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    • 11. 发明专利
    • Air conditioning system
    • 空调系统
    • JPS6159142A
    • 1986-03-26
    • JP17823784
    • 1984-08-29
    • Yazaki Corp
    • ISHIBASHI TOSHIHIROKAYAMA HARUO
    • F24F11/02F24F11/06
    • F24F11/83
    • PURPOSE:To perform an air conditioning with a less energy loss and a high efficiency by controlling the capacity of a cold water generating means and a cold water pump based on the cold water temperature that changes according to the amount of the thermal demand. CONSTITUTION:When the cold water temperature changes in response to the change in the thermal demand, the capacity of a cold water generator as well as its delivery rate are changed. When operating under the cooling mode, for example, cold water is supplied to radiators 51-53 through two-way valves 71'-73' which are opened by room temperature adjusters 61-63. The temperature of cold water returning to the cold water generator 1 is detected by a temperature sensor 8, and a multi-position adjuster 9' opens all gas valves 101-103 to supply the maximum calorie to the cold water generator, and at the same time, causes all cold water pumps 40-43 to be operated. When the cold water temperature is reduced, the multi-position adjuster 9' closes the gas valves to reduce the gas input to the cold water generator, and at the same time, causes the cold water pump 43 to stop to save the power requirement for pumping the cold water.
    • 目的:通过根据热需求量变化的冷水温度控制冷水发生装置和冷水泵的容量,进行能量损失较小,效率高的空调。 构成:当冷水温度随着热需求的变化而变化时,冷水发生器的容量及其输送速率发生变化。 当在冷却模式下运行时,例如,通过由室温调节器61-63打开的二通阀71'-73'将冷水供应到散热器51-53。 返回到冷水发生器1的冷水的温度由温度传感器8检测,多位置调节器9'打开所有气阀101-103,以向冷水发生器提供最大热量,同时 时间,使所有冷水泵40-43运行。 当冷水温度降低时,多位置调节器9'关闭气阀以减少输入到冷水发生器的气体,同时使冷水泵43停止以节省 抽冷水。
    • 12. 发明专利
    • CONTROL METHOD FOR WATER VOLUME IN AIR CONDITIONER
    • JPS6082732A
    • 1985-05-10
    • JP19047983
    • 1983-10-12
    • NAGAI SHIGESABUROU
    • SHIRAISHI HIDEKI
    • F24F5/00F24F11/06
    • PURPOSE:To enable a control over flow rate to be performed under a proper arrangement of pipe network without using any special device by a method wherein a branch flow pipe of small diameter is arranged at a main flow pipe at the inlet side, and a bypass pipe communicating an outlet intersecting point between the main flow pipe at the inlet and the branched pipe of small diameter with the main flow pipe at the main flow pipe at the inlet port is arranged. CONSTITUTION:A branched pipe 22 is composed of a main flow pipe 21 at the inlet for a heat exchanger 20, a branch flow pipe 22A of a small diameter, and a branched pipe of large diameter 22B confluent at an intersecting point 23 with the branched pipe 22A of small diameter. A bypass pipe 25 communicating with the main flow pipe 24 at the outlet port of a flow rate adjusting valve is communicated at the intersecting point 23 with an acute angle with respect to the flowing direction of the main flow pipe at the inlet port. Both branched pipes 22A and 22B and the bypass pipe 25 are arranged in the same plane. As a result, it is made possible to increase or decrease a flow rate A4 for the bypass pipe 25 under variation in a striking energy at the confluent at the intersecting point 23 produced as the increasing or decreasing of water flow rate of cold water A0 and then to make a constant flow rate A3 for the air conditioner.
    • 14. 发明专利
    • AIR CONDITIONER
    • JPS5869343A
    • 1983-04-25
    • JP16839281
    • 1981-10-20
    • MATSUSHITA ELECTRIC IND CO LTD
    • ISHII KATSUMIKUNIMOTO KEIJIROU
    • F24F11/02F24F11/06
    • PURPOSE:To constantly perform appropriate cooling or heating irrespectively of changes in room temperature, by providing a controller for changing a set point of the temperature of a heat-transmitting medium in accordance with room temperature, and a controller for changing the amount of airflow in accordance with the temperature of a heat exchanger for room air and the medium. CONSTITUTION:A heat source unit 1 and a terminal unit 6 are connected to each other, and the heat-transmitting medium is circulated therethrough to cool or heat the interior of a room. In this case, a detector for the temperature of room air is provided at a room air suction port 9 of the terminal unit 6. The set point of the temperature of the medium is determined on the basis of a signal from the detector 12 by the controller 14, and an electrically driven valve 15 for regulating the supply of fuel to a burner 2 for heating the medium and the amount of air blown by an exhaust blower 4 are controlled by a signal generated by a detector 13 for the temperature of the medium. The amount of air blown by a blower 8 is controlled by a controller 17 on the basis of a signal from a detector 16 for the temperature of the heat exchanger 7. Accordingly, the set point of the temperature of the heat-transmitting medium and the amount of airflow are always controlled appropriately in accordance with the room temperature to perform excellent cooling or heating.
    • 15. 发明专利
    • Fan coil unit control system
    • 风机盘管控制系统
    • JPS57124645A
    • 1982-08-03
    • JP989781
    • 1981-01-26
    • Yamatake Honeywell Co Ltd
    • INOUE KENTAROUTAKEUCHI KOUJIROUKOJIMA TADASHISHITOU NAOMICHI
    • F24F11/02F24F5/00F24F11/06
    • F24F11/83
    • PURPOSE:To make the provision of a common pump dispensed with and to save energy by a method wherein a plurality of electrically controllable local pumps each having an interrupting function at the time of its stoppage are provided adjacent a group of fan coil units so as to be connected in series with the latters, respectively. CONSTITUTION:The local pumps LP1-LPn each of which is formed of a comparatively small-sized electromagnetic pump are provided adjacent the fan coil units FU1-FUn so as to be connected in series with the latters, respectively, and water from a water source WS is supplied to the fan coil units in response to pulse signals from control sections CT1-CTn which correspond to the fan coil units. Further, temperature sensors TS1-TSn are provided in cooling and heating zones, respectively.
    • 目的:通过一种方法来提供普通泵,并且通过一种方法来节省能量,其中在一组风扇盘管单元附近设置多个在其停止时具有中断功能的电可控局部泵,以便 分别与后者连接。 构成:分别由比较小型的电磁泵形成的局部泵LP1-LPn设置在风扇盘管单元FU1-FUn附近,分别与水源串联连接,水源 响应于来自与风扇盘管单元对应的控制部分CT1-CTn的脉冲信号,将WS提供给风扇盘管单元。 此外,温度传感器TS1-TSn分别设置在冷却和加热区域中。
    • 18. 发明专利
    • HEAT SOURCE CONTROL DEVICE
    • JPS5671746A
    • 1981-06-15
    • JP14678679
    • 1979-11-13
    • TOKYO SHIBAURA ELECTRIC CO
    • OGAWA TOSHIAKI
    • F24F11/02F24F5/00F24F11/00F24F11/06F28D20/00
    • PURPOSE:To conduct efficient control of a heat source, by connecting an auxiliary heat-accumulating tank to a heat-accumulating tank provided on an air-conditioning unit, etc. in a building and making it possible to use the auxiliary heat-accumulating tank as a heat source or a heat load under a required heat loaded condition. CONSTITUTION:A heat source, that is a refrigerator 9, is connected between an ending terminal 1B and a starting terminal 1A, and at the same time, heat loads 10 and 11 are connected between the starting terminal 1A and the ending terminal 1B, and a calory accumulated in a main heat-accumulating tank 1 is to be consumed by heat loads 10 and 11. And, during the night time, the refrigerator 9 is driven utilizing inexpensive night-time power supply, and chill and heat are accumulated in the main heat-accumulating tank 1. In case if the heat is accumulated in excess of capacity of the main heat-accumulating tank 1, three-direction valves 5 through 8 by a control device 12, and tank-to-tank connecting pumps 3 and 4 are started. By doing so, chilled water sent out from the refrigerator 9 is sent into an auxiliary heat- accumulating tank 2, and chill and heat are accumulated in this auxiliary heat- accumulating tank 2.