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    • 1. 发明专利
    • Heat pump type heat recovering device
    • 热泵型热回收装置
    • JP2008008595A
    • 2008-01-17
    • JP2006182280
    • 2006-06-30
    • Kansai Electric Power Co Inc:TheToyo Eng Works Ltd株式会社東洋製作所関西電力株式会社
    • IKEUCHI MASAKIIKOMA KENJIWATABE SHINICHIRONINOMIYA TATSUHIRANO ISAOICHIOKA JUN
    • F25B1/00F25B30/02
    • Y02A40/965Y02B30/52Y02P60/851
    • PROBLEM TO BE SOLVED: To provide a heat pump type heat recovering device capable of stably rising a heat recovering operation by preventing problems that a refrigerant is rapidly cooled to be condensed into liquid between a heat exchanger for recovering heat and a suction port of a compressor after starting a heat recovering operation, or the refrigerant is condensed by oil inside of the compressor to be condensed into liquid. SOLUTION: This heat pump type heat recovering device constituted by annularly connecting the compressor 1, a condenser 2, a pressure reducing device 4 and an evaporator 5 in this order, heating the water supplied from the external to the condenser 2 by condensation latent heat of the refrigerant in the condenser to supply steam/water of high temperatures, and evaporating the refrigerant in the evaporator 5 while using exhaust heat supplied from the external to the evaporator 5 as a heat source, is further provided with heat quantity control means 14, 16 for controlling heat quantity of exhaust heat supplied to the evaporator in starting the device. COPYRIGHT: (C)2008,JPO&INPIT
    • 解决的问题:提供一种热泵式热回收装置,其能够通过防止制冷剂被快速冷却以在用于回收热量的热交换器与吸入口之间冷凝成液体的问题而稳定地升高热回收操作 开始热回收操作后的压缩机,或者制冷剂被压缩机内部的油冷凝而被冷凝成液体。

      解决方案:该热泵式热回收装置依次将压缩机1,冷凝器2,减压装置4和蒸发器5环状地连接起来,通过冷凝将从外部供给到冷凝器2的水加热 冷凝器内的制冷剂的潜热供给高温蒸气/水,蒸发器5内的制冷剂蒸发,同时利用从外部向蒸发器5供给的排热作为热源,还设置有热量控制装置 14,16,用于控制在启动装置时供应到蒸发器的排气热量。 版权所有(C)2008,JPO&INPIT

    • 2. 发明专利
    • Heat pump type steam and warm water generator
    • 热泵型蒸汽和暖风水发电机
    • JP2007232357A
    • 2007-09-13
    • JP2007023370
    • 2007-02-01
    • Kansai Electric Power Co Inc:TheToyo Eng Works Ltd株式会社東洋製作所関西電力株式会社
    • IKOMA KENJIWATABE SHINICHIRONINOMIYA TATSUHIRANO ISAOICHIOKA JUN
    • F25B1/00F22B3/00F24D17/00F24H1/00F25B30/02F28D9/00
    • Y02A40/965Y02B30/18Y02P60/851
    • PROBLEM TO BE SOLVED: To provide a steam and warm water generator which recovers heat left in warm drain as a heat source to produce steam or high temperature water of required temperature and warm water simultaneously to thereby contribute to energy saving and a decrease in the emission amount of carbon dioxide and constituted using existing equipment with simple structure to minimize an increase of device cost. SOLUTION: The steam and warm water generator comprises a refrigerant circuit wherein one end of a refrigerant pipe 2 with the other end connected to the discharge side of a compressor is connected to the intake side of the compressor through a first heat exchanger 4, a second heat exchanger 6, an expansion valve 7 and a heat recovery apparatus 8. Heat from an external heat source is recovered by the heat recovery apparatus to produce steam or high temperature water and warm water in the first heat exchanger and the second heat exchanger. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种蒸汽和温水发生器,其将热水中留下的热量作为热源回收以同时产生所需温度和温水的蒸汽或高温水,从而有助于节能和减少 在二氧化碳的排放量中,使用结构简单的现有设备构成,以最小化设备成本的增加。 蒸汽和暖水发生器包括制冷剂回路,其中另一端连接到压缩机的排放侧的制冷剂管2的一端通过第一热交换器4连接到压缩机的进气侧 第二热交换器6,膨胀阀7和热回收装置8.热回收装置回收来自外部热源的热量,以在第一热交换器中产生蒸汽或高温水和温水,第二热量 器。 版权所有(C)2007,JPO&INPIT
    • 3. 发明专利
    • Heat pump type steam/hot water generator
    • 热泵型蒸汽/热水发电机
    • JP2006017426A
    • 2006-01-19
    • JP2004198017
    • 2004-07-05
    • Kansai Electric Power Co Inc:TheToyo Eng Works Ltd株式会社東洋製作所関西電力株式会社
    • IKOMA KENJIHIRANO ISAOWATABE SHINICHIRONINOMIYA TATSU
    • F24H1/00F25B1/00F25B27/02F25B31/00
    • Y02A30/274Y02A40/967Y02P60/851Y02P80/152
    • PROBLEM TO BE SOLVED: To provide a heat pump type steam/hot water generator capable of concurrently supplying steam and hot water by effectively recovering exhaust heat and using the exhaust heat as a heat source in various types of factories, capable of selectively supplying only steam or only hot water by a change-over of a valve, and by this, capable of carrying out effective utilization of energy. SOLUTION: The heat pump type steam/hot water generator is provided with a compressing means 1 and 3, condensing means 5 and 6, an expansion valve 9, and an evaporator 10 in this order, and water supplied to the condensing means is heated by heat of condensation of a refrigerant in the condensing means to supply steam/hot water. The condensing means 5 and 6 are composed of a first condenser 5 and a second condenser 6 serially connected to a refrigerant outgoing pipe 4, and it is composed such that steam and hot water are respectively supplied at the same time from the first condenser and the second condenser. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种能够通过有效地回收排热并且使用排气热作为各种类型的工厂中的热源同时供应蒸汽和热水的热泵式蒸汽/热水发生器,其能够选择性地 仅通过阀门的转换来供应蒸汽或仅供热水,从而能够有效利用能源。 解决方案:热泵式蒸汽/热水发生器依次设置有压缩装置1和3,冷凝装置5和6,膨胀阀9和蒸发器10,并且向冷凝装置 被冷凝装置中的制冷剂的冷凝热加热以供应蒸汽/热水。 冷凝装置5和6由与制冷剂输出管4串联连接的第一冷凝器5和第二冷凝器6组成,并且分别与第一冷凝器同时分别供给蒸汽和热水, 第二冷凝器。 版权所有(C)2006,JPO&NCIPI
    • 4. 发明专利
    • Heating/cooling device for sterilization
    • 用于灭菌的加热/冷却装置
    • JP2007202446A
    • 2007-08-16
    • JP2006023686
    • 2006-01-31
    • Kansai Electric Power Co Inc:TheToyo Eng Works Ltd株式会社東洋製作所関西電力株式会社
    • IKOMA KENJIWATABE SHINICHIRONINOMIYA TATSUHIRANO ISAOICHIOKA JUN
    • A23L3/20A61L2/04F25B27/02
    • Y02A30/274Y02A40/965Y02A40/967Y02B30/52Y02P60/85Y02P60/851
    • PROBLEM TO BE SOLVED: To provide a heating/cooling device for sterilization generating high-temperature water for heating, utilizing residual heating water or surrounding air after using heat or cooling heat as a heat source in a heater or a cooler so as to effectively utilize exhaust heat to contribute to energy saving, and also having a simple structure so as to enable prevention of rise in device costs. SOLUTION: The heating/cooling device for sterilization is provided with the following: a processed-liquid flow path through which processed liquid is passed to a sterilization heater 1 and a cooler 2 in this order; a high-temperature water supplying path through which high-temperature water for heating is supplied to the heater 1; a cooling water supplying path through which cool water for cooling is supplied to the cooler 2; and a heat pump device 6 recovering exhaust heat of backwater from the heater 1 in the high-temperature water supplying path and back water from the cooler at the cool water supplying path to generate cool water for cooling and to generate high-temperature water or steam for heating by utilizing the recovered exhaust heat. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种加热/冷却装置,用于在加热器或冷却器中使用加热或冷却热作为热源之后,利用残余加热水或周围空气来产生用于加热的高温水,以便 有效地利用废热来节省能源,还具有简单的结构,能够防止装置成本上升。 解决方案:用于灭菌的加热/冷却装置具有以下处理液流路:经处理的液体依次通过灭菌加热器1和冷却器2; 将加热用高温水供给到加热器1的高温供水路径; 将冷却用冷水供给到冷却器2的冷却水供给路径; 以及热泵装置6,其从高温供水路径中的加热器1回收回水的热量,并在冷水供给路径从冷却器返回回水,以产生用于冷却的冷水并产生高温水或蒸汽 通过利用回收的废热进行加热。 版权所有(C)2007,JPO&INPIT
    • 5. 发明专利
    • Heat pump type heat recovering device
    • 热泵型热回收装置
    • JP2008008594A
    • 2008-01-17
    • JP2006182279
    • 2006-06-30
    • Kansai Electric Power Co Inc:TheToyo Eng Works Ltd株式会社東洋製作所関西電力株式会社
    • IKEUCHI MASAKIIKOMA KENJIWATABE SHINICHIRONINOMIYA TATSUHIRANO ISAOICHIOKA JUN
    • F25B1/00F25B30/02F25B43/00
    • Y02A40/965Y02B30/52Y02P60/851Y02P80/152
    • PROBLEM TO BE SOLVED: To solve a problem that the refrigerant is rapidly cooled to be condensed into liquid between a heat exchanger for heat recovery and a suction port of a compressor after starting a heat recovering operation, or the refrigerant is condensed by oil inside of the compressor to be condensed into liquid. SOLUTION: This heat pump type heat recovering device where a refrigerant circuit is constituted by annularly connecting the compressor 1, a condenser 2, a pressure reducing device 4 and an evaporator 5 in this order, the water supplied from the external is heated by condensation latent heat of the refrigerant in the condenser 2 to produce steam/hot water, and the exhaust heat supplied from the external to the evaporator is recovered as evaporation heat of the refrigerant in the evaporator, is provided with heating means 15, 24 of the refrigerant between the evaporator 5 and the compressor 1. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题为了解决在开始热回收操作之后制冷剂被快速冷却以冷却到热回收用热交换器和压缩机的吸入口之间的问题,或者制冷剂被冷凝 压缩机内的油被冷凝成液体。 解决方案:这种热泵式热回收装置,其中制冷剂回路依次环形连接压缩机1,冷凝器2,减压装置4和蒸发器5构成,从外部供应的水被加热 通过冷凝器2中的制冷剂的冷凝潜热产生蒸汽/热水,并且从蒸发器中的制冷剂的蒸发热回收从外部供应到蒸发器的排气热,加热装置15,24 蒸发器5和压缩机1之间的制冷剂。版权所有(C)2008,JPO&INPIT
    • 6. 发明专利
    • Cooling system
    • 冷却系统
    • JP2006017427A
    • 2006-01-19
    • JP2004198018
    • 2004-07-05
    • Kansai Electric Power Co Inc:TheToyo Eng Works Ltd株式会社東洋製作所関西電力株式会社
    • IKOMA KENJIHIRANO ISAOWATABE SHINICHIRONINOMIYA TATSU
    • F25B1/00F25B6/04
    • Y02P80/152
    • PROBLEM TO BE SOLVED: To carry out effective utilization of energy by concurrently or selectively supplying steam and hot water by using condensation exhaust heat recovered from a condensing unit as a heat source, to use a compressor and a cooling tower of smaller scales in the condensing unit, and to reduce device costs and running costs.
      SOLUTION: The cooling system is provided with the condensing unit 1 connected to a cooling tower 12, and a heat pump type steam/hot water generator 17 heating water supplied to a condensing means by heat of condensation of a refrigerant to supply steam and hot water. A change-over mechanism 20 is provided for changing over water from a condenser 3 in the condensing unit 1 to one or both of the cooling tower 12, and an evaporator in the steam/hot water generator 17, and it is composed such that the condensation exhaust heat can be changed over to one or both of discharge to the atmosphere from the cooling tower, and recovery by the steam/hot water generator.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:通过使用从冷凝单元回收的冷凝废热作为热源,通过同时或选择性地供应蒸汽和热水来有效利用能量,使用压缩机和较小尺度的冷却塔 在冷凝单元中,并降低设备成本和运行成本。

      解决方案:冷却系统设置有连接到冷却塔12的冷凝单元1和热泵式蒸汽/热水发生器17,其通过制冷剂的冷凝热供应到供应蒸汽的冷凝装置供给水 和热水。 提供了一种转换机构20,用于将冷凝单元1中的冷凝器3的水从蒸汽/热水发生器17中的一个或两个冷却塔12和蒸发器/热水发生器17的蒸发器中转换出来, 冷凝排气热量可以从冷却塔排放到大气中的一种或两种,并通过蒸汽/热水发生器进行回收。 版权所有(C)2006,JPO&NCIPI

    • 7. 发明专利
    • Cooling system
    • 冷却系统
    • JP2013047608A
    • 2013-03-07
    • JP2012263893
    • 2012-12-01
    • Toyo Eng Works Ltd株式会社東洋製作所
    • WATABE SHINICHIROSAISHOJI KIMIHIDE
    • F25B49/00F25B1/00F25B49/02
    • PROBLEM TO BE SOLVED: To provide an efficient cooling system, which is a cooling device using a harmful refrigerants such as ammonium, can be miniaturized and saved in energy, and can withstand the leakage or the like of a harmful gas.SOLUTION: The cooling system comprises: a cold-wind sucking damper 25 attached to a cold-wind suction part; a cold-wind blow-out damper 26 attached to a cold-wind blow-out part of a cooler; a discharging damper 27 which is closed in a normal time and attached to a portion of the cooler; a refrigerant leakage detection sensor 28 which detects the leakage of the harmful refrigerants; a control device 13 which stops the operation of a freezer 18 when the leakage of the harmful refrigerants is detected by the refrigerant leakage detection sensor, and operates the cold-wind sucking damper 25 and the cold-wind blow-out damper 26 so as to be closed; discharging ducts 35, 29 which are detachably attached to a discharging opening/closing means 27, and discharge the leaked harmful refrigerants to the outside of a cooled chamber 10; and a heating means which can heat the inside of the discharging ducts up to a temperature at which the leaked refrigerants leaked into the discharging ducts are changed to gas phases from liquid phases. Thus, the leaked ammonium can easily be collected.
    • 要解决的问题:提供一种使用有害制冷剂如氨的冷却装置的高效冷却系统可以小型化并节省能量,并且能够承受有害气体的泄漏等。 解决方案:冷却系统包括:附接到冷风吸入部的冷风吸入风门25; 连接到冷却器的冷风吹出部分的冷风吹出风门26; 排放阻尼器27,其在正常时间关闭并附接到冷却器的一部分; 检测有害制冷剂的泄漏的制冷剂泄漏检测传感器28; 控制装置13,其通过制冷剂泄漏检测传感器检测到有害制冷剂的泄漏时停止冷冻器18的运转,并对冷风吸入风门25和冷风吹出风门26进行动作,从而 关闭 排放管35,29,其可拆卸地附接到排放开/关装置27,并将泄漏的有害制冷剂排放到冷却室10的外部; 以及加热装置,其能够将排出管道的内部加热到泄漏的制冷剂泄漏到排出管道中的温度,从而将液相变成气相。 因此,可以容易地收集泄漏的铵。 版权所有(C)2013,JPO&INPIT
    • 8. 发明专利
    • Cooling system
    • 冷却系统
    • JP2010210129A
    • 2010-09-24
    • JP2009055756
    • 2009-03-09
    • Toyo Eng Works Ltd株式会社東洋製作所
    • WATABE SHINICHIROSAISHOJI KIMIHIDE
    • F25B49/02F25B1/00F25B49/00
    • PROBLEM TO BE SOLVED: To provide a cooling system capable of improving cooling efficiency of ammonia and chlorofluorocarbon etc., reducing the size and saving energy.
      SOLUTION: The cooling system includes: an ammonia detoxifying device 14; a discharge system having a discharge conduit 35 with one end side connected to inside of a cooler 17 and the other end side connected to the ammonia detoxifying device 14 and an normally-closed type opening/closing damper 36 for controlling opening/closing of the discharge conduit 35; an ammonia leakage detection sensor 28 for detecting leakage of an ammonia refrigerant; and a control part 13 for stopping the operation of an ammonia refrigerator 18, opening the opening/closing damper 36 of the discharge system, closing a cold air suction damper 25 and a blowout part damper 26, respectively and then, operating the ammonia detoxifying device 14 when leakage of the ammonia refrigerant is detected by the ammonia leakage detection sensor 28. The leaked ammonia refrigerant gas is forcedly recovered to the ammonia detoxifying device 14 via the discharge conduit 35.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供能够提高氨和氯氟烃等的冷却效率的冷却系统,减小尺寸并节省能源。 解决方案:冷却系统包括:氨解毒装置14; 排出系统,具有排出管道35,其一端侧连接到冷却器17的内部,另一端侧连接到氨解毒装置14;以及常闭型开闭风门36,用于控制排出口的开闭 导管35; 用于检测氨制冷剂的泄漏的氨泄漏检测传感器28; 以及用于停止氨冷冻机18的操作的控制部13,打开排出系统的打开/关闭风门36,分别关闭冷气吸入阻尼器25和吹出部分阻尼器26,然后操作氨解毒装置 14,当氨泄漏检测传感器28检测到氨制冷剂的泄漏时,泄漏的氨制冷剂气体经由排出管道35被强制回收到氨解毒装置14中。(C)2010,JPO&INPIT
    • 9. 发明专利
    • Multiple heat pump type steam/hot water generating device
    • 多功能热泵型蒸汽/热水发电装置
    • JP2009216383A
    • 2009-09-24
    • JP2009155587
    • 2009-06-30
    • Toyo Eng Works Ltd株式会社東洋製作所
    • WATABE SHINICHIROHIRANO ISAOICHIOKA JUNNINOMIYA TATSUTONOMURA MIGAKU
    • F25B7/00F25B1/00F25B6/04F25B27/02F25B30/02
    • F25B2339/047Y02A30/274
    • PROBLEM TO BE SOLVED: To provide a multiple heat pump type steam/hot water generating device capable of retrieving condensation heat of a refrigerating device which has been exhausted and let go to the outside, effectively using the condensation heat by generating necessary steam and hot water in a heat pump circuit composed of a multiple coolant circuit, achieving stabilization of operation of the refrigerating device and reduction in equipment cost of the refrigerating device, and contributing to energy saving.
      SOLUTION: The condensation heat of an exterior refrigerator 2 is retrieved by a waste heat retrieving heat exchanger 9 in a low-dimension side coolant circuit 3. The retrieved heat is transmitted to a high-dimension side coolant circuit 4 via a cascade condenser 5. In heat exchangers 15, 16 of the high-dimension side coolant circuit 4, water supplied from outside is heated by the heat of the coolant circulating in the high-dimension side coolant circuit 4, which generates either the steam or the hot water, or both of them at the same time.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种能够回收已经排出并排出到外部的制冷装置的冷凝热的多重热泵式蒸汽/热水发生装置,有效地使用冷凝热产生必要的蒸汽 和由多个冷却剂回路构成的热泵回路中的热水,实现制冷装置的运转稳定化,降低制冷装置的设备成本,并且有助于节能。 解决方案:外部冰箱2的冷凝热由低温侧冷却剂回路3中的废热回收热交换器9回收。回收的热量通过级联传递到高维侧冷却剂回路4 冷凝器5.在高维侧冷却剂回路4的热交换器15,16中,从外部供应的水由在高端侧冷却剂回路4中循环的冷却剂的热量而被加热,这产生蒸汽或热 水或两者同时。 版权所有(C)2009,JPO&INPIT
    • 10. 发明专利
    • Air conditioning system using ocean deep water
    • 使用海洋深水的空调系统
    • JP2005308314A
    • 2005-11-04
    • JP2004126452
    • 2004-04-22
    • Toyo Eng Works Ltd株式会社東洋製作所
    • OTA TAKASHIWATABE SHINICHIRO
    • F24F3/00F24F11/02
    • PROBLEM TO BE SOLVED: To provide an air conditioning system having reduced running cost, with a longer-life heat exchanger for heat exchange between water to be supplied to an air-conditioner and ocean deep water. SOLUTION: The air conditioning system using the ocean deep water performs cooling operation while supplying water cooled by heat exchange with the ocean deep water to a cooling coil 5 provided in an air passage of the air-conditioner 2. During normal operation, the air conditioning system adjusts the amount of the ocean deep water to be supplied to the heat exchanger 6 for heat exchange between the ocean deep water and the water depending on air conditioning load, but during stopping the cooling operation, the air conditioning system supplies a preset maximum amount of ocean deep water to the heat exchanger. Thereby, dirt in the heat exchanger flows out and corrosion in the heat exchanger is prevented. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了提供具有降低的运行成本的空调系统,具有用于供应到空调的水和海洋深水之间的热交换的更长寿命的热交换器。

      解决方案:使用海洋深水的空调系统在通过与海洋深水进行热交换而冷却的水的同时,向设置在空调2的空气通道中的冷却盘管5进行冷却运转。在正常运转中, 空调系统根据空调负荷调节供应给热交换器6的海洋深水量与海洋深水和水之间的热交换量,但是在停止制冷运转时,空调系统提供 预设最大量的海洋深水到热交换器。 由此,热交换器中的污物流出,并且防止热交换器中的腐蚀。 版权所有(C)2006,JPO&NCIPI