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    • 1. 发明专利
    • HYDROGEN GAS DISCHARGER FOR ABSORPTION REFRIGERATING UNIT
    • JPH10122707A
    • 1998-05-15
    • JP29585996
    • 1996-10-18
    • EBARA CORP
    • MURATA JUNINOUE OSAYUKIMOCHIZUKI SADAICHIMATSUDA NOBUTAKA
    • F25B43/04
    • PROBLEM TO BE SOLVED: To provide a hydrogen gas discharger for an absorption refrigeration unit which can secure airtightness regardless of temperature change by improving the adhesion to the joint of a palladium pipe. SOLUTION: In a hydrogen gas discharger 9 which allows the permeation of the gas generated in an absorption refrigerating unit consisting of a gas reservoir 10 for reserving non-condensing gas, a paradigm pipe 11 or a palladium alloy pipe provided in the reservoir 10, and a heater 18 for heating the pipe 11, as for the paradigm pipe 11 or the paradigm alloy pipe, one end is sealed in cap form, and the open end on the other side is connected to a pipe joint provided in the gas reservoir 10, and this pipe joint comprises the joint body 15, a nut 17, and a sleeve 16, and it is one which is constituted so that at least one end of the sleeve 16 may bite in the palladium pipe or the palladium alloy pipe by inserting the paradigm pipe 11 or the palladium alloy pipe and fastening the nut 17, and it is good to provide the joint inside the pipe 11 with a backup ring, or to increase the thickness of the joint itself of the pipe more than the other section of the pipe.
    • 5. 发明专利
    • HIGH-TEMPERATURE REGENERATOR
    • JPH09113065A
    • 1997-05-02
    • JP29618095
    • 1995-10-19
    • EBARA CORP
    • INOUE OSAYUKIMOCHIZUKI SADAICHIKERA SUNAO
    • F24H1/28F25B33/00
    • PROBLEM TO BE SOLVED: To provide a direct fired liquid heater having high durability and reliability by suppressing the area of the heat insulator structure of a rear smoke chamber to the necessary minimum limit and simplifying the structure. SOLUTION: The high-temperature regenerator comprises a furnace body 6 of a double wall structure for constituting a cylindrical combustion chamber 2 at the inside and liquid spaces 5a to 5d at the outside, a burner 11 disposed at one end side of the chamber 2, and a smoke tube 8 arranged along the longitudinal direction of, the body 6 in the spaces 5a to 5d at the upper part of the chamber 2 and opened at the other end side in the chamber 2, and heat exchanges the high-temperature gas in the chamber 2 with the liquids in the spaces 5a to 5d to heat. In this case, the sidewall of the other end side of the chamber 2 is formed in a double wall structure communicating with the body 6, an opening 15 is formed at the position of the sidewall opposed to the tube 8, and a shielding member 16 for detachably covering the opening 15 is mounted.
    • 10. 发明专利
    • Centrifugal type heat pump
    • 离心式热泵
    • JPS58214697A
    • 1983-12-13
    • JP9698482
    • 1982-06-08
    • Ebara Corp
    • SAKAIDA SUSUMUMAEDA KENSAKUMOCHIZUKI SADAICHI
    • F04D27/00F04D29/58F25B1/00F25B1/053
    • F04D29/5846
    • PURPOSE:To make it possible to operate a centrifugal type heat pump at a high temperature of hot water, by injecting cooling liquid into compressed coolant gas discharged from an impeller so that the temperature of the gas is lowered by the evaporation of the cooling liquid. CONSTITUTION:Coolant liquid to be injected into coolant gas through a spray nozzle 3, is taken out from a float chamber 12 in a condenser 3, and is fed to the nozzle 13 through a pipe line 14. The injected liquid absorbes heat from the high temperature coolant gas, is led together with the coolant gas to the condenser 3 where the coolant liquid is condensed, and is returned to the float chamber 12. Therefore, the temperature of the coolant gas downstream of the outlet of the impeller in the compressor is lowered, thereby the compressor may be operated at a high temperature of hot water.
    • 目的:为了能够在高温的热水下操作离心式热泵,通过将冷却液注入从叶轮排出的压缩的冷却剂气体中,通过冷却液的蒸发来降低气体的温度。 构成:通过喷嘴3喷射到冷却剂气体中的冷却剂液体从冷凝器3中的浮子室12中取出,并通过管道14被供给到喷嘴13.喷射的液体从高吸收热量 冷却剂气体与冷却剂气体一起被引导到冷凝器3,其中冷却剂液体被冷凝,并且返回到浮动室12.因此,压缩机中的叶轮出口下游的冷却剂气体的温度为 从而压缩机可以在高温的热水下运转。