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    • 31. 发明公开
    • 태양열 보일러 시스템
    • 太阳能锅炉系统
    • KR1020120076812A
    • 2012-07-10
    • KR1020100138533
    • 2010-12-30
    • (주)그랜드솔라
    • 이호석
    • F24D3/00F24J2/02F24D19/10F24H9/20
    • Y02B10/20Y02B10/70Y02P80/24F24D3/00F24D19/10F24H9/20F24S20/30
    • PURPOSE: A solar heat boiler system is provided to improve thermal efficiency with protecting the environment, and to save energy by controlling the supply amount of water. CONSTITUTION: A solar heat boiler system(10) comprises a heat collecting unit(100), a heat storage tank(200), an auxiliary boiler(300), a heating unit(400), a circulation pipe(500) for a thermal medium, a pipe(520) for temporally storing the thermal medium, a unit for controlling the supply amount of the heat medium, a sensing unit, and a controller(900). The unit for controlling the supply amount of the heat medium comprises a tank(620) for supplementing the heat medium to the heat collecting unit. The heat medium supplied from the tank is supplied through an expansion tank(640) and a decompression pump. The sensing unit is formed near the heat collecting unit. The sensing unit is installed inside, and comprises temperature sensor for indoor and out door spaces. The controller operates a boiler according to the deviation by firstly and secondly comparing set temperature.
    • 目的:提供太阳能热水锅炉系统,以保护环境,提高热效率,并通过控制供水量节约能源。 构成:太阳能热水锅炉系统(10)包括集热单元(100),储热箱(200),辅助锅炉(300),加热单元(400),热管循环管 介质,用于暂时存储热介质的管道(520),用于控制热介质供应量的单元,感测单元和控制器(900)。 用于控制热介质供给量的单元包括用于将热介质补充到集热单元的罐(620)。 从罐供给的热介质通过膨胀罐(640)和减压泵供给。 传感单元形成在集热单元附近。 感应单元安装在内部,并包括室内和室外空间的温度传感器。 控制器首先按照偏差操作锅炉,第二次比较设定温度。
    • 32. 发明公开
    • 풍력과 태양열을 병용한 온수난방장치
    • 使用风力和太阳能的热水加热器
    • KR1020120065515A
    • 2012-06-21
    • KR1020100126682
    • 2010-12-13
    • 김준섭김한영김세영
    • 김민수김준섭김한영김세영
    • F03D9/00F24J2/02F22B3/06F24D3/00
    • Y02E10/72Y02P80/158F03D9/00F22B3/06F24D3/00F24S20/30Y02E10/40
    • PURPOSE: A hot water heating apparatus using both wind power and solar heat is provided to generate hot water even in case wind strength is weak while vertical and horizontal windmill blades are utilized according to thermal capacity of a heating system. CONSTITUTION: A hot water heating apparatus using both wind power and solar heat comprises a windmill(10), a set-up gear(20), a hot water generator(30), a supplement water tank(40), a hot water storage tank(50), and a solar collector(60). The windmill generates torque by converting wind power into mechanical power. The set-up gear increases the torque of the windmill. The hot water generator generates hot water by making friction heat with fluids using increased torque. The supplement water tank supplies the fluids to the hot water generator. The hot water storage tank circulates the hot water to a heating facility(4) through a hot water supply pump(1), a hot water supply pipe(2), a returned water pipe(3). The solar collector is connected to the hot water generator, the supplement water tank, and the hot water storage tank, and generates the hot water using solar energy.
    • 目的:使用风力发电和太阳能热水的热水加热装置,以便在风力强弱的情况下产生热水,同时根据加热系统的热容量利用垂直和水平风车叶片。 构成:使用风力发电和太阳能热的热水加热装置包括风车(10),设置齿轮(20),热水发生器(30),补充水箱(40),热水储存器 罐(50)和太阳能收集器(60)。 风车通过将风力转换为机械动力产生扭矩。 安装齿轮增加了风车的转矩。 热水发生器通过使用增加的扭矩与流体摩擦发热来产生热水。 补充水箱将液体供应给热水发生器。 热水储存罐通过热水供给泵(1),热水供给管(2),返回水管(3)将热水循环到加热设备(4)。 太阳能收集器连接到热水发生器,补充水箱和热水储罐,并使用太阳能产生热水。
    • 33. 发明公开
    • 보조탱크가 구비된 열교환장치
    • 带辅助油箱的换热器
    • KR1020120061199A
    • 2012-06-13
    • KR1020100122396
    • 2010-12-03
    • 소원석
    • 소원석
    • F24H7/02F24D3/00F24H9/00F24H9/18
    • PURPOSE: A heat exchange apparatus having an auxiliary tank is provided to improve heat efficiency by smoothly circulating water because internal pressure added to a heat exchange pipe is reduce by an auxiliary tank having an extended space. CONSTITUTION: A heat exchange apparatus(1) having an auxiliary tank comprises a heat exchange tank(5), a heat exchange pipe(6), an auxiliary tank(7), a hot water inflow pipe(8), a hot water discharge pipe(9), and a circulating pump(10). The heat exchange tank delivers heated circulating water to a heat storage tank(2) through a circulating water recovery pipe(4). The heat exchange pipe is arranged inside the heat exchange tank into a zigzag shape. The water flowing along the heat exchange pipe is heated by heat-exchanging with the heated circulating water in the heat storage tank. The auxiliary tank having a constant volume is fixed on the top of the heat exchange tank. The hot water inflow pipe is connected to the upper part of the auxiliary tank. The lower end of the heat exchange pipe is connected to the hot water discharge pipe installed in the lower part of the heat exchange tank. The circulating pump is connected to the hot water discharge pipe. The water in the auxiliary tank is heated by passing through the heat exchange pipe and is supplied through the hot water discharge pipe as hot water for heating or hot water supply.
    • 目的:提供一种具有辅助箱的热交换装置,通过平滑地循环水来提高热效率,因为通过具有延伸空间的辅助罐来减少添加到热交换管的内部压力。 构成:具有辅助箱的热交换装置(1)包括热交换箱(5),热交换管(6),辅助箱(7),热水流入管(8),热水排出口 管道(9)和循环泵(10)。 热交换罐通过循环水回收管(4)将加热的循环水输送到储热罐(2)。 热交换管布置在热交换器箱内成Z字形。 沿着热交换管流动的水通过与储热罐中的加热循环水进行热交换而被加热。 具有恒定体积的辅助罐固定在热交换罐的顶部。 热水流入管连接到辅助罐的上部。 热交换管的下端与安装在热交换器下部的热水排放管连接。 循环泵连接到热水排出管。 辅助罐中的水通过热交换管被加热,并通过热水排出管作为加热或热水供应的热水供给。
    • 34. 发明公开
    • 연속 장기 운전이 가능한 연료전지 열병합 시스템
    • 燃料电池热电联产系统能够连续而冗长的运行
    • KR1020120056563A
    • 2012-06-04
    • KR1020100118163
    • 2010-11-25
    • 지에스칼텍스 주식회사
    • 박정호김민석강석현전희권
    • H01M8/04F24D3/00B65D88/00
    • PURPOSE: Fuel cell cogeneration system is provided to prevent the excessive temperature increase of coolant supplied to a heat recover part, thereby operating fuel cell system continuously without tap water supply to water tank or the outflow of stored water, or stopping the system. CONSTITUTION: Fuel cell cogeneration system comprises: a coolant circulation pipe between a heat recovery part(1) and a water tank(2); an air-cooling type heat exchanger(7) installed in the coolant circulation pipe. The air-cooling type heat exchanger equipped with a fan(8). A supplied coolant pipe(3a) and a recovered coolant pipe(3b) in the coolant circulation pipe are installed to be coupled to inner space of the water tank, thereby circulating stored water in the water tank toward the coolant circulation pipe.
    • 目的:提供燃料电池热电联产系统,以防止供应给热回收部分的冷却剂过度升温,从而连续运行燃料电池系统,无需自来水供水至水箱或储存水流出,或停止系统。 构成:燃料电池热电联产系统包括:在热回收部分(1)和水箱(2)之间的冷却剂循环管; 安装在冷却剂循环管中的空气冷却型热交换器(7)。 具有风扇(8)的风冷式热交换器。 冷却剂循环管内的供给冷却剂管(3a)和回收冷却剂管(3b)与水箱的内部空间相连接,将贮存在水箱内的水循环向冷却剂循环管。
    • 35. 实用新型
    • A valve unit having a flow control valve
    • 具有流量控制阀的阀单元
    • KR20120003789U
    • 2012-06-01
    • KR20100012023
    • 2010-11-22
    • F16K15/02F16K7/12F24D3/00F24D19/10
    • F16K31/0655F16K7/12F16K27/0236F16K27/029F16K31/08F24D19/1015F24D2220/0271
    • 개폐밸브의 온, 오프 조작이 일시에 이루어지고, 유량의 미세조절이 용이하도록 된 유량제어밸브를 일체로 갖는 난방용 밸브유니트에 관한 것이다.
      이 유니트는 온수가 유입되는 유입구(11)와 온수가 배출되는 유출구(12)가 각각 양단부에 형성되고, 외주면에 제1결합공(13)과 제2결합공(14)이 일정간격으로 형성되며, 제1결합공(13)과 대향되는 내벽에 제1구획판(15)이 돌출형성되고 제2결합공(14)과 대향되는 내벽에 한쌍의 제2구획판(16)이 돌출형성된 배관몸체(10)와; 제1결합공(13)에 결합되어 제1구획판(15)의 상단부와 제1결합공(13) 사이의 통로(17)를 개폐시키는 개폐밸브(60)와; 제2결합공(14)에 결합되어 상기 제2구획판(16)의 상단부를 경유하는 난방수의 유량을 제어하는 유량제어밸브(70);를 구비한다.
      이와 같은 밸브유니트는 각 방으로의 난방수를 차단 및 공급하는 개폐밸브와 유량을 제어하는 유량제어밸브가 하나의 배관몸체에 결합되는 구조를 가짐으로써 그 구조가 간단하고 시공이 간편하다.
    • 36. 发明公开
    • 빛 감지센서를 이용한 보일러의 동작제어방법
    • 在锅炉中使用光传感器的操作控制方法
    • KR1020120051479A
    • 2012-05-22
    • KR1020100112928
    • 2010-11-12
    • 린나이코리아 주식회사
    • 방승훈권기출
    • F24H9/20F24D19/10F24D3/00
    • PURPOSE: A boiler operation control method using a light sensor is provided to prevent the waste of gas by automatically reducing the heat of the heating water supplied to a room heating pipe when detecting sunlight in the day time. CONSTITUTION: A boiler operation control method using a light sensor(11) is as follows. When a boiler is turned on, a CPU(Central Processing Unit,21) of a boiler body(2) receives the output signal of the light sensor installed in a room controller(1) in real time and determines whether the output signal is equal to or greater than a predetermined voltage. If the output signal is equal to or greater than a predetermined voltage, the incidence of sunlight is judged and it is determined whether the room temperature detected by a thermistor(12) of the room controller is lower than the temperature set by a user. If the current room temperature is lower than the set temperature, the tapping temperature of the boiler is gradually increased.
    • 目的:提供使用光传感器的锅炉操作控制方法,以便在白天检测阳光时,通过自动减少供应给室内加热管的供热水的热量来防止气体的浪费。 构成:使用光传感器(11)的锅炉运转控制方法如下。 当锅炉打开时,锅炉主体(2)的CPU(中央处理单元)21实时地接收安装在房间控制器(1)中的光传感器的输出信号,并确定输出信号是否相等 达到或大于预定电压。 如果输出信号等于或大于预定电压,则判断太阳光的入射,并确定室内控制器的热敏电阻(12)检测到的室温是否低于用户设定的温度。 如果当前室温低于设定温度,则锅炉出水温度逐渐升高。
    • 38. 发明公开
    • A boiler using heat exchanger of heating method several story coil type
    • 一种使用加热方式热交换器的锅炉几种故障线圈类型
    • KR20120042393A
    • 2012-05-03
    • KR20100104076
    • 2010-10-25
    • WON JONG AM
    • WON JONG AM
    • F24H1/16F24D3/00F28D7/04F28F1/00
    • F24H1/162F24H9/1818F24H2250/00F28D7/14Y10S165/437
    • PURPOSE: A boiler using an electric coil type heat exchanger is provided to improve heating by arranging a heat medium heating tank and a hot water/heating water heating tank in parallel. CONSTITUTION: A boiler using an electric coil type heat exchanger comprises a heat medium heating tank(100) and a hot water/heating water heating tank(200). The heat medium heating tank comprises one or more first heat exchange pipes(11), a first spiral guide path(12), and one or more heater units(15). The heater units are installed along the first spiral guide path. The hot water/heating water heating tank comprises one or more second heat exchange pipes(21) and a second spiral guide path(22). The hot water/heating water heating tank circulates heat media heated from the heat medium heating tank to the second spiral guide path and heats hot water and heating water circulated through the second heat exchangers.
    • 目的:提供一种使用电线圈式热交换器的锅炉,通过并列布置热介质加热箱和热水/加热水加热箱来改善加热。 构成:使用电线圈式热交换器的锅炉包括热介质加热槽(100)和热水/加热水加热罐(200)。 热介质加热槽包括一个或多个第一热交换管(11),第一螺旋引导路径(12)和一个或多个加热器单元(15)。 加热器单元沿着第一螺旋引导路径安装。 热水/加热水加热箱包括一个或多个第二热交换管(21)和第二螺旋引导路径(22)。 热水/加热水加热槽将从热介质加热箱加热的热介质循环到第二螺旋引导路径,并加热循环通过第二热交换器循环的热水和加热水。