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    • 5. 发明专利
    • AIR CLEANER
    • JPH02169052A
    • 1990-06-29
    • JP32114588
    • 1988-12-20
    • TOSHIBA CORP
    • SUGIYAMA AKIHIKOWATABIKI OSEROJIYOUINMORITA KEIICHIMURANO MITSUO
    • F24F7/00B03C3/02B03C3/155F24F3/16
    • PURPOSE:To lower the pressure drop of flowing air and also to make a controlling part difficult to be affected by noise and insulation deterioration by parallel arranging an electric dust collection part, a filter part and the controlling part in order thereof. CONSTITUTION:The left side of an air cleaner 1 is formed into an electric dust collection part 12 and the right side thereof is formed into a filter part 13. A controlling part 14 for controlling an air conditioner 2 and the electric dust collection part 12 is provided to the right side part of the filter 13. In such a way, since both the electric dust collection part 12 and the filter part 13 are parallel arranged to the lateral direction, pressure drop of the air in a room can be lowered and therefore the performance of the air conditioner 2 can be prevented from being lowered. Furthermore the controlling part 14 is parallel arranged to the lateral direction and therefore the distance of the electric dust collection part 12 and the controlling part 14 can be made sufficiently large. Thereby the controlling part 14 is made difficult to be affected by noise of the electric dust collection part 12 and also creeping distance can be made large. Therefore even when insulation deterioration is caused in the electric dust collection part 12, the controlling part is uneffected by leakage current.
    • 6. 发明专利
    • REFRIGERATING CYCLE
    • JPH01305269A
    • 1989-12-08
    • JP13403888
    • 1988-05-31
    • TOSHIBA CORP
    • MORITA KEIICHI
    • F25B1/10F25B13/00
    • PURPOSE:To simplify a heat storage unit by forming a intermediate port between compressors of low and high stage sides in a 2-stage compressor, and providing a refrigerant passage for returning the part of the refrigerant passed through a condenser to the port through a heat storage pressure reducing unit and the storage unit at the tie of storage heat utilizing heating operation. CONSTITUTION:A two-way valve 34 of the side of a condenser 3 is so opened by utilizing the heat of a heat storage material 31 as to raise its heating capacity, and a two-way valve 37 of the side of an evaporator 5 is closed. Thus, refrigerant discharged from a 2-stage compressor 1 is branched to a heat absorbing heat exchanger 33 of a heat storage unit 2 and the evaporator 5 through the heating heat exchanger 32 of the unit 2 and a condenser 3. The part of the branched refrigerant is sucked to an intermediate port 8 through a heat storage pressure reducing unit 35 and the exchanger 33, and one refrigerant is sucked to a suction cup 7 through a pressure reducing unit 4 and the evaporator 5. Accordingly, since the heat can be absorbed from the evaporator 5 and also absorbed from the material 31, it is not necessary to obtain all heat source from the material 31, thereby simplifying the unit 2.
    • 7. 发明专利
    • HEAT-ACCUMULATION REFRIGERATION CYCLE DEVICE
    • JPH01102257A
    • 1989-04-19
    • JP26009387
    • 1987-10-15
    • TOSHIBA CORP
    • HOSHI TAKAOMORITA KEIICHI
    • F25B1/00F24F3/06F25B13/00F25B43/00F25B47/02
    • PURPOSE: To enhance the efficiency of heat accumulating action and the reliability of a compressor while increasing the accumulation temperature level by providing a refrigerant tube branched from the delivery side of the compressor to communicate with the introduction side of a heat absorption heat exchanger in a heat absorption bypass circuit. CONSTITUTION: Upon opening a second two-way valve 11, refrigerant is introduced through a compressor 1 - a heat exchanger 7 for heating a heat accumulation tank 6 - a four-way valve 2 - an indoor side heat exchanger 3 - the second two-way valve 11 - a reducing valve 4 - an outdoor side heat exchanger 5 - the four-way valve 2 - the compressor 1. Upon opening sixth and seventh on/off valves 17, 18, refrigerant is introduced through the compressor 1 - the sixth on/off valve 17 - a heat exchanger 8 for absorbing heat from the heat accumulation tank 6 - the seventh on/off valve 18 - an auxiliary capillary 19 - the outdoor side heat exchanger 5. Since both heat exchangers 7, 8 condense refrigeration in the heat accumulation tank 6 at the time of exclusive heat accumulating operation, condenser capacity is increased and operation of the compressor 1 is not interrupted frequently due to high pressure rise. Continuous operation time is prolonged and heat accumulation is increased because heat can be accumulated under a state where delivery temperature is raised sufficiently.
    • 10. 发明专利
    • Rotary compressor
    • 旋转式压缩机
    • JPS5765894A
    • 1982-04-21
    • JP9251781
    • 1981-06-16
    • Toshiba Corp
    • MORITA KEIICHI
    • F04C29/04F04C18/356F04C29/02
    • PURPOSE: To improve capacity and stability of a rotary compressor by providing a cylinder with a liquid-cooling-medium pouring port on the high pressure side and a gas-cooling-medium pouring port on the low pressure side so as to be injected alternarely and to attain each matching of flow rate.
      CONSTITUTION: During the operation of a rotary compressor 1, because a gas and liquid separator 10 is connected with a gas injection pipe 13 and a liquid injection pipe 14, gas cooling medium flows at low pressure through the pipe 13 and is injected at the opening time through a port 6 into a cylinder 2. On the other hand, liquid cooling medium flows at high pressure through the pipe 14 and is injected at the opening time into the cylinder 2. In this way, because th ports 6 and 7 are opened or closed as a rotor 3 rotates but they are so provided as to not be opened at the same time, the gas cooling medium and the liquid cooling medium are injected alternately and each matching of low rate can be attained. Thus, the compressor capacity and stability can be improved.
      COPYRIGHT: (C)1982,JPO&Japio
    • 目的:通过在高压侧设置液体冷却介质注入口的气缸和低压侧的气体冷却介质注入口,以便间歇地注入,从而提高旋转压缩机的容量和稳定性,以及 达到每个匹配的流量。 构成:在旋转式压缩机1的运转中,由于气体分离器10与气体喷射管13和液体喷射管14连接,所以气体冷却介质通过管13在低压下流动,并在开口部 时间通过端口6进入气缸2.另一方面,液体冷却介质通过管道14在高压下流动,并且在打开时间被喷射到气缸2中。这样,由于端口6和7被打开 或者当转子3旋转时闭合,但是它们被设置为不同时打开,气体冷却介质和液体冷却介质被交替地注入,并且可以获得低速率的匹配。 因此,可以提高压缩机的容量和稳定性。