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    • 1. 发明授权
    • 폐열 및 컴프레셔를 이용한 MHHP 냉각 시스템
    • MHHP냉각系统
    • KR100406977B1
    • 2003-11-28
    • KR1020010014272
    • 2001-03-20
    • 한국과학기술원
    • 이재영한상철박정건이상민
    • F25B17/12
    • PURPOSE: A metal hydride heat pump(MHHP) cooling system using waster heat and compressor and method of the same are provided to improve cooling performance. CONSTITUTION: A system includes a low-temperature reaction part(10) using low-temperature reactionary metal hydride storing and discharging hydrogen at relatively low temperature; a high-temperature reaction part(20) using high-temperature reactionary metal hydride storing and discharging hydrogen at temperature relatively higher than the low-temperature reaction part; and a compressor(32) forcibly delivering hydrogen filled in the low-temperature reaction part and the high-temperature reaction part.
    • 目的:提供一种使用废热和压缩机的金属氢化物热泵(MHHP)冷却系统及其方法,以改善冷却性能。 构成:一种系统包括使用低温反应金属氢化物在较低温度下储存和释放氢的低温反应部分(10) 高温反应部分(20),使用高温反应金属氢化物在比所述低温反应部分高的温度下储存和排出氢气; 以及压缩机(32),用于强制地输送填充在低温反应部件和高温反应部件中的氢。
    • 2. 发明公开
    • 서로 다른 두 개의 수소저장합금을 이용한 CDMHHP냉각 시스템
    • CDMHHP冷却系统使用两种不同的金属水合物
    • KR1020030003546A
    • 2003-01-10
    • KR1020010039450
    • 2001-07-03
    • 한국과학기술원
    • 이재영한상철박정건장환용
    • F25B17/12
    • PURPOSE: A CDMHHP(Compressor-Driven Metal Hydride Heat Pump) cooling system using two of different metal hydrides is provided to increase energy efficiency. CONSTITUTION: A cooling system includes a low pressure reaction part(10) comprising a low pressure reactor(12) using low pressure reactionary metal hydride storing and discharging hydrogen at relatively low pressure and a first blower(14) supplying the low pressure reactor with air to be cooled; a high pressure reaction part(20) comprising a high pressure reactor(22) using high pressure reactionary metal hydride storing and discharging hydrogen at higher pressure relatively to the low pressure reactor and a second blower(24) supplying the high pressure reactor with air to be cooled; a connecting pipe(32) connecting the low pressure reaction part and the high pressure reaction part to transfer hydrogen; a first valve(30a) connected to the middle of the connecting pipe to open and close moving path of hydrogen; a hydrogen transfer device, a compressor(30) having an inlet and an outlet connected to both ends of the first valve, respectively; a second valve(30b) and a third valve(30c) connected between both of the ends of the first valve and the inlet and the outlet of the compressor, respectively, to open and close moving path of hydrogen; and a control part(35).
    • 目的:提供使用两种不同金属氢化物的CDMHHP(压缩机驱动的金属氢化物热泵)冷却系统,以提高能源效率。 构成:冷却系统包括低压反应部分(10),其包括使用低压反应金属氢化物在相对低的压力下储存和排出氢的低压反应器(12)和向低压反应器供应空气的第一鼓风机(14) 待冷; 高压反应部分(20)包括高压反应器(22),所述高压反应器使用高压反应性金属氢化物储存并相对于所述低压反应器以较高压力排放氢;以及第二鼓风机(24),其向所述高压反应器供应空气 冷却; 连接所述低压反应部和所述高压反应部以转移氢的连接管(32) 第一阀(30a),连接到连接管的中部以打开和关闭氢的移动路径; 氢转移装置,具有分别连接到第一阀的两端的入口和出口的压缩机30; 第二阀(30b)和第三阀(30c),分别连接在第一阀的两端和压缩机的入口和出口之间,以打开和关闭氢的移动路径; 和控制部(35)。
    • 4. 发明授权
    • 폐열 및 진공펌프를 이용한 MHHP 냉각 시스템 및 그방법
    • 폐열및진공펌프를이용한MHHP시스템및그방폐열
    • KR100406978B1
    • 2003-11-28
    • KR1020010025412
    • 2001-05-10
    • 한국과학기술원
    • 이재영한상철박정건이상민
    • F25B17/12
    • PURPOSE: A metal hydride heat pump(MHHP) cooling system using waste heat and vacuum pump and method of the same are provided to improve cooling performance of the cooling system. CONSTITUTION: A system includes a low-temperature reaction part(10) using low-temperature reactionary metallic alloy for hydrogen storage storing and discharging hydrogen at relative low temperature; a high-temperature reaction part(20) using high-temperature reactionary metallic alloy for hydrogen storage storing and discharging hydrogen at temperature relatively higher than the low-temperature reaction part; and a vacuum pump(32) making an inside of one of the low-temperature reaction part and the high-temperature reaction part vacuous to forcibly bring hydrogen stored in the other reaction part.
    • 目的:提供一种使用废热和真空泵的金属氢化物热泵(MHHP)冷却系统及其方法,以改善冷却系统的冷却性能。 一种系统包括一个低温反应部分(10),它使用低温反应金属合金储氢并在相对较低的温度下储氢; 高温反应部件(20),其使用高温反应金属合金进行储氢并在比所述低温反应部件高的温度下储存和排出氢气; 以及真空泵(32),其使低温反应部件和高温反应部件中的一个的内部真空,以强制性地将储存在另一个反应部件中的氢气带出。
    • 5. 发明公开
    • 씨디엠에이치에이치피 시스템을 이용한 냉난방 방법 및 그시스템
    • 使用压缩机驱动的金属氢化物热泵系统及其系统进行加热和冷却的方法
    • KR1020030025675A
    • 2003-03-29
    • KR1020010058837
    • 2001-09-22
    • 한국과학기술원
    • 이재영한상철박정건장환용
    • F25B17/12
    • PURPOSE: A method for heating and cooling using CDMHHP(Compressor-Driven Metal Hydride Heat Pump) system and system of the same are provided to increase moving speed of hydrogen. CONSTITUTION: A system includes two reaction tubes(10,20) charged with metal hydride; reaction parts(11,21) including the reaction tubes and an outside atmosphere system; a compressor(30) forcibly transport hydrogen charged in the reaction tubes; and an adapter(40) installed between the compressor and the reaction tubes to be fluidically connected so as to provide a moving path for hydrogen. The adapter includes a first hydrogen moving path by the compressor and a second hydrogen moving path by difference of concentration of hydrogen between the reaction tubes. A control part(50) controls driving of the compressor, opening and closing of valves(60,61) and working of a wind direction guiding plate(70).
    • 目的:提供使用CDMHHP(压缩机驱动的金属氢化物热泵)系统及其系统进行加热和冷却的方法,以提高氢的移动速度。 构成:系统包括装有金属氢化物的两个反应管(10,20) 包括反应管和外部气氛系统的反应部分(11,21); 压缩机(30)强制地输送装在反应管中的氢; 以及安装在压缩机和反应管之间以将流体连接以便提供用于氢的移动路径的适配器(40)。 适配器包括通过压缩机的第一氢气移动路径和通过反应管之间的氢浓度差异的第二氢气移动路径。 控制部件(50)控制压缩机的驱动,阀门(60,61)的打开和关闭以及风向导向板(70)的工作。
    • 6. 发明授权
    • 고용량 마그네슘계 합금의 전극수명 개량방법
    • 基于MG的高放电能力合金表面改性在循环寿命中的改进
    • KR100269515B1
    • 2000-10-16
    • KR1019980015197
    • 1998-04-28
    • 한국과학기술원
    • 이재영박정건한상철
    • H01M4/46
    • PURPOSE: A method for producing cathode material for rechargeable nickel/hydrogen storage alloy battery is provided for improving cycle life of the magnesium-based alloy by a sintering and mechanical grinding method. CONSTITUTION: The method for producing cathode material for rechargeable nickel/hydrogen storage alloy (Ni/MH) battery comprises mechanically grinding surface of MgNi alloy to improve its property; mixing Ni or Cu powders to the improved alloy to cool and compress; and producing the final material by a sintering process to result in the improvement of cycle life of high capacity magnesium-based alloy electrode. The cathode material has frequently higher hydrogen storage capacity of about 510mAh/g simultaneously with the improvement of cycle life at recharging/discharging the battery.
    • 目的:提供一种生产用于可再充电镍/氢储存合金电池的阴极材料的方法,用于通过烧结和机械研磨方法改善镁基合金的循环寿命。 构成:可再充电镍/氢存储合金(Ni / MH)电池的阴极材料的制造方法包括机械研磨MgNi合金的表面以改善其性能; 将Ni或Cu粉末混合到改进的合金中以冷却和压缩; 并通过烧结工艺生产最终材料,从而提高高容量镁基合金电极的循环寿命。 随着电池充电/放电循环寿命的提高,阴极材料的氢气存储容量通常更高,约为510mAh / g。
    • 9. 发明授权
    • 서로 다른 두 개의 수소저장합금을 이용한 CDMHHP냉각 시스템
    • 서로다른두개의수소저장합금을이용한CDMHHP냉각系统
    • KR100406980B1
    • 2003-11-28
    • KR1020010039450
    • 2001-07-03
    • 한국과학기술원
    • 이재영한상철박정건장환용
    • F25B17/12
    • PURPOSE: A CDMHHP(Compressor-Driven Metal Hydride Heat Pump) cooling system using two of different metal hydrides is provided to increase energy efficiency. CONSTITUTION: A cooling system includes a low pressure reaction part(10) comprising a low pressure reactor(12) using low pressure reactionary metal hydride storing and discharging hydrogen at relatively low pressure and a first blower(14) supplying the low pressure reactor with air to be cooled; a high pressure reaction part(20) comprising a high pressure reactor(22) using high pressure reactionary metal hydride storing and discharging hydrogen at higher pressure relatively to the low pressure reactor and a second blower(24) supplying the high pressure reactor with air to be cooled; a connecting pipe(32) connecting the low pressure reaction part and the high pressure reaction part to transfer hydrogen; a first valve(30a) connected to the middle of the connecting pipe to open and close moving path of hydrogen; a hydrogen transfer device, a compressor(30) having an inlet and an outlet connected to both ends of the first valve, respectively; a second valve(30b) and a third valve(30c) connected between both of the ends of the first valve and the inlet and the outlet of the compressor, respectively, to open and close moving path of hydrogen; and a control part(35).
    • 目的:提供使用两种不同金属氢化物的CDMHHP(压缩机驱动金属氢化物热泵)冷却系统,以提高能源效率。 一种冷却系统包括一个低压反应部件(10),该低压反应部件包括一个低压反应器(12),该低压反应器使用低压反应金属氢化物储存和排放较低压力的氢气,以及一个第一鼓风机(14),向该低压反应器供应空气 被冷却; 包括高压反应器(22)的高压反应部件(20),所述高压反应器使用高压反应金属氢化物相对于所述低压反应器在较高压力下储存和排出氢气;以及第二鼓风机(24),其向所述高压反应器供应空气以 被冷却; 连接低压反应部分和高压反应部分以传输氢的连接管(32) 第一阀(30a),连接到连接管的中间以打开和关闭氢的移动路径; 氢传输装置,压缩机(30),其具有分别连接到所述第一阀的两端的入口和出口; 第二阀(30b)和第三阀(30c),分别连接在第一阀的两端和压缩机的入口和出口之间,以打开和关闭氢的移动路径; 和控制部分(35)。