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    • 1. 发明专利
    • Sunshine evaluation system, and computer program for sunshine evaluation
    • 阳光评估系统,阳光评估计算机程序
    • JP2014066684A
    • 2014-04-17
    • JP2012214174
    • 2012-09-27
    • Osaka Gas Co Ltd大阪瓦斯株式会社
    • TOMIO TAKESHI
    • G01W1/12
    • PROBLEM TO BE SOLVED: To improve accuracy of automatic determination of a sunshine area to reduce time and effort for automatic correction to the automatic determination in a sunshine evaluation system.SOLUTION: A sunshine evaluation system receives input of a sky fisheye image G1, converts the image G1 in a panoramic manner to generate a sky panoramic image G2, and displays the image G2 on a display screen 2; automatically determines a non-sunshine area A2 and a sunshine area A1 in the image G2; and displays an orbit of a sun direction P1 overlapped with the image G2 on the display screen 2, in a state where an attribute as to whether or not the sun direction P1 is a sunlight direct direction P1a can be recognized. The sunshine evaluation system includes means capable of manually correcting a sunlight direct attribute for the sun direction P1 selected on the display screen 2, and means for correcting a reference value of the automatic determination to the state value of the image G2 on the basis of the sunlight direct attribute corrected by the above means.
    • 要解决的问题:提高阳光区域的自动确定的准确性,以减少阳光评估系统中的自动确定的自动校正的时间和精力。解决方案:阳光评估系统接收天空鱼眼图像G1的输入,将 以全景方式生成图像G1,生成天空全景图像G2,并在显示画面2上显示图像G2; 自动确定图像G2中的非阳光区域A2和阳光区域A1; 并且能够识别与太阳方向P1是太阳光直射方向P1a的属性有关的状态的情况下,在显示画面2上显示与图像G2重叠的太阳方向P1的轨迹。 阳光评估系统包括能够手动校正在显示屏幕2上选择的太阳方向P1的阳光直射属性的装置,以及用于基于图像G2的图像G2的状态值将自动确定的参考值校正为图像G2的状态值的装置 通过上述手段校正阳光直射属性。
    • 2. 发明专利
    • Hot water supply evaluation system
    • 热水供应评估系统
    • JP2010007941A
    • 2010-01-14
    • JP2008167396
    • 2008-06-26
    • Osaka Gas Co Ltd大阪瓦斯株式会社
    • YAGI MASAHIKOTOMIO TAKESHITAKEDA TAKESHI
    • F24H1/00F24H1/18
    • PROBLEM TO BE SOLVED: To provide a hot water supply evaluation system for evaluating a hot water supply system by reproducing past hot water supply load (load pattern, load amount). SOLUTION: The hot water supply evaluation system evaluates the hot water supply system including a water heater 11 by reproducing the past hot water supply load. A controller 122 of the hot water supply evaluation system calculates an average hot water supply flow rate in a set unit time zone based on a hot water supply flow rate in the set unit time zone, compares the calculated average hot water supply flow rate with a hot water supply threshold value, and determines partial hot water supply when the average hot water supply flow rate is smaller than the hot water supply threshold value. When the partial hot water supply is determined, switch to hot water supply time using the hot water supply threshold value as the average hot water supply flow rate is performed. When hot water supply load determined to be partial hot water supply is reproduced, the controller 122 performs reproduction operation of the hot water supply system for the switched hot water supply time by using the average hot water supply flow rate of the hot water supply threshold value. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种用于通过再现过去的热水供应负载(负载模式,负载量)来评估热水供应系统的热水供应评估系统。 解决方案:热水供应评估系统通过再现过去的热水供应负载来评估包括热水器11的热水供应系统。 热水供给评价系统的控制器122基于设定单位时间段的热水供给流量,计算设定单位时间段内的平均热水供给流量,将计算出的平均热水供给流量与 热水供应阈值,并且当平均热水供应流量小于热水供应阈值时,确定部分热水供应。 当确定部分热水供应时,使用热水供应阈值作为平均热水供应流量进行热水供应时间。 当再次确定热水供应负荷被确定为部分热水供应时,控制器122通过使用热水供应阈值的平均热水供应流量来执行热水供应系统的热交换供热时间的​​再现操作 。 版权所有(C)2010,JPO&INPIT
    • 3. 发明专利
    • Cogeneration system
    • 加工系统
    • JP2009287423A
    • 2009-12-10
    • JP2008139108
    • 2008-05-28
    • Osaka Gas Co Ltd大阪瓦斯株式会社
    • TOMIO TAKESHIYAGI MASAHIKOOGURA AYUMITANAKA DAIKI
    • F02G5/04
    • Y02E20/14Y02T10/166
    • PROBLEM TO BE SOLVED: To provide a cogeneration system capable of surely preventing overheating of a power generation unit by suitably controlling a switching valve (thermal valve) for switching a circulation piping system.
      SOLUTION: This cogeneration system is provided with a first circulation piping system for circulating a coolant between a heat exchanger of a first exhaust heat using part for supplying thermal energy to a hot-water supply load and a power generation part, and a second circulation piping system for circulating the coolant between a second exhaust heat using part consisting of a prescribed thermal load and the power generation part. When a control part executes switching from the first circulation piping system to the second circulation piping system in start of self-sustaining, switching from the first circulation piping system to the second circulation piping system is completed before electric power can be supplied from the power generation part, and the power generation part is started after start of circulation of the coolant in the power generation part or in start of circulation, and supply of AC power to an electric power supply target in self-sustaining is started after the electric power can be supplied from the power generation part.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种能够通过适当地控制用于切换循环管道系统的切换阀(热阀)来确保防止发电单元过热的热电联产系统。 解决方案:该热电联产系统设置有第一循环管道系统,用于在用于向热水供应负载供应热能的第一废热利用部分的热交换器和发电部之间循环冷却剂,以及 第二循环管道系统,用于在由规定的热负荷构成的第二废热利用部和发电部之间循环冷却剂。 在自主维持开始时,控制部执行从第一循环管道系统向第二循环管道系统的切换,在从发电开始供电之前,完成从第一循环管道系统向第二循环管道系统的切换 部分,并且在发电部分中的冷却剂开始循环或开始循环之后启动发电部分,并且在电力可以在电力可以开始之后开始向自动维持的电力供应对象供给AC电力 从发电部供给。 版权所有(C)2010,JPO&INPIT
    • 4. 发明专利
    • Cogeneration system
    • 加工系统
    • JP2007192543A
    • 2007-08-02
    • JP2007115806
    • 2007-04-25
    • Osaka Gas Co Ltd大阪瓦斯株式会社
    • TAKIMOTO KEIJIKASHIWABARA YOSHITAKAIWATA SHINTOMIO TAKESHI
    • F24H1/00
    • Y02E20/14
    • PROBLEM TO BE SOLVED: To provide a cogeneration system for actualizing well efficient operation while taking into consideration of the power generating load factor of a cogeneration device.
      SOLUTION: The cogeneration system comprises the cogeneration device for generating power and heat, an inverter 10 for systematically linking power generated from the cogeneration device to a commercial power supply line, a hot water storage device having a hot water storage tank for recovering heat generated from the cogeneration device and storing it as hot water, and a control means 80B for controlling the operation of the cogeneration device. The control means 80B uses predicted power load based on past power load and predicted heat load based on past heat load for controlling the operation of the cogeneration device so that the predicted power load is corrected to be reduced when the generator load factor of the cogeneration device exceeds a first predetermined value.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种用于实现高效运行的热电联产系统,同时考虑到热电联产装置的发电负载系数。 解决方案:热电联产系统包括用于产生电力和热量的热电联产装置,用于将从热电联供装置产生的电力系统地连接到商用电源线的逆变器10,具有用于回收的热水储存箱的热水存储装置 从热电联产设备产生的热量并将其作为热水储存的热量,以及用于控制热电联供装置的运行的控制装置80B。 控制装置80B使用基于过去的功率负载的预测功率负荷和基于过去的热负荷的预测的热负荷来控制热电联供装置的运行,使得当热电联供装置的发电机负载因子时预测的功率负载被校正为减小 超过第一预定值。 版权所有(C)2007,JPO&INPIT
    • 5. 发明专利
    • Cogeneration system
    • 加工系统
    • JP2007064518A
    • 2007-03-15
    • JP2005248511
    • 2005-08-30
    • Chofu Seisakusho Co LtdOsaka Gas Co Ltd大阪瓦斯株式会社株式会社長府製作所
    • MIURA KOICHIYAMAMOTO HIROSHIIWATA SHINTOMIO TAKESHIYAGI MASAHIKO
    • F24H1/00F02G5/04F24H1/18
    • Y02E20/14Y02T10/166
    • PROBLEM TO BE SOLVED: To provide a cogeneration system for stably and highly effectively supplying heat quantity corresponding to demand of a heat load irrespective of a degree of output of a generator. SOLUTION: The cogeneration system 1 comprises a gas engine 101 for power generation for supplying power to a power load, an exhaust heat system 10 for recovering exhaust heat of the gas engine 101 for power generation and supplying to the heat load, a hot water storage system 20, a water heating system 40, and an auxiliary heat source machine 5 for supplying short heat quantity to the heat load when the heat quantity recovered by the heat exhaust system 10 runs short with respect to heat demand of the heat load. The system 1 is provided with a surplus power recovering heater 102 for converting a part of power output by the gas engine 101 for power generation into the short heat quantity and supplying to the heat exhaust system 10 when the short heat quantity does not meet a minimum output of the auxiliary heat source device. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种用于稳定且高效地提供与热负荷的需求相对应的热量的热电联供系统,而与发电机的输出程度无关。 解决方案:热电联产系统1包括用于向电力负载供电的发电用燃气发动机101,用于回收用于发电和供给热负荷的燃气发动机101的排气热的排气热系统10, 热水存储系统20,水加热​​系统40和辅助热源机5,用于当热排出系统10回收的热量相对于热负荷的热需求而短时,向热负荷供给短热量 。 系统1设置有剩余电力回收加热器102,用于将由发电机101输出的发电部分的一部分转换为短热量,并且当短热量不满足最小值时供给到热排出系统10 输出辅助热源装置。 版权所有(C)2007,JPO&INPIT
    • 7. 发明专利
    • Energy load data preparation device for energy generator and cogeneration system
    • 能源发电机和加热系统的能量负载数据准备装置
    • JP2006158106A
    • 2006-06-15
    • JP2004346049
    • 2004-11-30
    • Osaka Gas Co Ltd大阪瓦斯株式会社
    • YAGI MASAHIKOIWATA SHINTOMIO TAKESHINONAMI SHIGERU
    • H02J3/00
    • PROBLEM TO BE SOLVED: To prepare forecast energy load data capable of expediting energy saving even when an actual data is not stored. SOLUTION: An actual energy load data for each unit time is sorted in the sequence of time passage and for each control period grouped by the preset minutes. There are provided an actual data storage 52a which stores the actual energy load data for the each control period by periodically corresponding to the sequence of the time passage with making the control period of the preset minutes a sorted frequency and a preset data storage 52s which stores preset default energy load data corresponding to the control period. If the actual energy load data is not stored in the actual data storage 52a, a forecast data preparation device 53 prepares the forecast energy load data corresponding to the first control period based on the default energy load data, and prepares the forecast energy load data corresponding to the subsequent control period based on the actual energy load data in the previous control period. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:即使在没有存储实际数据的情况下,也可以准备能够加快节能的预测能量负荷数据。

      解决方案:每个单位时间的实际能量负荷数据按照时间顺序和按照预设分钟分组的每个控制周期进行排序。 提供实际数据存储器52a,其通过周期性地对应于时间段的顺序存储每个控制周期的实际能量负载数据,使得预设分钟的控制周期成为分类频率,并且存储预设数据存储器52s,其存储 预设默认的能量负荷数据对应于控制周期。 如果实际的能量负荷数据没有存储在实际数据存储器52a中,则预测数据准备装置53基于默认的能量负荷数据准备对应于第一控制周期的预测能量负荷数据,并且准备对应的预测能量负荷数据 基于前一个控制周期中的实际能量负载数据到随后的控制周期。 版权所有(C)2006,JPO&NCIPI

    • 8. 发明专利
    • Heat source device
    • 热源设备
    • JP2005344996A
    • 2005-12-15
    • JP2004164668
    • 2004-06-02
    • Noritz CorpOsaka Gas Co LtdSeibu Gas Co LtdToho Gas Co Ltd大阪瓦斯株式会社東邦瓦斯株式会社株式会社ノーリツ西部瓦斯株式会社
    • HASHIZUME YASUTOFUJIKAWA YASUSHIOTA HIROSHIIWATA SHINTOMIO TAKESHIYAGI MASAHIKOTAKAGI HIROSHIYOSHIDA SATORU
    • F24H1/18F24H1/22
    • PROBLEM TO BE SOLVED: To provide a heat source device, in which aging change of emission quantity of heat energy emitted out of the load or the system of a heating means is correctly predicted, so that heat energy is effectively utilized. SOLUTION: This heat source device 1 predicts aging change of heat load quantity W by a control means 30 for controlling action of a combustion part 3, etc. The control means 30 comprises a type memory means 31 storing load types A-M set for each unit block Uanm obtained by typifying transition of the heat loads W, a reference pattern memory means 36 storing reference patterns Pn as reference for prediction, a detecting means 33 to detect actual change of the heat loads W, a load change memory means 32 to form a load pattern Tan based on result of detection by the detecting means 33, and a predicting means 35 to predict aging change of the thermal load W based on the reference pattern Pn and a the load pattern Tan. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种热源装置,其中正确地预测了从负载或加热装置的系统发出的热能的排放量的老化变化,从而有效地利用了热能。 解决方案:该热源装置1通过用于控制燃烧部3等的动作的控制装置30来预测热负荷量W的老化变化。控制装置30包括:存储装置类型AM的类型存储装置31, 通过代表热负荷W的过渡而获得的每个单位块Uanm,存储参考模式Pn作为用于预测的参考的参考模式存储装置36,检测热负荷W的实际变化的检测装置33,负载变化存储装置32 基于检测装置33的检测结果形成负载模式Tan;以及预测装置35,用于根据参考模式Pn和负载模式Tan来预测热负荷W的老化变化。 版权所有(C)2006,JPO&NCIPI
    • 9. 发明专利
    • Cogeneration system
    • 加工系统
    • JP2005291562A
    • 2005-10-20
    • JP2004104143
    • 2004-03-31
    • Osaka Gas Co Ltd大阪瓦斯株式会社
    • SAWADA YUJITOMIO TAKESHISHIBATA KEN
    • F24H1/00H01M8/00H01M8/04
    • Y02E60/50
    • PROBLEM TO BE SOLVED: To provide a cogeneration system capable of performing planned operation of a heat/electric power cogenerating device in a state adapted to an actual time series hot-cold water consuming pattern.
      SOLUTION: An operation control means controls operation of the heat/electric power cogenerating device for generating heat and electric power; and is constituted so as to perform the planned operation of the heat/electric power cogenerating device for storing hot-cold water required by the time series hot-cold water consuming pattern in a hot water storage tank by manual operation by a hot-cold water consuming pattern input means.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种能够以适合于实际的时间序列热水消耗模式的状态执行热电联产装置的计划运行的热电联产系统。 解决方案:操作控制装置控制用于产生热和电力的热电联产装置的操作; 并且构成为通过热水的手动操作来执行用于将时间序列热水消耗图案所需的冷热水的热电联供装置在热水储存箱中进行计划的操作 消耗图案输入装置。 版权所有(C)2006,JPO&NCIPI
    • 10. 发明专利
    • Waste heat utilizing system of fuel cell
    • 燃料电池废热利用系统
    • JP2005265293A
    • 2005-09-29
    • JP2004078564
    • 2004-03-18
    • Osaka Gas Co Ltd大阪瓦斯株式会社
    • MORIMOTO YOSHINORISAWADA YUJISHIBATA KENTOMIO TAKESHI
    • F24H1/00F24D3/00F24F3/00F24H1/18F24S90/00F24J2/42
    • Y02E10/40
    • PROBLEM TO BE SOLVED: To provide a waste heat utilizing system of a fuel cell capable of raising temperature of hot water so that it is applicable to a desiccant air conditioner and amount of heat reserve in a hot-water storage tank is increased. SOLUTION: This waste heat utilizing system of the fuel cell is provided with the fuel cell 2 for generating electricity and heat, the hot-water storage tank 4 storing heat as hot water, a solar heat collection device 6 for heating water by utilizing solar heat, the desiccant air conditioner 8, a cooling water circulation flow passage 12 for circulating cooling water of the fuel cell, a stored hot-water circulation flow passage 14 for circulating water in the hot-water storage tank 4, a heat exchanger 16 performing heat exchange between cooling water in the cooling water circulation flow passage 12 and water in the stored hot-water circulation flow passage 14, a first hot-water feeding flow passage 22 for feeding hot water after heat exchange into the solar heat collection device 6, a second hot-water feeding flow passage 24 for feeding hot water from the solar heat collection device 6 toward the hot-water storage tank 4, and a hot-water feeding flow passage 26 for feeding hot water toward the desiccant air conditioner 8. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种能够提高热水温度的燃料电池的废热利用系统,使其适用于干燥剂空调,并且增加了热水储存罐中的储热量 。 解决方案:该燃料电池的废热利用系统设置有用于发电和加热的燃料电池2,热水储存罐4作为热水储存热量,太阳能热收集装置6用于通过 利用太阳能热,干燥剂空气调节器8,用于使燃料电池的冷却水循环的冷却水循环流动通道12,用于使热水储存罐4中的水循环的储存的热水循环流路14,热交换器 在冷却水循环流路12中的冷却水和储存的热水循环流路14中的水之间进行热交换的第一热水供给流路22,将热交换后的热水供给到太阳能热收集装置 如图6所示,第二热水供给流路24从太阳能热收集装置6向热水储存箱4供给热水,热水供给流路26供给热水 朝向干燥剂空调机8.版权所有(C)2005,JPO&NCIPI