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    • 1. 发明专利
    • Hot water supply and heating system
    • 热水供暖系统
    • JP2013190189A
    • 2013-09-26
    • JP2012058940
    • 2012-03-15
    • Toho Gas Co Ltd東邦瓦斯株式会社
    • YOSHIMURA MASAHIROMARUYAMA YUTAKA
    • F24H1/00F24D3/00
    • PROBLEM TO BE SOLVED: To provide a hot water supply and heating system which uses waste heat generated by a power generating unit (cogeneration system) for hot water supply and heating in a comparatively simple structure, and is available together with another heat supply device using natural energy resources.SOLUTION: A hot water supply and heating system has a hot water supply system having a hot water storage tank, a heating system and a power generating unit, wherein the power generating unit 10 is connected with a waste heat outgoing pipe H11 which discharges a circulation heat medium heated by waste heat to the hot water storage tank and a waste heat return pipe H12 to which the circulation heat medium is returned from the hot water storage tank, a boiler 40 and a mixing device 32 are connected through a mixed-water pipe, the boiler and a heat release body 20 are connected by a heating outgoing pipe H21 which supplies a circulation heat medium from a first discharge part of the boiler to the heat release body and a heating return pipe H22 which returns the circulation heat medium from the heat release body to a heating return header 44, and the boiler is connected with a first branch outgoing pipe H41 connected to the waste heat outgoing pipe and a first branch return pipe H42 connected to the waste heat return pipe.
    • 要解决的问题:提供一种以比较简单的结构使用由发电单元(热电联产系统)产生的热水供热的热水供热系统,并且与另一个供热装置一起使用 自然能源资源。解决方案:热水供热系统具有热水储存箱,加热系统和发电单元的热水供给系统,其中发电单元10与废热输出管H11连接 其将由废热加热的循环热介质排出到热水储存箱和循环热介质从热水储存箱返回的废热回流管H12,锅炉40和混合装置32通过 混合水管,锅炉和散热体20通过加热输出管H21连接,加热输出管H21从b的第一排出部分供应循环热介质 将散热器放入散热体和将循环热介质从散热体返回到加热返回集管44的加热返回管H22,并且锅炉与连接到废热输出管的第一分支输出管H41连接, 连接到废热回流管的第一分支回流管H42。
    • 2. 发明专利
    • Hot water supply space heating system
    • 热水供暖系统
    • JP2012092997A
    • 2012-05-17
    • JP2010238676
    • 2010-10-25
    • Toho Gas Co Ltd東邦瓦斯株式会社
    • YOSHIMURA MASAHIROMARUYAMA YUTAKAITO DAIGO
    • F24H1/00F24D3/18F24H1/12
    • PROBLEM TO BE SOLVED: To provide a hot water supply space heating system which is constituted by combining an electric heat pump with an other heating device, enables hot water supply/space heating at higher energy efficiency without causing the shortage of a hot water supply/space heating capacity and does not exceed a maximum amount of contract electric power (or contract electric current).SOLUTION: The hot water supply space heating system includes: a combustion heat source machine 20 heating hot water supply hot water and a space heating circulation heat medium by combustion; a heat pump device 10 heating the supply hot water and the space heating circulation heat medium; an electric power consumption detection means 70 capable of detecting electric power or an electric current supplied to be consumed from an electric power supply device 60 to a plurality of electric power load facilities including the heat pump device 10; control means (11, 21, 51); and at least one of a space heating radiator 30 and a hot water supply device 50. The control means controls electric power supply to the electric heat pump 12 so that the electric power consumption detected by the electric power consumption detection means 70 does not exceed a preset threshold.
    • 要解决的问题:为了提供一种通过将电热泵与另一个加热装置组合而构成的热水供应空间加热系统,能够以更高的能量效率实现热水供应/空间加热,而不会导致热的不足 供水/空间供热能力不超过最大合同电力(或合同电流)。 解决方案:热水供应空间加热系统包括:燃烧热源机20,通过燃烧加热热水供热水和空间加热循环热介质; 加热供给热水和空间加热循环热介质的热泵装置10; 电力消耗检测装置70,其能够检测从电力供应装置60供给的消耗的电力或电流到包括所述热泵装置10的多个电力负荷设备; 控制装置(11,21,51); 以及空间加热散热器30和热水供给装置50中的至少一个。控制装置控制对电热泵12的供电,使得由电力消耗检测装置70检测出的电力消耗不超过 预设阈值。 版权所有(C)2012,JPO&INPIT
    • 3. 发明专利
    • Bathroom heater with cascading hot water function
    • 浴室加热器具有热水功能
    • JP2010112666A
    • 2010-05-20
    • JP2008287455
    • 2008-11-10
    • Rinnai CorpToho Gas Co Ltdリンナイ株式会社東邦瓦斯株式会社
    • YAMAMOTO TETSUYAOKUYAMA MASAYUKIYOSHIMURA MASAHIROTAKAGI HIROSHIYOKOYAMA NOBORU
    • F24D15/00F24H1/00
    • PROBLEM TO BE SOLVED: To prevent hot water discharged from a cascading hot water nozzle from being blasted by hot air blown from a blowout port without increasing the size of a bathroom heater, in the bathroom heater installed on a ceiling part of a bathroom positioned above a bathtub and provided with the cascading hot water nozzle for dropping hot water toward the bathtub.
      SOLUTION: A blocking plate part 4b is provided for blocking a part of a suction port 4 formed on a cover 3 for covering a lower face of a heater body 2. A through-hole 4c is opened in the blocking plate part 4b, and the cascading hot water nozzle 12 is disposed facing the through-hole 4c. The suction port 4 is positioned on one side in the lateral direction of the blowout port 5 with the installing direction of the bathtub with respect to a washing place of the bathroom as one side in the lateral direction. The through-hole 4c is formed laterally long and the cascading hot water nozzle 12 is displaceable in the lateral direction within the through-hole 4c.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为了防止从级联的热水喷嘴排出的热水被吹出的吹出口的热空气喷射而不增加浴室加热器的尺寸,则在安装在顶棚部分的浴室加热器中 位于浴缸上方的浴室,并设有用于将热水朝向浴缸滴落的级联热水喷嘴。 解决方案:设置阻挡板部分4b,用于阻挡形成在盖3上的吸入口4的一部分,以覆盖加热器主体2的下表面。通孔4c在阻挡板部分4b中打开 并且级联热水喷嘴12设置成面向通孔4c。 吸入口4位于吹出口5的横向方向的一侧,浴缸相对于浴室的洗涤位置的安装方向为横向一侧。 通孔4c横向形成,并且级联热水喷嘴12能够在通孔4c内沿横向移动。 版权所有(C)2010,JPO&INPIT
    • 9. 发明专利
    • 空調装置
    • 冷气机
    • JP2014228165A
    • 2014-12-08
    • JP2013106225
    • 2013-05-20
    • 東邦瓦斯株式会社Toho Gas Co Ltd
    • YOSHIMURA MASAHIRO
    • F24F11/02F24F5/00F25B27/02H02J3/38
    • Y02A30/274Y02E60/147
    • 【課題】一般家庭等の比較的小規模な商用電力の需要者であっても、エンジンあるいは燃料電池を用いた発電機を効率良く利用し、ピーク時における商用電力の電力需要量をより効率よく低減し、吸収式冷凍機よりも低コストで広く普及させることができる空調装置を提供する。【解決手段】商用電力と系統連系可能な発電機10と、電気式冷凍手段21と蓄冷手段22と冷凍機側熱交換器23を備えた電気式冷凍機20と、冷凍機側循環配管32、33にて冷凍機側熱交換器に接続された第1空調側熱交換器31を有する第1空調手段30と、冷凍機側循環配管内の熱媒を循環させる冷凍機側熱媒循環手段24とを備え、冷房が必要な場合は、蓄冷手段と冷凍機側熱交換器と第1空調側熱交換器と冷凍機側熱媒循環手段を用いて第1空調手段にて空調し、発電機による発電余力がある場合に、発電余力の電力にて電気式冷凍機の蓄冷手段に蓄冷することが可能である。【選択図】図1
    • 要解决的问题:提供一种能够有效地使用发动机或燃料电池的发电机的空调,并且即使对于商业电力的相对较小规模的客户也能够更有效地降低高峰时段的商业电力的电力需求量,例如 作为普通家庭,并且以比吸收式冰箱更低的成本广泛传播。解决方案:一种空调包括:可以与商业电力系统地互连的发电机10; 包括电动制冷装置21,冷藏装置22和冰箱侧热交换器23的电冰箱20; 第一空调装置30,包括通过冰箱侧循环管32和33连接到冰箱侧热交换器23的第一空调侧热交换器31; 以及在冰箱侧循环管32和33中循环热介质的冰箱侧热介质循环装置24.如果需要冷却空间,则第一空调装置30使用冷藏装置22调节空间的空气 冰箱侧热交换器23,第一空调侧热交换器31和冰箱侧热介质循环装置24.如果发电机10具有多余的电力,则可以在冷藏装置22的冷藏装置22中储存冷 电冰箱20由剩余电力供电。
    • 10. 发明专利
    • Hot water supply heating system
    • 热水供暖系统
    • JP2013228150A
    • 2013-11-07
    • JP2012100745
    • 2012-04-26
    • Toho Gas Co Ltd東邦瓦斯株式会社
    • YOSHIMURA MASAHIROITO DAIGO
    • F24H1/18F24D3/00F24H1/00
    • PROBLEM TO BE SOLVED: To provide a hot water supply heating system combining three devices of a hot water storage device, a heat pump device and a combustion heat source machine or combining three devices of the water storage device, a cogeneration device and the combustion heat source machine, and capable of operating the three device so as to be interlocked in a proper manner even if manufacturers of the respective devices are different.SOLUTION: A hot water supply heating system includes a system control device 81. The system control device 81 is connected to a combined device control means 11A (heat pump device or cogeneration device) via a first communication line T1, connected to a combustion control means 21 (combustion heat source machine) via a second communication line T2, and connected to a hot water storage control means 51 (hot water storage device) via a third communication line T3. When receiving a massage addressed from a certain control means (transmission source) to the other control means (transmission destination), the system control device translates the massage received from the control means of the transmission source into a message addressed to the control means of the transmission destination and transmits the translated message to the transmission destination.
    • 要解决的问题:提供一种组合热水储存装置,热泵装置和燃烧热源机的三个装置的热水供给系统,或者组合储水装置的三个装置,热电联供装置和燃烧热 并且能够以适当的方式操作三个装置,即使各个装置的制造商不同。解决方案:热水供应加热系统包括系统控制装置81.系统控制装置81是 通过经由第二通信线路T2连接到燃烧控制装置21(燃烧热源机器)的第一通信线路T1连接到组合设备控制装置11A(热泵装置或热电联供装置),并连接到热水存储 控制装置51(热水存储装置)经由第三通信线路T3。 当从特定控制装置(发送源)发送到另一个控制装置(发送目的地)的按摩时,系统控制装置将从发送源的控制装置接收到的按摩转换成发送到控制装置的消息 并将转换的消息发送到发送目的地。