 한국바이오테크
    • 안봉진
    • F25B11/00F25B27/02F25B41/04
    • Y02A30/274
    • 본 발명은 냉매를 사용하지 않으므로 친환경적이며, 시스템 구성이 매우 간단하고 냉매의 미사용으로 관리비용을 절감할 수 있으며 아울러 효율적인 장비의 유지보수가 가능한 무냉매 냉방장치에 관한 것으로, 외부공기를 흡입하여 송풍하는 송풍기 ; 중공부를 구비하며 내주면과 외주면을 연통시키는 다수의 공기분사통로가 형성되는 인테이크, 상기 인테이크가 내측에 고정되며 상기 인테이크의 다수의 공기분사통로 외측과 연통되는 흡기분배공간이 형성되는 케이싱, 상기 인테이크의 중공부에 회전가능하게 마련되어 상기 공기분사통로를 통하여 분사되는 공기에 의하여 회전되며 상기 분사된 공기를 냉각시켜 축방향으로 배출하는 터빈날개를 포함하여 이루어지는 냉각터빈 ; 상기 송풍기와 상기 흡기분배공간을 연통시키는 송풍관 ; 상기 냉각터빈에 의하여 냉각된 공기를 배출하기 위한 냉각공기 배출관 ; 을 포함하여 이루어지는 것을 특징으로 한다.
    • 66. 发明授权
    • FLAT FISH PASTE REFRIGERATOR
    • 平板冰淇淋机
    • KR100911808B1
    • 2009-08-12
    • KR20090006386
    • 2009-01-27
    • YE IN HAE
    • YE IN HAE
    • A23L17/00F25B11/00
    • A23B4/06A23L17/70
    • A flat fish paste refrigerating machine with a lower transfer section is provided to prevent the flat fish paste from being folded during refrigeration, thereby improving the quality of flat fish paste products. A flat fish paste refrigerating machine comprises an internal tunnel, a body case(2), a refrigerating section(3), a mesh belt, a driving shaft(5), a lower transfer section(100) and a lower transfer section driving unit. The lower transfer section consists of a first rotary shaft(110) with one or more sprockets, a second rotary shaft(120), a third rotary shaft(130) and a transfer belt(140) for going in gear with the sprocket. The body case includes an inlet(2a), an outlet and a discharging hole(2c) with a fan on its top. The driving unit drives a plurality of mesh belts and consists of a driving motor(210), a first driving shaft(220), a sub-driving shaft(230), a second driving shaft(240) and a third driving shaft(280).
    • 提供具有较低转印部分的扁平鱼浆冷冻机,以防止平板鱼糊在制冷过程中折叠,从而提高扁鱼产品的质量。 一种扁平的鱼糊冷冻机包括内部通道,主体壳体(2),制冷部分(3),网带,驱动轴(5),下转印部分(100)和下转印部分驱动单元 。 下传送部分包括具有一个或多个链轮的第一旋转轴(110),第二旋转轴(120),第三旋转轴(130)和用于与链轮一起移动的转印带(140)。 主体壳体包括在其顶部具有风扇的入口(2a),出口和排出孔(2c)。 驱动单元驱动多个网带,由驱动马达(210),第一驱动轴(220),副驱动轴(230),第二驱动轴(240)和第三驱动轴(280)组成 )。
    • 67. 发明授权
    • 저온 폐열의 활용을 위한 냉매 사용 터빈발전장치
    • 涡轮发电机使用制冷机从低温废热回收能源
    • KR100766101B1
    • 2007-10-12
    • KR1020060102650
    • 2006-10-23
    • 경상대학교산학협력단
    • 조수용
    • F25B11/00F01D25/00F25B30/06F25B1/00
    • A turbine generator using refrigerant for recovering energy from the low temperature wasted heat is provided to recover sufficient energy from the low temperature wasted heat by using refrigerant capable of dissipating and absorbing heat easily under low temperature. A turbine generator(1) using refrigerant for recovering energy from the low temperature wasted heat comprises a refrigerant turbine(18), a condenser(20), a pump(21), a carburetor(22), and a refrigerant generator(19). The refrigerant turbine is operated by refrigerant. The condenser is connected to the refrigerant turbine to convert vapor refrigerant discharged from the refrigerant turbine into liquid refrigerant. The pump is connected to the condenser to compress the liquid refrigerant into high pressure, and has an impeller rotary shaft(27) connected to a shaft of the refrigerant turbine. The carburetor is connected to the pump to convert the liquid refrigerant into gas refrigerant. The refrigerant generator is provided with an internal rotor shaft that is integrated to the impeller rotary shaft of the pump, and is integrally rotated with the pump. The refrigerant turbine, condenser, pump, and carburetor form a cycle where the refrigerant circulates for generating energy.
    • 提供了一种使用用于从低温浪费热中回收能量的制冷剂的涡轮发电机,通过使用能够在低温下容易地散热和吸收热量的制冷剂从低温浪费热中回收足够的能量。 使用用于从低温浪费热中回收能量的制冷剂的涡轮发电机(1)包括制冷剂涡轮机(18),冷凝器(20),泵(21),化油器(22)和制冷剂发生器(19) 。 制冷剂涡轮机由制冷剂运转。 冷凝器与制冷剂涡轮机连接,将从制冷剂涡轮机排出的蒸气制冷剂转换为液体制冷剂。 泵连接到冷凝器以将液体制冷剂压缩成高压,并且具有连接到制冷剂涡轮机的轴的叶轮旋转轴(27)。 化油器与泵连接,将液体制冷剂转化成气体制冷剂。 制冷剂发生器设置有与泵的叶轮旋转轴一体化的内部转子轴,并且与泵一体地旋转。 制冷剂涡轮机,冷凝器,泵和化油器形成制冷剂循环以产生能量的循环。
    • 68. 发明公开
    • 하압식 저온 브레이튼 공기조화장치
    • 低温BRAYTON循环空调系统
    • KR1020000063409A
    • 2000-11-06
    • KR1020000038711
    • 2000-07-06
    • 주식회사 뉴로스
    • 김종선
    • F24F1/00F25B9/00F25B11/00
    • PURPOSE: An air conditioning system is provided to achieve an improved cooling efficiency and eliminate erosion and corrosion of turbine caused by a condensation of refrigerant. CONSTITUTION: An air conditioning system comprises a compressor(21), an outdoor heat exchanger(22), an indoor heat exchanger(23), a turbine(25) and a power source(27). The air conditioning system operates by a Brayton cooling cycle in which a refrigerant is compressed by the compressor, the refrigerant is heat-exchanged with a fluid outside the freezer through the outdoor heat exchanger so as to lower the temperature of the refrigerant raised by the compression performed by the compressor, the refrigerant is heat-exchanged with a low temperature fluid passed through the turbine through the internal heat exchanger, the refrigerant having thus-lowered temperature absorbs a cooling load in a freezing chamber(24) and is expanded in the turbine so as to be additionally cooled, and the refrigerant is heat-exchanged through the indoor heat exchanger.
    • 目的:提供一种空调系统,以实现提高的冷却效率,并消除由制冷剂冷凝引起的涡轮机的腐蚀和腐蚀。 构成:空调系统包括压缩机(21),室外热交换器(22),室内热交换器(23),涡轮机(25)和电源(27)。 空调系统通过布拉顿冷却循环运行,其中制冷剂被压缩机压缩,制冷剂通过室外热交换器与冷冻机外部的流体进行热交换,从而降低由压缩机升高的制冷剂的温度 通过压缩机进行的制冷剂与通过内部热交换器通过涡轮机的低温流体进行热交换,因此具有如此降低的温度的制冷剂吸收冷冻室(24)中的冷却负荷,并在涡轮机 以进一步冷却,并且通过室内热交换器对制冷剂进行热交换。