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    • 61. 发明专利
    • Hot water storage type water heater
    • 热水储水式加热器
    • JP2003028505A
    • 2003-01-29
    • JP2001216105
    • 2001-07-17
    • Harman Kikaku:KkOsaka Gas Co LtdSeibu Gas Co LtdToho Gas Co LtdTokyo Gas Co Ltd大阪瓦斯株式会社東京瓦斯株式会社東邦瓦斯株式会社株式会社ハーマン企画西部瓦斯株式会社
    • SAKAI HISASHIGEHASHIZUME YASUTOKAWACHI TOSHIHIROFUJIKAWA YASUSHIFUJIMOTO YOSHIOSAKIISHI TOMOYAYAMAGUCHI KAZUYATANOGASHIRA KENICHIITO MIKIOICHIKAWA IKUHIDE
    • F24H1/18
    • PROBLEM TO BE SOLVED: To prevent a user from feeling uncomfortable by preventing a hot water supply capability from rapidly changing. SOLUTION: An ordinary hot water supply capability in an ordinary hot water supply state is set larger than an auxiliary hot water supply capability in an auxiliary hot water supply state, and hot water supply control means H is switchable between the ordinary hot water supply state where hot water taken out from a hot water regenerative tank 1 is supplied to a hot water supply passage 5 and the auxiliary hot water supply state where hot water heated in heating means 3 is supplied to the hot water supply passage 5. Further, when the amount of stored hot water in the hot water regenerative tank 1 is more than the minimum kept amount, the operation is switched to the ordinary hot water supply state, while when the amount of hot water is less than the minimum kept amount, the operation is switched to the auxiliary hot water supply state. When the operation is switched from the ordinary hot water supply state to the auxiliary hot water supply state, in the ordinary hot water supply state the hot water supply capability is continuously reduced toward the auxiliary hot water supply capability from the ordinary hot water supply capability, and then the operation is switched to the auxiliary hot water supply state. Hereby, a hot water supply capability adjustment processing is executed for switching the operation to the auxiliary hot water supply state.
    • 要解决的问题:通过防止热水供应能力快速变化来防止用户感到不适。 解决方案:普通热水供应状态下的普通热水供应能力设定为大于辅助热水供应状态下的辅助热水供应能力,热水供应控制装置H可在普通热水供应状态之间切换, 将从热水再生罐1取出的热水供给到热水供给路5,在供热装置3中加热的热水供给至热水供给路5的辅助热水供给状态。此外, 在热水再生罐1中储存的热水大于最小保持量时,操作切换到普通的热水供给状态,而当热水量小于最小保持量时,切换操作 到辅助热水供应状态。 当操作从普通热水供应状态切换到辅助热水供应状态时,在通常的热水供应状态下,热水供应能力从普通热水供应能力向辅助热水供应能力持续降低, 然后将操作切换到辅助热水供应状态。 因此,执行热水供应能力调整处理以将操作切换到辅助热水供应状态。
    • 62. 发明专利
    • Hot water storage type water heater
    • 热水储水式加热器
    • JP2003074976A
    • 2003-03-12
    • JP2001262857
    • 2001-08-31
    • Harman Kikaku:KkOsaka Gas Co LtdSeibu Gas Co LtdToho Gas Co LtdTokyo Gas Co Ltd大阪瓦斯株式会社東京瓦斯株式会社東邦瓦斯株式会社株式会社ハーマン企画西部瓦斯株式会社
    • SUZUKI KIWAMUTANOGASHIRA KENICHIYAMAGUCHI KAZUYAKASHIWABARA YOSHITAKAIWATA SHINTAKIMOTO KEIJITAKAGI HIROSHIMATSUMOTO KAZUHIROHASHIZUME YASUTOKAWACHI TOSHIHIROFUJIKAWA YASUSHIFUJIMOTO YOSHIOSAKIISHI TOMOYA
    • F24H1/18
    • PROBLEM TO BE SOLVED: To supply a desired heat to a heat consumption terminal for a desired time zone by storing hot water in a hot water storage tank in a desired amount at a necessary time.
      SOLUTION: An operation control means H executes a reservation hot water storage operation for storing hot water in the hot water storage tank 1 when it becomes a hot water storage starting time obtained based on a hot water storage time for setting the hot water storage amount in the tank 1 at the hot water storage setting time, and executes a heat supplying operation for supplying a fluid to be heated to the heat consumption terminal D for a heat consumption setting time zone. The control means H further obtains a hot water storage time as when a heating capability of a heating means is a non- limiting capability when a duplicate time zone to be duplicated with the heat consumption setting tine zone does not exist in the hot water storage time zone from the hot water storage starting time to the hot water storage setting time in the reservation hot water storage operation, and executes a hot water storage time calculating process for obtaining the hot water storage time as when the heating capability of the heating means is a smaller limiting capability than the non-limiting capability when the duplicating time zone exists.
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题:通过在必要的时间将热水以期望的量储存在热水储存箱中,以将期望的热量提供给所需时间的热消耗端子。 解决方案:当操作控制装置H成为基于用于将热水储存量设定为热水储存时间的热水存储时间获得的热水储存开始时间时,执行用于将热水储存在热水储存箱1中的预约热水存储操作 在热水储存设定时间的水箱1上,进行供热运转,将供热流体供给到用于热消耗设定时间的耗热端子D. 控制装置H进一步获得热水存储时间,如同在加热装置的加热能力为非限制性能时,当在热水储存时间内不存在与热消耗设定区域重复的重复时间区域时 在预热热水存储操作中从热水存储开始时间到热水存储设置时间的区域,并且执行热水存储时间计算处理,以获得热水存储时间,如加热装置的加热能力为 当复制时区存在时,限制能力比非限制性能要小。
    • 63. 发明专利
    • Heating apparatus
    • 加热装置
    • JP2003028508A
    • 2003-01-29
    • JP2001216103
    • 2001-07-17
    • Harman Kikaku:KkOsaka Gas Co LtdSeibu Gas Co LtdToho Gas Co LtdTokyo Gas Co Ltd大阪瓦斯株式会社東京瓦斯株式会社東邦瓦斯株式会社株式会社ハーマン企画西部瓦斯株式会社
    • SUZUKI KIWAMUTANOGASHIRA KENICHIYAMAGUCHI KAZUYAKASHIWABARA YOSHITAKAIWATA SHINTAKIMOTO KEIJITAKAGI HIROSHIMATSUMOTO KAZUHIROHASHIZUME YASUTOKAWACHI TOSHIHIROFUJIKAWA YASUSHIFUJIMOTO YOSHIOSAKIISHI TOMOYA
    • F24H1/00F24H1/18F25B27/02
    • Y02A30/274
    • PROBLEM TO BE SOLVED: To heat an object fluid to be heated to a target heating temperature, and prevent a returned hot medium from a heat exchange type heating section from being supercooled. SOLUTION: A heating apparatus is adapted such that operation control means G estimates third set temperature capable of heating an object fluid to be heated to a target heating temperature in the state where different heat exchange characteristics are considered in response to a relationship among first set temperature, and second set temperature where the object fluid can be heated to the target heating temperature and is capable of keeping the return hot medium temperature from a heat exchange heating section 19 beyond supercooling set temperature, and preheating temperature of the object temperature, and target heating temperature, and when detected temperature by forward hot medium temperature detection means 22 is beyond the first set temperature, second set temperature, and third set temperature, judges that heating allowable conditions are satisfied, and allows the supply of a hot medium to the heat exchange heating section 19, and further estimates the third set temperature when the detected temperature by the forward hot medium temperature detection means 22 is beyond the first set temperature and the second set temperature.
    • 要解决的问题:将待加热的物体加热到目标加热温度,并且防止从热交换型加热部返回的热介质过冷。 解决方案:加热装置适于使得操作控制装置G估计在能够响应于第一设定温度之间的关系考虑不同热交换特性的状态下能够将要加热的物体流体加热到目标加热温度的第三设定温度 以及第二设定温度,其中对象流体可以被加热到目标加热温度,并且能够将来自热交换加热部分19的返回热介质温度保持超过过冷却设定温度,以及目标温度的预热温度 温度,当通过正向热介质温度检测装置22的检测温度超过第一设定温度,第二设定温度和第三设定温度时,判断为满足加热容许条件,并且允许向热交换器供应热介质 加热部分19,并进一步估计第三设定温度 在正向热介质温度检测装置22的检测温度超过第一设定温度和第二设定温度。
    • 64. 发明专利
    • Regenerative hot water heating apparatus
    • 再生热水加热装置
    • JP2003028506A
    • 2003-01-29
    • JP2001216102
    • 2001-07-17
    • Harman Kikaku:KkOsaka Gas Co LtdSeibu Gas Co LtdToho Gas Co LtdTokyo Gas Co Ltd大阪瓦斯株式会社東京瓦斯株式会社東邦瓦斯株式会社株式会社ハーマン企画西部瓦斯株式会社
    • SUZUKI KIWAMUTANOGASHIRA KENICHIYAMAGUCHI KAZUYAKASHIWABARA YOSHITAKAIWATA SHINTAKIMOTO KEIJITAKAGI HIROSHIMATSUMOTO KAZUHIROHASHIZUME YASUTOKAWACHI TOSHIHIROFUJIKAWA YASUSHIFUJIMOTO YOSHIOSAKIISHI TOMOYA
    • F24H1/18
    • PROBLEM TO BE SOLVED: To improve the efficiency of an apparatus by supplying much hot water stored in a regenerative hot water tank to the utmost while preventing hot water from being exhausted.
      SOLUTION: Operation control means G, when supplying hot water in a regenerative hot water tank 1 controls the present amount of hot water stored in the regenerative hot water tank 1 less than the minimum amount of detected stored hot water based upon the amount of hot water stored in the regenerative hot water tank to which a large amount of the minimum detected stored hot water to which the hot water stored in the hot water tank 1 is supplied from a timing of the minimum detection where the amount of stored in the regenerative hot water tank 1 is the minimum amount of the detected hot water larger than the minimum secured amount. The operation control means G, when the present amount of stored hot water reaches less than the minimum secured amount, executes a judgement processing which judges heating conditions being satisfied, and once the heating conditions are satisfied, heats hot water circulated with hot water circulation means E to hot water at hot water storage set temperature in heating means 4, and stores the hot water in the hot water regenerative hot water tank 1 in the state where a temperature forming layer is formed, and further supplies the hot water stored in the regenerative hot water tank 1 through the hot water supply passage.
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题:为了提高设备的效率,通过在防止热水被排出的同时最大限度地供给储存在蓄热式热水箱中的大量热水。 解决方案:操作控制装置G在再生热水箱1中供应热水时,基于热水量控制存储在蓄热式热水箱1中的热量低于检测到的最低储存热水量的当前量 存储在蓄热式热水箱中,从存储在再生式热水中的最小检测量的时刻到供给存储在热水箱1中的热水的最少检测到的存储热量的大量的蓄热式热水箱 罐1是检测到的热水的最小量大于最小固定量。 操作控制装置G当存储的热水量达到小于最小固定量时,执行判断加热条件满足的判断处理,一旦满足加热条件,就加热热水循环装置 E以加热装置4的热水储存设定温度为热水,在形成有温度形成层的状态下将热水储存在热水再生热水箱1中,进一步供给再生 热水箱1通过热水供应通道。
    • 67. 发明专利
    • Air conditioner and control method
    • 空调和控制方法
    • JP2005291541A
    • 2005-10-20
    • JP2004103470
    • 2004-03-31
    • Tokyo Gas Co Ltd東京瓦斯株式会社
    • TANOGASHIRA KENICHI
    • F24F11/02F25B27/00
    • F25B2400/22
    • PROBLEM TO BE SOLVED: To provide an air conditioner capable of preventing such a problem that short-circuit occurs even if a plurality of units are installed at a same position, coping with heating load, preventing rusting from occurring on an internal combustion engine, and preventing problems in the rise of the concentrations of a rust inhibitor and a coolant in cooling water circulating in a cooling tower. SOLUTION: This air conditioner comprises a plurality of air conditioners UA, UB, UC, and UD having internal combustion engines, a cooling water circulation system Lw communicating with the plurality of air conditioners and in which a cooling tower 30 and a cooling water circulation pump P3 are interposed and a control means 50 controlling the thermal communication of the cooling water circulation system with the air conditioners. Each of the plurality of air conditioners comprises a compressor 6 driven by the internal combustion engine 4, an exhaust heat circulation system Lh in which the cooling water of the internal combustion engine circulates, a refrigerant circulation system L in which a heat load, a heat exchanger 21 for performing a heat exchange, and the compressor 6 are interposed and a refrigerant circulates, a first heat exchanger H1 for performing a heat exchange between the exhaust heat circulation system Lh and the refrigerant circulation system L, a second heat exchanger H2 for performing a heat exchange between the refrigerant circulation system L and the cooling water circulation system Lw, and a third heat exchanger H3 for performing a heat exchange between the exhaust heat circulation system Lh and the cooling water circulation system Lw. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了提供一种能够防止即使多个单元安装在相同位置时发生短路的问题的空调,能够应对加热负荷,防止内燃发生生锈 发动机,并且防止在冷却塔中循环的冷却水中的防锈剂和冷却剂的浓度上升的问题。 解决方案:该空调包括多个具有内燃机的空调UA,UB,UC和UD,与多个空调相通的冷却水循环系统Lw,其中冷却塔30和冷却 水循环泵P3被插入,控制装置50控制冷却水循环系统与空调的热连通。 多个空调机中的每一个包括由内燃机4驱动的压缩机6,内燃机的冷却水循环的排气热循环系统Lh,其中热负荷,热量 交换器21进行热交换,并且压缩机6插入制冷剂循环,用于在排气热循环系统Lh和制冷剂循环系统L之间进行热交换的第一热交换器H1,用于执行热交换器的第二热交换器H2 制冷剂循环系统L和冷却水循环系统Lw之间的热交换,以及用于在排气热循环系统Lh和冷却水循环系统Lw之间进行热交换的第三热交换器H3。 版权所有(C)2006,JPO&NCIPI