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    • 2. 发明授权
    • A heat exchange apparatus and a warmer apparatus
    • 热交换器和加热器装置
    • EP0048831B1
    • 1984-11-28
    • EP81106755.2
    • 1981-08-29
    • Nepon Company, Ltd.
    • Kuwa, MasatoshiKamanaka, RyusukeNihei, ToshioKondo, Kimio
    • F28D7/02A01G9/24
    • A01G9/243F28D7/024Y02A40/266Y02P60/124
    • A heat exchange apparatus which utilizes the solar heat, hot spring water or underground water comprises a cylindrical main body, an internal cylinder placed in the main body, a blower provided in an upper part of the internal cylinder, an air intake, a number of radially arranged air exhaust tubes, ring shaped upper and lower heat exchange compartments, and chambers formed between heat exchange compartments, on and under the upper and lower heat exchange compartment, upper and lower chambers are connected by coil tubes placed in heat exchange compartments, the outer coil tubes and inner coil tubes are successively connected so that each of connected coil tubes has the same overall lenth, which improves efficiency of heat exchange between air and water which are caused to move in a counterflow fashion. Such a heat exchange apparatus or its modification is utilized in a warmer apparatus for horticulture facilities utilizing solar heat comprising a sensor device provided in a greenhouse to detect the greenhouse temperature, a heat exchange device of a water-air counterflow type functioning to collect and discharge heat provided with a control unit regulating various devices, a circulating pump and linked heat storage tanks serving as stocking means with a change-over valve to change the flow of water and sensors to detect water temperature are provided to pipings connecting said heat exchange device and heat storage tanks.
    • 3. 发明公开
    • A heat exchange apparatus and a warmer apparatus
    • 热交换装置和加热装置
    • EP0048831A3
    • 1982-08-25
    • EP81106755
    • 1981-08-29
    • Nepon Company, Ltd.
    • Kuwa, MasatoshiKamanaka, RyusukeNihei, ToshioKondo, Kimio
    • F28D07/02A01G09/24
    • A01G9/243F28D7/024Y02A40/266Y02P60/124
    • A heat exchange apparatus which utilizes the solar heat, hot spring water or underground water comprises a cylindrical main body, an internal cylinder placed in the main body, a blower provided in an upper part of the internal cylinder, an air intake, a number of radially arranged air exhaust tubes, ring shaped upper and lower heat exchange compartments, and chambers formed between heat exchange compartments, on and under the upper and lower heat exchange compartment, upper and lower chambers are connected by coil tubes placed in heat exchange compartments, the outer coil tubes and inner coil tubes are successively connected so that each of connected coil tubes has the same overall lenth, which improves efficiency of heat exchange between air and water which are caused to move in a counterflow fashion. Such a heat exchange apparatus or its modification is utilized in a warmer apparatus for horticulture facilities utilizing solar heat comprising a sensor device provided in a greenhouse to detect the greenhouse temperature, a heat exchange device of a water-air counterflow type functioning to collect and discharge heat provided with a control unit regulating various devices, a circulating pump and linked heat storage tanks serving as stocking means with a change-over valve to change the flow of water and sensors to detect water temperature are provided to pipings connecting said heat exchange device and heat storage
    • 5. 发明公开
    • Hot-air furnace
    • Heissluftkessel。
    • EP0413411A1
    • 1991-02-20
    • EP90304682.9
    • 1990-04-30
    • Nepon Company, Ltd.
    • Kamanaka, RyusukeKakuta, Yoshio
    • F24H3/10
    • F24H3/105
    • A hot-air furnace has a long-flame burner (12) for combusting gas or liquid fuel with a combustion chamber (13) connected to the burner (12) and having its length ( l ) and width (w₁) in relationship of w₁ l . A heat ex­changer (15) is located above the combustion chamber (13) and has internally a gas flow guide plate (14) which guides combustion gas flow (31) discharged from the combustion chamber (13) to the heat exchanger (15). The heat exchanger (15) has a width (w₂) and length ( l ) in the relationship of w₂ l . An exhaust port (16) for exhausting the combustion gas flow (31) is located at the front or rear of, right or left-hand side of or on the top side above said heat exchanger (15). A casing (10) has a drum (11) integrally connecting the combus­tion chamber (13) and the heat exchanger (15), an air flow guide and directing plate (23) which covers the drum (11), a radiant heat absorber plate (22) outside the combustion chamber (13), and a blower (19) above or below the drum (11). A discharge port (20) is mounted in such a manner that the direction of discharging air flow (32) corresponds to the up or down position of the blower (19).
    • 热风炉具有长燃火焰燃烧器(12),用于燃烧气体或液体燃料,燃烧室(13)连接到燃烧器(12),其长度(l)和宽度(w1)的关系为w1
    • 6. 发明公开
    • A heat exchange apparatus and a warmer apparatus
    • Vorrichtung zumWärmetauschund Vorrichtung zurErwärmung。
    • EP0048831A2
    • 1982-04-07
    • EP81106755.2
    • 1981-08-29
    • Nepon Company, Ltd.
    • Kuwa, MasatoshiKamanaka, RyusukeNihei, ToshioKondo, Kimio
    • F28D7/02A01G9/24
    • A01G9/243F28D7/024Y02A40/266Y02P60/124
    • A heat exchange apparatus which utilizes the solar heat, hot spring water or underground water comprises a cylindrical main body, an internal cylinder placed in the main body, a blower provided in an upper part of the internal cylinder, an air intake, a number of radially arranged air exhaust tubes, ring shaped upper and lower heat exchange compartments, and chambers formed between heat exchange compartments, on and under the upper and lower heat exchange compartment, upper and lower chambers are connected by coil tubes placed in heat exchange compartments, the outer coil tubes and inner coil tubes are successively connected so that each of connected coil tubes has the same overall lenth, which improves efficiency of heat exchange between air and water which are caused to move in a counterflow fashion.
      Such a heat exchange apparatus or its modification is utilized in a warmer apparatus for horticulture facilities utilizing solar heat comprising a sensor device provided in a greenhouse to detect the greenhouse temperature, a heat exchange device of a water-air counterflow type functioning to collect and discharge heat provided with a control unit regulating various devices, a circulating pump and linked heat storage tanks serving as stocking means with a change-over valve to change the flow of water and sensors to detect water temperature are provided to pipings connecting said heat exchange device and heat storage
    • 利用太阳热,温泉水或地下水的热交换装置包括圆筒形主体,放置在主体内部的内筒,设置在内筒上部的鼓风机,进气口,多个 径向布置的排气管,环形上下热交换隔室和形成在上下热交换隔室,上下室之间和之间的热交换室之间的室由放置在热交换室中的盘管连接, 外部线圈管和内部线圈管被连续地连接,使得每个连接的线圈管具有相同的总线长度,这提高了以逆流方式移动的空气和水之间的热交换的效率。 这种热交换装置或其改造用于利用太阳能的园艺设备的加热装置中,所述太阳能热量包括设置在温室中的传感器装置以检测温室温度,用于收集和排出的水 - 空气逆流式热交换装置 设置有调节各种装置的控制单元的热量,循环泵和作为储存装置的连接的储热罐设置有用于改变水的流量和传感器以检测水温的换向阀,连接所述热交换装置和 储热罐