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    • 1. 发明专利
    • DESICCANT TYPE AIR CONDITIONER
    • JPH0814600A
    • 1996-01-19
    • JP16610394
    • 1994-06-25
    • OSAKA GAS CO LTDSHINKO KOGYO KK
    • KASHIWABARA YOSHITAKAAKAMATSU YUKIHIKO
    • F24F1/00F24F3/14F24F3/147F24F6/00F24F7/08
    • PURPOSE:To independently control a temperature and a humidity from one another in a room by operating dehumidifying and humidifying means, an indoor side heat exchange means, indoor side heater and a heater at the time of cooling and operating the dehumidifying and humidifying means, outdoor side heat exchange means, outdoor heater and a humidifier at the time of heating. CONSTITUTION:An exhaust passage A and an air supply passage B of reverse direction are adjacently disposed via a partition wall 2. Dehumidifying and humidifying member 3 for alternately exposing absorbing materials with both the passages A and B to move moisture from a high humidity side to a low humidity side is provided. Heat exchanging means 4, 5 move heating medium or thermal storage medium between the passages A and B to move the heat. Heaters 6, 7 and a humidifier 8 are provided. At the time of cooling, the means 3, the indoor side means 4, the heater 6 of the passage A and the humidifier 8 are operated. At the time of heating, the means 3, the outdoor side means 5, the heater 7 of the passage B and the humidifier 8 are operated. Thus, one of the two sets of the exchange means is stopped, and the cooling or heating is switched.
    • 2. 发明专利
    • HEATING OR COOLING DEVICE
    • JPH02118340A
    • 1990-05-02
    • JP27039288
    • 1988-10-26
    • OSAKA GAS CO LTDSHINKO KOGYO KK
    • KANNOU SHINICHIKASHIWABARA YOSHITAKANARUMIYA AKIRAFUJINO TOSHIHIROOKUBO MICHITOMO
    • F24F1/00
    • PURPOSE:To improve a convection flow heating capability with hot air sent from an atmosphere passage into a room during heating operation by a method wherein the atmosphere passage is arranged between a heat radiation wall and a heat source means and then heat is transmitted from the heat source means to the heat radiation wall by thermal conducting member. CONSTITUTION:In case of forming a heat radiation wall A and a plate-like heat transmitting member C, several hardwares 4 having U-shaped section are arranged side-by-side while their both end surfaces being substantially in flush to each other and the adjoining ones being adjacent to each other. The heat radiation wall A is formed at both ends 4a and 4b of the hardwares 4 and the plate-like heat transmitting member C is formed at the central part 4c. A tube B of a heat source means is bent and formed in a zig-zag form, by a straight pipe 5a passed through and contacted with all the plate-like heat conducting members C while being spaced apart from the heat radiating wall A and a bent pipe portion 56 for connecting the straight pipes 5a to each other. During heating operation, interior air is sucked into a downstream end of the atmosphere flow passage 7 and heated by the heat source means B; thereafter, the air is returned from its upstream end back into a room.
    • 3. 发明专利
    • DESICCANT TYPE AIR CONDITIONER
    • JPH0942709A
    • 1997-02-14
    • JP21095795
    • 1995-07-26
    • OSAKA GAS CO LTDSHINKO KOGYO KK
    • YAMAGUCHI SHOJIKASHIWABARA YOSHITAKAYOSHIDA YASUTOSHI
    • F24F3/00F24F3/14F24F3/147F24F11/02
    • PROBLEM TO BE SOLVED: To omit the wasteful operation and to obtain the energy conservation by controlling in a dehumidifying mode when the dew point of the atmosphere is a predetermined value or more at the time of cooling, controlling in a heat exchange mode when the draw point is the predetermined value or less and the temperature is a predetermined value or higher, and controlling in a ventilation mode when the dew point and the temperature are predetermined values or less. SOLUTION: When the dew point of the atmosphere is a predetermined value or more at the time of cooling, it is controlled in a dehumidifying mode for operating a moisture absorbing and discharging rotor 4, a heat exchanger rotor 5, a heater 6 for drying and a humidifier 7 to approach the dew point to a target value. When the dew point is a predetermined value or less and the temperature is a predetermined value or higher, it is controlled in a heat exchange mode for stopping the heater 6 and the rotor 4 to approach the temperature to a target value. When the temperature and the dew point are predetermined value or less, it is controlled in a ventilation mode for operating only fans 1 and 2. Thus, when the humidity of the atmosphere is low, the heater 6 is stopped, only the heat exchange is executed to prevent the wasteful use of energy.
    • 4. 发明专利
    • Operation control apparatus of cogeneration system
    • 加强系统的操作控制装置
    • JP2007267594A
    • 2007-10-11
    • JP2007122355
    • 2007-05-07
    • Osaka Gas Co Ltd大阪瓦斯株式会社
    • TAKIMOTO KEIJIKASHIWABARA YOSHITAKAIWATA SHINTOMIO TAKESHI
    • H02J3/00H02J3/46F24H1/00F24H1/18H02J3/38
    • PROBLEM TO BE SOLVED: To provide an operation control apparatus of a cogeneration system capable of operating and controlling a cogeneration plant that matches life pattern of housing and the like. SOLUTION: An operation control apparatus of a cogeneration system includes a cogeneration plant 2, a hot-water storing apparatus 4 for storing heat generated from the cogeneration plant 2 as hot water, and controlling means 70 for operating and controlling the cogeneration plant 2, wherein the controlling means 70 processes energy load data as required and computes prediction load data, and operates and controls the cogeneration plant 2 using computed prediction load data. The controlling means 70 processes past energy load data as required and prepares seven past load data corresponding to each day of one week, and prepares prediction load data for the next day to a particular day by subjecting past load data corresponding to the next day to a particular day and actual load data of a particular day to proportional distribution using proportional distribution constant. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种能够操作和控制与住房等的寿命模式匹配的热电联产设备的热电联供系统的操作控制装置。 解决方案:热电联产系统的运行控制装置包括热电联产装置2,用于将热电联产装置2产生的热作为热水储存的热水储存装置4,以及用于操作和控制热电联产装置的控制装置70 2,其中控制装置70根据需要处理能量负荷数据,并计算预测负荷数据,并使用计算出的预测负荷数据对热电联产装置2进行操作和控制。 控制装置70根据需要处理过去的能量负荷数据,并准备与一周的每一天相对应的七个过去的负载数据,并且通过将对应于第二天的过去负载数据进行处理,将第二天的预测负载数据准备到特定的一天 特定日期的特定日期和实际负荷数据,使用比例分布常数进行比例分配。 版权所有(C)2008,JPO&INPIT
    • 5. 发明专利
    • Exhaust heat recovery heat exchanger for fuel cell power generator and fuel cell power generator
    • 用于燃料电池发电机和燃料电池发电机的排气热回收热交换器
    • JP2004355836A
    • 2004-12-16
    • JP2003149155
    • 2003-05-27
    • Osaka Gas Co Ltd大阪瓦斯株式会社
    • AZUMAGUCHI SEISAKUTABATA TAKESHIKASHIWABARA YOSHITAKA
    • F24H1/00F28D9/02F28F3/08H01M8/00H01M8/04
    • F28D9/00F28D21/0001F28D2021/0043
    • PROBLEM TO BE SOLVED: To provide an exhaust heat recovery heat exchanger for a fuel cell power generator with miniaturization and improvement of exhaust heat recovery efficiency aimed at, as well as a fuel cell power generator capable of realizing miniaturization and improvement of exhaust heat recovery efficiency by being equipped with the exhaust heat recovery heat exchanger. SOLUTION: In the exhaust heat recovery heat exchanger for the fuel cell power generator recovering exhaust heat to fluids for exhaust heat recovery from a plurality of kinds of heat-giving side gas exhausted outside the device or circulating through the device, a plurality of exhaust heat recovery circulation parts 31 fitted in a parallel state for circulating exhaust heat recovery fluids in parallel, and a plurality of heat-giving circulation parts arrayed so as to be enabled to exchange heat with one or the plurality of exhaust heat recovery circulation parts 31 for circulating the plurality of kinds of heat-giving side gas separately are laid in parallel in close contact with each other. COPYRIGHT: (C)2005,JPO&NCIPI
    • 解决的问题:提供一种用于燃料电池发电机的废热回收热交换器,其小型化和提高排气热回收效率,以及能够实现排气的小型化和改进的燃料电池发电机 通过配备废热回收热交换器的热回收效率。 解决方案:在用于燃料电池发电机的排气热回收热交换器中,从排出到设备外部或循环通过设备的多种供热侧气体中回收排出热量以进行排气热回收的流体,多个 排气热回收循环部31并列配置的并排状态的排气热回收循环部31,以及多个供热循环部,其排列成能够与一个或多个排热回收循环部 将多个供热侧气体分开地循环的31个用于彼此紧密接触地平行放置。 版权所有(C)2005,JPO&NCIPI
    • 6. 发明专利
    • Co-generation system
    • JP2004271006A
    • 2004-09-30
    • JP2003060442
    • 2003-03-06
    • Osaka Gas Co Ltd大阪瓦斯株式会社
    • OCHI MASAHITOKASHIWABARA YOSHITAKA
    • F24H1/00F24F11/02F24H1/18H01M8/00
    • Y02E60/50
    • PROBLEM TO BE SOLVED: To provide a co-generation system capable of improving the adaptability to hot water supply heat load and the energy saving performance, while performing the operation to adjust the output power in accordance with the electric load. SOLUTION: An operation control means is constituted to determine the estimated hot water supply heat load as the time series variation of the hot water supply heat load and the estimated electric load as the time series variation of electric load, on the basis of the time series consumption data of hot water supply and the time series consumption data of electric power. As the operation mode for adjusting the output power of a co-generation device 3 in accordance with the electric load, a plurality of output limiting operation modes for limiting the electric output conditions to various conditions are prepared, and the operation mode suitable for the energy saving performance and effective to obtain the hot water supply amount in accordance with the estimated hot water supply heat load, when the operation is performed in accordance with the estimated electric load, is selected, and the co-generation device 3 is operated in the selected output limiting operation mode. COPYRIGHT: (C)2004,JPO&NCIPI
    • 8. 发明专利
    • Cogeneration system
    • JP2004264011A
    • 2004-09-24
    • JP2003390365
    • 2003-11-20
    • Osaka Gas Co Ltd大阪瓦斯株式会社
    • KASHIWABARA YOSHITAKAIWATA SHINTAKIMOTO KEIJI
    • F02G5/04F24H1/00F24H1/18
    • Y02E20/14Y02T10/166
    • PROBLEM TO BE SOLVED: To provide a cogeneration system capable of conducting energy saving. SOLUTION: This cogeneration system comprises an exhaust heat-type heating means N for heating hot water in a hot water storage tank 4 by heat generated in a cogeneration device 3, an auxiliary heating means M, and an operation control means 7. The operation control means 7 operates the cogeneration device 3 after the passage of a delay time for power generation from an instruction for the start of operation, when the start of operation of the cogeneration device 3 is instructed by a manual operation-type operation start instructing means 34, manages a time-series electric power load, a time-series hot water heat load, a time-series terminal load in a heat consuming terminal, a present power load required at the present, a present hot water supply heat load required at the present, and a present terminal heat load required at the present in the heat consuming terminal, determines a time zone for operation capable of conducting the energy saving by the operation of the cogeneration device 3, and operates the cogeneration device 3 in the determined time zone for operation. COPYRIGHT: (C)2004,JPO&NCIPI