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    • 6. 发明专利
    • LATENT HEAT ACCUMULATIVE DEVICE
    • JPH10141714A
    • 1998-05-29
    • JP29526496
    • 1996-11-07
    • TOSHIBA CORP
    • SAKAMOTO KATSUYAKITAGAWA KIYOHIKO
    • F24F5/00F25C1/00F28D20/02
    • PROBLEM TO BE SOLVED: To accumulate cold heat efficiently by performing a continuous operation of a freezer without any trouble at all. SOLUTION: A latent heat storing device is operated such that non-freezing liquid of which condensing temperature is lower than water and non-solved without being mixed and combined to each other is cooled by another separate freezer 11 to a temperature less than the condensing point of water and injected by an injection nozzle 8 into water contained in an ice storing tank 1. A part of water is cooled and condensed through a heat exchanging operation by a direct contact with the non-freezing liquid, its latent heat is removed to generate sherbet-like ice and then the ice is stored, the latent heat when the sherbet-like ice is condensed is utilized. There are provided a non-freezing liquid recording section 1a for separating and recovering non-freezing liquid flowed out through the injection nozzle 8 into the water in the ice storing tank 1, and a moisture removing filter 12 for removing the moisture mixed in the freezing liquid at the non-freezing liquid recovering section 1a from within the non-freezing liquid.
    • 7. 发明专利
    • ICE HEAT ACCUMULATING DEVICE
    • JPH09159231A
    • 1997-06-20
    • JP31658095
    • 1995-12-05
    • TOSHIBA CORP
    • OKUMURA TAKUJIKITAGAWA KIYOHIKO
    • F24F5/00
    • PROBLEM TO BE SOLVED: To provide an ice heat accumulating device in which icing can be positively prevented at a nozzle injection port of a non-freezing liquid injection nozzle even at a heat accumulating tank having a short height size, instant countermeasure can be performed at the icing location due to a certain reason or the like and a stable ice making operation can be carried out. SOLUTION: There are provided a non-freezing liquid cold heat supplying system A1 in which non-freezing liquid is taken out of a bottom part of a heat accumulating tank 21, cooled to 0 deg.C or less and circulated back to a non-freezing liquid injection nozzle 30 at an upper part of the heat accumulating tank, and a non-freezing liquid cold heat bypassing system B1 in which the non-freezing liquid is taken out of a bottom part of the heat accumulating tank and circulated back to the non-freezing liquid injection at an upper part of the heat accumulating tank under non-cooled state. The non-freezing liquid injection nozzle is comprised of an inner pipe for injecting non-freezing liquid in the non-freezing liquid cold heat supplying system against water 24 to generate ice and an outer pipe covering the inner pipe, injecting non-freezing liquid passed through a non-frozen liquid bypassing system against water to form a film of non-freezing liquid. A piping 29 in the non-freezing liquid bypassing system is provided with a sensing means 39 for use in sensing a state in which a location of the nozzle injection port of the outer pipe at the non-freezing liquid injection nozzle shows an abnormal low temperature, and a hot heat source 40 for heating the non-frozen liquid flowing in the non-frozen liquid bypassing system at a nozzle injection port location when the abnormal low temperature state is detected.
    • 8. 发明专利
    • ICE HEAT ACCUMULATING DEVICE
    • JPH09159229A
    • 1997-06-20
    • JP31658195
    • 1995-12-05
    • TOSHIBA CORP
    • MORIKAWA OSAMUKITAGAWA KIYOHIKO
    • F24F5/00
    • PROBLEM TO BE SOLVED: To restrict a partial staying of ice which may be probably produced at an ice making cylinder and a bottom part of an ice making tank during an ice making operation and further to enable a stable ice making to be carried out continuously in a high charging efficiency. SOLUTION: There are provided an ice making cylinder 3 in which water and low temperature non-freezing liquid having a higher specific weight than that of water are in contact with each other to make sherbet-like ice in a continuous manner, a feeding pipe 48 for feeding ice manufactured by the ice making cylinder, dropped downwardly by its own weight and non-freezing liquid from a lower end of the ice making cylinder in a lateral direction, an ice making tank for receiving ice and non- freezing liquid from the ice making cylinder through this feeding pipe, storing the non-freezing liquid at the bottom due to a difference in specific weight and floating the ice by its own buoyancy so as to store it, and an ice accumulating tank for receiving ices from the ice making tank and storing them in the tank. Within the feeding pipe 48 are installed a slant guide plate 52 for smoothly guiding the flow of dropped ices and the non-freezing liquid toward the ice making tank and a horizontal guide plate 53 arranged at a lower end side of the slant guide plate and for regulating a flow of the ices and non-freezing liquid toward the ice making tank.
    • 9. 发明专利
    • ICE HEAT STORAGE DEVICE
    • JPH10281602A
    • 1998-10-23
    • JP8678697
    • 1997-04-04
    • TOSHIBA CORP
    • GOTO KOICHIYOSHINO HITOSHIKITAGAWA KIYOHIKO
    • F24F5/00F25C1/00
    • PROBLEM TO BE SOLVED: To realize stable ice making by suppressing choking of inside of a freezer with frozen water, and icing on the tip of jet nozzle by suppressing the entrainment of water to the antifreeze solution at the antifreeze solution storage part of an ice making tank. SOLUTION: An ice heat accumulator is provided with an ice making tank 1 storing water insoluble antifreeze solution 4 of witch specific gravity is heavier than that of water and water 2, and an antifreeze solution circulating system producing fine ice particles by heat exchanging the collected antifreeze solution with an antifreeze solution pump from the inside of the ice making tank 1 being flowed from antifreeze solution jetting nozzles 12 opened at the upper part of the boundary between the water 2 and the antifreeze solution 4 with water, after cooling it to the temperature lower that 0 deg.C with a freezer, and an antifreeze solution storing part 5 is formed with a downward recess formed on the bottom surface of the ice making tank 1 forming inclined parts 6 with an adequate angle at the parts connecting between either of the both side opening part edges of the storing part 5 and the bottom surface of the ice making tank 1.