会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明专利
    • Vapor compression type refrigerator
    • 蒸汽压缩式制冷机
    • JP2005180711A
    • 2005-07-07
    • JP2003410094
    • 2003-12-09
    • Denso CorpNippon Soken Inc株式会社デンソー株式会社日本自動車部品総合研究所
    • INABA ATSUSHIYAMANAKA YASUSHIIWANAMI SHIGEKISAKA KOICHIHOTTA TADASHI
    • F25B1/00F25B27/02
    • Y02A30/274
    • PROBLEM TO BE SOLVED: To provide a vapor compression type refrigerator equipped with a realizable Rankine cycle. SOLUTION: The refrigerator has an open/close valve 34c capable of blocking flow of refrigerant from a refrigerant discharge side of a compressor 10 to a radiator 11, a heater 30 for heating the refrigerator, refrigerant feeding means 31, 31a, 32 for bypassing the open/close valve 34c and feeding the refrigerant to the heater 30 and an energy recovery device 33 for recovering heat energy provided to the refrigerator by the heater 30 by expanding the refrigerant flowing out from the heater 30. In the case that the energy is recovered by the energy recovery device 33, the flow of refrigerant from the refrigerant discharge side of the compressor 10 to the radiator 11 is blocked by the open/close valve 34 and the refrigerant is circulated by the refrigerant feeding means 31, 31a, 32 in the following order; the heater 30, the energy recovery device 33, the radiator 11, heater 30. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种配备有可实现的兰金循环的蒸气压缩式冰箱。 解决方案:冰箱具有能够阻止制冷剂从压缩机10的制冷剂排出侧流到散热器11的开闭阀34c,用于加热冰箱的加热器30,制冷剂供给装置31,31a,32 用于旁路打开/关闭阀34c并将制冷剂供给到加热器30,以及能量回收装置33,用于通过使从加热器30流出的制冷剂膨胀来回收由加热器30提供给冰箱的热能。 能量通过能量回收装置33回收,制冷剂从压缩机10的制冷剂排出侧向散热器11的流动被打开/关闭阀34阻挡,制冷剂被制冷剂供给装置31,3a, 32按以下顺序; 加热器30,能量回收装置33,散热器11,加热器30.版权所有(C)2005,JPO&NCIPI
    • 3. 发明专利
    • Exhaust heat recovery system and method of controlling it
    • 废热回收系统及其控制方法
    • JP2006283711A
    • 2006-10-19
    • JP2005106840
    • 2005-04-01
    • Denso CorpNippon Soken Inc株式会社デンソー株式会社日本自動車部品総合研究所
    • HAMADA SHINICHISAKA KOICHITAKEDA YUKIHIKOKATO TETSUYATAKEYAMA MASAKI
    • F01N5/02B60H1/08F01P3/20F02G5/00F02G5/02
    • Y02T10/16Y02T10/166
    • PROBLEM TO BE SOLVED: To provide an exhaust heat recovery system which improves the heating performance by utilizing exhaust heat without deteriorating the fuel efficiency or exhaust emission of an internal combustion engine, and a method of controlling the system.
      SOLUTION: The exhaust heat recovery system comprises: a heating unit 21 which uses cooling water of the internal combustion engine 10 as a heating source; an exhaust heat recovery unit 30 which is arranged on an exhaust heat recovery passage 11a of an exhaust pipe 11 of the internal combustion engine 10 so as to recover the exhaust heat for heating the cooling water, the exhaust pipe 11 being branched into the exhaust heat recovery passage 11a and an exhaust bypass passage 11b which bypasses the exhaust heat recovery passage 11a; a flow regulating valve 35 for regulating a flow rate of the exhaust gas flowing through the exhaust heat recovery passage 11a and the exhaust bypass passage; and a control unit 40 for controlling a valve opening degree of the flow regulating valve 35. In the exhaust heat recovery system, the control unit 40 varies the valve opening degree according to the temperature of the cooling water and the exhaust gas flow rate determined according to the operating condition of the internal combustion engine 10 or the physical quantity correlated with the exhaust gas flow rate.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 解决的问题:提供一种通过利用排热而不劣化内燃机的燃料效率或废气排放来提高加热性能的排气热回收系统,以及控制该系统的方法。 排气热回收系统包括:使用内燃机10的冷却水作为加热源的加热单元21; 排气热回收单元30,布置在内燃机10的排气管11的排气热回收通道11a上,以回收用于加热冷却水的排气热,排气管11分支成排气热 回流通道11a和旁通废气热回收通道11a的排气旁路通道11b; 用于调节流经排气热回收通道11a和排气旁通通道的排气流量的流量调节阀35; 以及用于控制流量调节阀35的阀开度的控制单元40.在排气热回收系统中,控制单元40根据冷却水的温度和根据以下确定的废气流量来改变阀开度 与内燃机10的运转状态或与废气流量相关的物理量。 版权所有(C)2007,JPO&INPIT
    • 5. 发明专利
    • Refrigerating device equipped with waste heat utilization device
    • 配备废气加热装置的制冷装置
    • JP2006125770A
    • 2006-05-18
    • JP2004316738
    • 2004-10-29
    • Denso CorpNippon Soken Inc株式会社デンソー株式会社日本自動車部品総合研究所
    • INABA ATSUSHISAKA KOICHIYAMANAKA TAKASHIUNO KEIICHIOGAWA HIROSHI
    • F25B27/00F25B1/00
    • Y02T10/16
    • PROBLEM TO BE SOLVED: To provide a refrigerating device equipped with a waste heat utilization device capable of continuing cooling even at the time of stopping of a heat engine, and capable of coping with a cooling demand even when the cooling demand is raised temporarily. SOLUTION: In the refrigerating device equipped with the waste heat utilization device having a refrigerating cycle 200 and a Rankine cycle 300 using the waste heat of the heat engine 10, a main compressor 210 is driven by driving force of the heat engine 10, an expander 320 has a function as a sub compressor, and is connected to a motor generator 321 having functions of both of a generator and a motor, and a switch connection flow passage 500 is provided for enabling connection to a inflow side of a condenser 220 from a suction side of the main compressor 210 through the expander 320 working as the sub compressor. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种配备有即使在热机停止时也能够持续冷却的废热利用装置的制冷装置,并且即使在冷却需求升高时也能够应对冷却需求 暂时。 解决方案:在具有制冷循环200的余热利用装置的制冷装置和利用热机10的废热的兰金循环300中,主压缩机210由热机10的驱动力驱动 扩张器320具有作为副压缩机的功能,并且连接到具有发电机和电动机两者的功能的电动发电机321,并且设置有开关连接流路500,用于能够连接到冷凝器的流入侧 220从主压缩机210的吸入侧通过作为副压缩机的膨胀机320。 版权所有(C)2006,JPO&NCIPI
    • 8. 发明专利
    • Cooling water circuit of engine
    • 发动机冷却水电路
    • JP2006192950A
    • 2006-07-27
    • JP2005004098
    • 2005-01-11
    • Denso Corp株式会社デンソー
    • HAMADA SHINICHIYAMANAKA YASUTOSHIYAMAGUCHI HIROOYAMANAKA YASUSHISAKA KOICHIHISANAGA SHIGERU
    • B60H1/08F01N5/02
    • Y02T10/16
    • PROBLEM TO BE SOLVED: To restrain the quantity of water cooled in an exhaust heat recovery stop mode of an exhaust heat recovery device.
      SOLUTION: The exhaust heat recovery device 10 is provided with an exhaust gas passage part where exhaust gas of an engine 1 flows and a passage passage where cooling water of the engine 1 flows, a water tank 13 gas-liquid separating between the air and the cooling water is disposed on the downstream side of the water passage of the exhaust heat recovery device 10. In an exhaust heat recovery stop mode, the cooling water in the water passage part of the exhaust heat recovery device 10 is transferred to the interior of the water tank 13 to substitute the interior of the water passage with the air atmosphere. On the other hand, in an exhaust heat recovery mode, the air in the water passage of the exhaust heat recovery device 10 is extracted to the water tank 13 side to return the cooling water into the water passage.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了抑制废热回收装置的废热回收停止模式中的冷却水量。 解决方案:排气热回收装置10设置有排气通道部分,其中发动机1的排气流动,并且发动机1的冷却水流动的通道,水箱13之间的气液分离 空气,冷却水配置在排气热回收装置10的水通路的下游侧。在废热回收停止模式中,排气热回收装置10的水通路部分的冷却水被转移到 水箱13的内部用空气气氛代替水通道的内部。 另一方面,在排气热回收模式中,排气热回收装置10的水通道中的空气被抽取到水箱13侧,以将冷却水返回到水通道中。 版权所有(C)2006,JPO&NCIPI
    • 9. 发明专利
    • Vapor compression refrigerator
    • 蒸汽压缩机
    • JP2006177588A
    • 2006-07-06
    • JP2004369882
    • 2004-12-21
    • Denso Corp株式会社デンソー
    • INABA ATSUSHISAKA KOICHITAKANO YOSHIAKI
    • F25B27/02B60H1/22F25B1/00
    • Y02A30/274
    • PROBLEM TO BE SOLVED: To provide a vapor compression refrigerator provided with a Rankine cycle effectively utilizing waste heat of a heat generating device, capable of inversely heating the heat generating device when an amount of waste heat of the heat generating device is small even if an outside air temperature is extremely low.
      SOLUTION: A vapor compression refrigerator having a refrigeration cycle 200 is disclosed. In a Rankine cycle 300, a refrigerant is circulated through a pump 310, a heater 320, an expander 330 and a condenser 220 in that order, and power is recovered by the expander 330 due to the expansion of the refrigerant from the heater 320. In a host gas cycle 500, on the other hand, the inlet of the compressor 210 can be connected from a point between the pump 310 and the heater 320 by a switching path 510 having a first restricting portion 510, the refrigerant is circulated by the compressor 210 through the heater 320 and the switching path 510 in that order, and the heater 320 exhibits the function of heating a heat generating device 10.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 解决的问题:提供一种具有兰金循环的蒸汽压缩式制冷机,其有效利用发热装置的废热,当发热装置的余热量小时能够对发热装置进行逆加热 即使外部空气温度极低。 解决方案:公开了一种具有制冷循环200的蒸汽压缩式制冷机。 在兰金循环300中,制冷剂依次循环通过泵310,加热器320,膨胀机330和冷凝器220,并且由于来自加热器320的制冷剂的膨胀,膨胀机330回收功率。 在主机气循环500中,另一方面,压缩机210的入口可以通过具有第一限制部分510的切换路径510从泵310和加热器320之间的点连接,制冷剂由 压缩机210依次通过加热器320和开关路径510,加热器320具有加热发热装置10的功能。(C)2006年,JPO&NCIPI
    • 10. 发明专利
    • Vapor compression refrigerator
    • 蒸汽压缩机
    • JP2006118754A
    • 2006-05-11
    • JP2004304840
    • 2004-10-19
    • Denso Corp株式会社デンソー
    • INABA ATSUSHIYAMANAKA YASUSHISAKA KOICHIYAMANAKA TAKASHI
    • F25B1/00F25B13/00F25B25/00F25B27/02
    • B60H1/00885B60H1/00907B60H2001/00928B60H2001/00949B60H2001/3297F25B27/02Y02A30/274Y02B30/52
    • PROBLEM TO BE SOLVED: To provide a vapor compression refrigerator comprising a Rankine cycle usefully using waste heat of heat generating equipment, capable of heating the heat generating equipment conversely when there is little waste heat of the heat generating equipment.
      SOLUTION: The vapor compression refrigerator in which refrigerant circulates in the order of a condenser 220, a pressure reducer 240, and an evaporator 250 by a compressor 210 and which exhibits the freezing function with the evaporator 250, is provided with the Rankine cycle 300 in which refrigerant circulates a pump 310 discharging the refrigerant, a heater 320 heating the refrigerant using the waste heat of the heat generating equipment 10 as a heating source, an expander 330, and a condenser 220 in this order and collects mechanical power with the expander 330, and a heat pump cycle 400 provided with a bypass channel 410 which has a throttling part 412 allowing to bypass the pump 310, in which the refrigerant circulates in the order of the heater 320, the bypass channel 410, and the condenser 220 by the compressor 210, achieving a heat absorbing function with the condenser 220 and exhibiting the heating function to the heat generating equipment 10 with the heater 320.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种蒸气压缩式制冷机,其包括有利地使用发热设备的余热的兰金循环,当发热设备的废热几乎没有时,可以相反地加热发热设备。 解决方案:制冷剂通过压缩机210以冷凝器220,减压器240和蒸发器250的顺序循环并且与蒸发器250呈现冷冻功能的蒸气压缩式制冷机配有兰金 循环300,其中制冷剂循环泵310排出制冷剂;加热器320,依次使用发热设备10的余热作为加热源加热制冷剂,膨胀机330和冷凝器220,并以 膨胀机330和设置有旁通通道410的热泵循环400,旁通通道410具有允许旁路泵310的节流部分412,其中制冷剂按照加热器320,旁通通道410和冷凝器的顺序循环 通过压缩机210实现与冷凝器220的热吸收功能并且利用加热器320向发热设备10展现加热功能。COPYRIG HT:(C)2006,JPO&NCIPI