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    • 1. 发明专利
    • Cooling system
    • AU2011342551B2
    • 2015-04-16
    • AU2011342551
    • 2011-10-13
    • HITACHI LTD
    • KIKUCHI HIROSHIGEKAWANE SHINICHIROUYOSHIDA JUNOSHIMA NOBORUSUZUKI KOJI
    • F24F5/00F24S90/00
    • A reduction in the running costs of a heating and cooling system that uses solar heat, which combines a solar thermal collector and an absorption refrigerator, is achieved by means of a cooling system for cooling a heating medium, wherein: a solar thermal collector for collecting heat energy from at least the sun, an absorption refrigerator, a means for detecting the specific enthalpy of the outside air or the wet-bulb temperature of the outside air, a means for detecting the amount of direct solar irradiance, a means for detecting the cooling load of the heating medium that provides cooling, a means for detecting and measuring the pressure inside the solar thermal collector, and a pressure adjustment means for adjusting the pressure inside the solar thermal collector are provided; and the pressure inside the solar thermal collector is changed according to the specific enthalpy of the outside air or the wet-bulb temperature of the outside air, the amount of direct solar irradiance, and the cooling load of the heating medium that provides cooling.
    • 2. 发明专利
    • Cooling system
    • AU2011342551A1
    • 2013-07-04
    • AU2011342551
    • 2011-10-13
    • HITACHI LTD
    • KIKUCHI HIROSHIGEKAWANE SHINICHIROUYOSHIDA JUNOSHIMA NOBORUSUZUKI KOJI
    • F24F5/00F24S90/00
    • A reduction in the running costs of a heating and cooling system that uses solar heat, which combines a solar thermal collector and an absorption refrigerator, is achieved by means of a cooling system for cooling a heating medium, wherein: a solar thermal collector for collecting heat energy from at least the sun, an absorption refrigerator, a means for detecting the specific enthalpy of the outside air or the wet-bulb temperature of the outside air, a means for detecting the amount of direct solar irradiance, a means for detecting the cooling load of the heating medium that provides cooling, a means for detecting and measuring the pressure inside the solar thermal collector, and a pressure adjustment means for adjusting the pressure inside the solar thermal collector are provided; and the pressure inside the solar thermal collector is changed according to the specific enthalpy of the outside air or the wet-bulb temperature of the outside air, the amount of direct solar irradiance, and the cooling load of the heating medium that provides cooling.
    • 3. 发明专利
    • Compound service component destination solving method
    • 复合服务组件目标解决方法
    • JP2007004414A
    • 2007-01-11
    • JP2005182778
    • 2005-06-23
    • Hitachi Ltd株式会社日立製作所
    • YOSHIDA JUNTASAKA MITSUNOBU
    • G06F9/50G06F15/00
    • PROBLEM TO BE SOLVED: To provide a compound service component destination solving method for estimating a business process control component whose reply time is the shortest to the input data of a client.
      SOLUTION: This method includes managing: information relating to the mean reply time of each path on a business process in each business process control component; and the history of an execution path where input data from a client have been processed are managed; thereby predicting the execution path from the past history of each input data; and estimating business process control components 124 and 125 whose mean reply time is the shortest.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种用于估计对客户端的输入数据的回复时间最短的业务处理控制部件的复合服务组件目的地求解方法。

      解决方案:该方法包括管理:与每个业务流程控制组件中的业务流程上的每个路径的平均回复时间有关的信息; 管理来自客户端的输入数据的执行路径的历史; 从而预测来自每个输入数据的过去历史的执行路径; 以及估计其平均回复时间最短的业务流程控制组件124和125。 版权所有(C)2007,JPO&INPIT

    • 7. 发明专利
    • CRYOGENIC FREEZING DEVICE
    • JPH0875284A
    • 1996-03-19
    • JP21558094
    • 1994-09-09
    • HITACHI LTD
    • MATSUMOTO KOZOYOSHIDA JUN
    • F25B9/08F25B9/10
    • PURPOSE: To provide a small-sized low cost high efficient cryogenic freezing device capable of supplying injection gas under the most suitable heat balance at a cooling stage by a method wherein a low pressure line for returning cryogenic gas fed from a gas-liquid separator to the cooling stage, merging the cryogenic gas with a gas at an outlet of an expansion turbine and forming mixture gas is connected to a suction side of a compressor. CONSTITUTION: Cryogenic helium gas gas-liquid separated by a gasliquid separator 5 is returned back to a cooling stage 1, merged with gas at an outlet of an expansion turbine contained in the cooling stage 1, passes through a low pressure line 12 and returns back a compressor 10. Liquid helium gas-liquid separated by the gas-liquid separator 5 passes through a liquid helium supplying valve 7 and is supplied to a cooled item 4. Cryogenic helium gas cooled the cooled item 4 and gasified becomes suction gas for a cryogenic ejector 2. In this case, a pressure of the suction gas at the cryogenic ejector 2 becomes about 0.6atm and a pressure of the gas-liquid separator 5 becomes about 0.8atm under a condition that its pressure can be increased by the cryogenic ejector 2. A suction pressure at the compressor 10 becomes, for example, 0.7atm.
    • 8. 发明专利
    • Sunlight heat collecting device and angle deviation amount calculation method of sunlight heat collecting device
    • 阳光热收集装置和角度偏差量太阳热采集装置的计算方法
    • JP2014020567A
    • 2014-02-03
    • JP2012156048
    • 2012-07-12
    • Hitachi Ltd株式会社日立製作所
    • MIZUSHIMA TAKANARIKIKUCHI HIRONARISAKUMA MASAYOSHIYOSHIDA JUN
    • F24S50/20
    • Y02E10/47
    • PROBLEM TO BE SOLVED: To achieve sunlight heat collection with high efficiency by a plurality of heat collecting devices which are connected and synchronously controlled.SOLUTION: A sunlight heat collecting device 10 in which a plurality of heat collecting devices 11 are connected performs a step-like orbit detection test in which a collector is stopped at a constant angle at every predetermined time. By acquiring time when the heat collection amount of each of the heat collecting devices 11 becomes a maximum value at the predetermined time, and a collector angle of the heat collecting devices 11 at that time, an orbit facing the sun is detected. A control device 60 calculates an angle deviation amount of each of the heat collecting devices 11 by the difference between the collector angle at the time when the heat collection amount of a reference heat collecting device 11 becomes a maximum value, and the collector angle at the time when the heat collection amount of each of the heat collecting devices 11 other than that becomes a maximum value, and controls a synchronizer 50 so as to correct the collector angle of each of the heat collecting devices 11 on the basis of the calculated angle deviation amount.
    • 要解决的问题:通过连接并同步控制的多个集热装置实现高效率的阳光聚集。解决方案:连接多个集热装置11的太阳光集热装置10, 在每个预定时间收集器以恒定角度停止的轨道检测测试。 通过获取在各个集热装置11的集热量成为规定时间的最大值的时间和当时的集热装置11的集电极角度,检测出面向太阳的轨道的时间。 控制装置60通过基准集热装置11的集热量成为最大值时的集电极角度与集热装置11的集热器角度之间的差异来计算各集热装置11的角度偏差量 每个集热装置11的热量收集量除了以上的时间变为最大值,并且控制同步器50,以便根据计算出的角度偏差来校正每个集热装置11的集热器角度 量。