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    • 62. 发明专利
    • Heating system
    • 加热系统
    • JPS59134437A
    • 1984-08-02
    • JP790383
    • 1983-01-20
    • Mitsubishi Electric Corp
    • ASANO TADASHINARUSE TOSHIHIRO
    • F24F1/00F25B1/00F25B29/00
    • PURPOSE: To make it possible to perform a comfortable heating operation and which has a small heat loss by a method wherein a condenser and an evaporator in a cooling cycle are provided in the room and the upper part of the room is cooled while the lower part of the room is heated by utilizing warm air in the upper part of the room.
      CONSTITUTION: An electromagnetic valve 10 is opened to cause a burner 20 to operate and an electromagnetic valve 17 is also opened. A coolant is heated to vaporize by a coolant heater 13, the vaporized coolant is sucked into, and discharged from, a compressor 14 to reach a second heat exchanger 7 and a first heat exchanger 5 and by operating blowers 6 and 8, the room is heated. When the temperature in the upper part of the room reaches a predetermined value, the electromagnetic valve 10 is closed and the combustion of the burner 20 is stopped. As a choking resistor is inserted in the coolant, the second heat exchanger acts as a condenser and the first heat exchanger 5 acts as an evaporator. In this case, an air blast by a blower 6 is directed upward in the room 2 and that by a blower 8 is directed downward so that the temperature distribution in the room is substantially equalized.
      COPYRIGHT: (C)1984,JPO&Japio
    • 目的:为了能够通过在室内设置冷却循环中的冷凝器和蒸发器的方式进行舒适的加热运转并且具有小的热损失,并且室内的上部被冷却,而下部 房间的上部通过利用温暖的空气来加热房间。 构成:电磁阀10打开以使燃烧器20工作,电磁阀17也打开。 冷却剂被冷却剂加热器13加热蒸发,蒸发的冷却剂被吸入压缩机14并从压缩机14排出,到达第二热交换器7和第一热交换器5,并且通过操作鼓风机6和8,房间是 加热。 当房间上部的温度达到预定值时,关闭电磁阀10并停止燃烧器20的燃烧。 由于扼流电阻器插入冷却剂中,所以第二热交换器用作冷凝器,第一热交换器5用作蒸发器。 在这种情况下,鼓风机6的鼓风被引导到房间2的上方,并且通过鼓风机8被引导向下,使得室内的温度分布基本相等。
    • 63. 发明专利
    • Space heater
    • 小型供暖器
    • JPS59131834A
    • 1984-07-28
    • JP689083
    • 1983-01-19
    • Mitsubishi Electric Corp
    • ASANO TADASHINARUSE TOSHIHIRO
    • F24D7/00F24D5/12F25B1/00
    • F24D5/12
    • PURPOSE:To offer a comfortable and less heat-loss space heater by a method wherein a heat obtained from the upper part of a heated room is utilized for cooling of the upper part of the room and utilized for heating of the lower part of the room. CONSTITUTION:At a heating operation due to the low temperature inside of a room 4, a burner 12 is burned, a solenoid valve 10 is also turned ON and opened, a refrigerant is evaporated after heated with a refrigerant heater 6, then changed to a high temperature and high pressure gas refrigerant, sucked into a compressor 7, discharged from the compressor, introduced into the second indoor heat exchanger 20 through a by-pass circuit 11, further, introduced into the first indoor heat exchanger 18 through a solenoid valve 23, thus, heats the first and second heat exchangers. When a temperature detecting element 24 detects that the temperature of the upper part of a room is heated up to the designated temperature by the heating, a heating operation is changed-over to heat utilizing operation, the burning of the burner 12 is stopped. The second indoor heat exchanger 20 acts as a condenser, the first indoor heat exchanger 18 acts as a evaporator, a blast caused by a blower 19 is directed toward upper direction of a room 2, a blast caused by a blower 21 is directed toward lower direction of the room 2, then the distribution of temperature inside of the room is made uniform, the uncomfortableness in a living area is eliminated, further, energy saving can be achieved.
    • 目的:通过一种方法提供一种舒适而且较少的热量损失的空间加热器,其中从被加热室的上部获得的热量用于冷却房间的上部并用于加热房间的下部 。 构成:在室内4内由于室内温度低的加热运转时,燃烧器12燃烧,电磁阀10也接通并打开,制冷剂在用制冷剂加热器6加热后蒸发,然后变为 被吸入从压缩机排出的压缩机7的高温高压气体制冷剂通过旁通回路11被引入到第二室内热交换器20中,并通过电磁阀23被引入第一室内热交换器18 因此,加热第一和第二热交换器。 当温度检测元件24检测到通过加热将房间上部的温度加热到指定温度时,将加热操作转换为热利用操作,停止燃烧器12的燃烧。 第二室内热交换器20作为冷凝器,第一室内热交换器18作为蒸发器,由鼓风机19引起的鼓风朝向室内2的上方,由鼓风机21引起的风吹向下方 房间2的方向,室内温度分布均匀,消除了居住区的不舒服,进一步节能。
    • 66. 发明专利
    • Enclosed type rotary compressor
    • 封闭式旋转压缩机
    • JPS59105992A
    • 1984-06-19
    • JP21515682
    • 1982-12-08
    • Mitsubishi Electric Corp
    • ASANO TADASHINARUSE TOSHIHIRO
    • F04C23/02F04C23/00F25B1/10F25B13/00F25B31/02
    • F04C23/001F25B1/10F25B13/00F25B31/026F25B2313/008F25B2313/0213F25B2313/023F25B2400/075F25B2500/17F25B2600/2501
    • PURPOSE:To obtain the enclosed type rotary compressor capable of miniaturizing the outdoor machine thereof and manufacturing it inexpensively by providing rotary compression elements in a plurality of enclosed vessels in parallel. CONSTITUTION:The rotary compression elements 3, 4 connected directly to an electric motor element 2 are provided respectively with a roller 9, rotated eccentrically in a cylinder 7 by the eccentric part 8 of a rotary shaft 6, and a sliding piece 12, abutted against the roller at all times to divide the inside of the cylinder 7 into a high pressure chamber 10 and a low pressure chamber 11. In a room cooling cycle, a solenoid valve 29 is opened and the electric motor element 2 is driven, whereby the rotary compression elements 3, 4 effect a perfect parallel operation. The solenoid valve 28 is closed and refrigerant flows as shown by a full line arrow sign in the diagram. In a room heating cycle, the solenoid valve 29 is closed and the rotary compression elements 3, 4 effect the operation of different suction conditions. When the solenoid valve 28 is opened, the refrigerant flows as shown by a broken line arrow sign and a heat pump cycle, in which the refrigerant is circulating through the rotary compression element 3, an indoor heat exchanger 26 and an outdoor heat exchanger 24, as well as a refrigerant heating cycle, in which the refrigerant is circulating through the rotary compression element 4, the indoor heat exchanger 26 and a refrigerant heater 27, are constituted.
    • 目的:为了获得能够使室外机小型化并且通过在多个封闭容器中并列设置旋转压缩元件来廉价地制造的封闭式旋转压缩机。 构成:直接与电动机元件2连接的旋转压缩元件3,4分别设置有通过旋转轴6的偏心部8在气缸7中偏心旋转的辊9和滑动件12, 始终将滚筒7的内部分成高压室10和低压室11.在室内冷却循环中,打开电磁阀29并驱动电动马达元件2,由此旋转 压缩元件3,4实现完美的并行操作。 电磁阀28关闭,制冷剂如图中的全线箭头符号所示流动。 在房间加热循环中,电磁阀29关闭,旋转压缩元件3,4影响不同抽吸条件的操作。 当电磁阀28打开时,制冷剂如虚线箭头符号和制冷剂循环通过旋转压缩元件3的热泵循环,室内热交换器26和室外热交换器24所示流动, 以及制冷剂循环通过旋转压缩元件4,室内热交换器26和制冷剂加热器27的制冷剂加热循环。
    • 69. 发明专利
    • ELECTROMAGNETIC INDUCTION HEATING APPARATUS
    • JPH1092560A
    • 1998-04-10
    • JP24757196
    • 1996-09-19
    • MITSUBISHI ELECTRIC CORP
    • HARUHARA KATSUYUKIKURAHASHI YASUNORIASANO TADASHI
    • H05B6/06
    • PROBLEM TO BE SOLVED: To use only one high frequency generating means and lower the cost by mutually connecting an electric power unit, a coil unit, and a control unit through respective connection means. SOLUTION: An object to be heated is mounted on a heating coil 411 and an electric power change demanding signal is transmitted to a control unit 1 through an information input/output terminal 404 by operating operation input means 412. Consequently, the unit 1 receives the on/off timing through an information input/output terminal 202 of an electric power unit 2 and the electric power determined by the unit 1 is supplied to a coil 411 through an electric power output terminal 307 to carry out heating. As a result, since electric power is supplied to all of the coils 411 regardless of the number of the coil units 4, no heating operation impossible coil is produced. Moreover, in the case units 4 are increased, only installing them is enough and the unit 2 can be unified and the cost can be lowered. Furthermore, since units are divided into respective units, the options of appliance arrangement can be increased.
    • 70. 发明专利
    • STORING CHAMBER VENTILATION DEVICE
    • JPH0420732A
    • 1992-01-24
    • JP12206090
    • 1990-05-11
    • MITSUBISHI ELECTRIC CORP
    • ASANO TADASHISATAKE KAZUHIKO
    • F24F7/08
    • PURPOSE:To reduce a consumption power, decrease a relative humidity within a storing chamber and prevent a dew formation in the storing chamber by a method wherein a ventilation device in the storing chamber is provided with a heat exchanger for use in performing a sensitive heat exchanging operation between an air supplying flow and a circulation flow and a return flow passage for returning a part of the air supplying flow after heat exchanging operation to the air supplying flow before heat exchanging operation. CONSTITUTION:Upon operation of a ventilation device in a storing chamber, air in a room S1 is sucked from an indoor air suction port 4 into a circulation flow passage 6, passes through a heat exchanger 7 and the air is blown out of an indoor air blowing port 5 into a room S1 and then the air in the room S1 is circulated. In turn, surrounding air is sucked through a surrounding air intake port 1 into an air supplying flow passage 3, the air passes through a heat exchanger 7 and is blown out of a surrounding air blowing port 2 into a storing chamber S. A part of the air is fed out from a clearance of an opening or closing door 12 of the storing chamber S into the room S1. A part of the air supplying flow passed through the heat exchanger 7 flows in a return flow passage 10 and is returned back to an inlet port of the heat exchanger 7. Air supplying flow and the circulation flow are heat exchanged in sensitive heat at the heat exchanger 7, and an temperature of the surrounding air supplied into the storing chamber S is approached to an air temperature in the room and then an air temperature at an inlet side of the heat exchanger 7 is increased by the returned part of the supplied air flow through the return flow passage 10.