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    • 1. 发明专利
    • Drawing processing device, drawing processing method and drawing processing program
    • 绘图处理装置,绘图处理方法和绘图处理程序
    • JP2011034549A
    • 2011-02-17
    • JP2010063067
    • 2010-03-18
    • Hitachi Ltd株式会社日立製作所
    • KIDA ARATATAKASAKI TATSURO
    • G06F17/50G05B23/02
    • PROBLEM TO BE SOLVED: To allow a user to intuitively and simultaneously understand information on temporal change and information on connecting relation of a plant in which equipment whose state value is variable is disposed. SOLUTION: In the system diagram processing device 1, a processing unit searches for character figure correspondence data 80 by use of an equipment identification character string described in a cell on a basic map sheet 81 as a key, draws, when a figure display of the corresponding equipment is acquired, the figure display in a cell on a system diagram sheet 82 of the same position as the searched cell on the basic map sheet 81, and forms and displays a three-dimensional diagram by superimposing the system diagram sheet 82 for each step of the plant in time series from the foreground to the background, in which the row directional and column directional cells of the system diagram sheet 82 are shown by the vertical axis and horizontal axis in the three-dimensional diagram, and the step of the plant is shown by the depth axis in the three-dimensional diagram. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:允许用户直观地同时理解关于时间变化的信息以及关于其中设置状态值是可变的设备的设备的连接关系的信息。 解决方案:在系统图处理装置1中,处理单元通过使用基本地图片81上的单元格中描述的设备标识字符串作为关键字来搜索字符图形对应数据80,当绘制图形时 获取相应设备的显示,该图在与基本地图纸81上搜索到的单元格相同位置的系统图表82上的单元格中显示,并且通过将系统图表叠加来形成并显示三维图 82,对于从前台到后台的时间序列的植物的每个步骤,其中系统图表82的行方向和列方向单元在三维图中由垂直轴和水平轴示出,并且 植物的步骤由三维图中的深度轴示出。 版权所有(C)2011,JPO&INPIT
    • 2. 发明专利
    • Humid air gas turbine facilities and operation method thereof
    • 湿气涡轮机的设备及其操作方法
    • JP2007016639A
    • 2007-01-25
    • JP2005197087
    • 2005-07-06
    • Hitachi Ltd株式会社日立製作所
    • KIDA ARATATSUKAMOTO MORIAKIKATAGIRI YUKINORI
    • F02C3/30F02C7/08
    • PROBLEM TO BE SOLVED: To provide humid air gas turbine facilities capable of stably operating in a short period of time by inhibiting sudden change of humidifying quantity to air for combustion at a time of stop or start-up of a humidifying tower.
      SOLUTION: The facilities are provided with a temperature measuring means T2 measuring feed water temperature at a time of feeding water to the humidifying tower 7, a feed water quantity adjusting valve 26 limiting feed water quantity to the humidifying tower 7 until temperature measured by the temperature measuring means T2 gets to predetermined temperature, and a means 27 gradually starting water feed to the humidifying tower 7 when feed water temperature gets to the predetermined temperature. Humidifying quantity of air for combustion in the humidifying tower 7 can be gently increased by the structure mentioned above. As a result, operation of humid air gas turbine facilities can be stabilized in a short period of time.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:为了提供能够在加湿塔停止或启动时抑制加热空气突然变化的能够在短时间内稳定运行的潮湿空气燃气轮机设备。 解决方案:设备设有温度测量装置T2,该温度测量装置T2在向加湿塔7供水时测量给水温度;进给水量调节阀26,用于限制加湿塔7的给水量,直到测量温度 温度测量装置T2达到预定温度时,当供水温度达到预定温度时,装置27逐渐开始向加湿塔7供水。 通过上述结构可以缓和增加加湿塔7中用于燃烧的空气的加湿量。 因此,可以在短时间内稳定潮湿空气燃气轮机设备的运转。 版权所有(C)2007,JPO&INPIT
    • 3. 发明专利
    • Time chart generation method, time chart generation program, and spreadsheet cell display method
    • 时间表生成方法,时间表生成程序和扩展单元显示方法
    • JP2010009485A
    • 2010-01-14
    • JP2008170767
    • 2008-06-30
    • Hitachi Ltd株式会社日立製作所
    • KIDA ARATAYAMAGUCHI KAZUMIKOMOTO HIROSHI
    • G05B19/418
    • Y02P90/02
    • PROBLEM TO BE SOLVED: To provide a time chart generation method generating, in a simple procedure, a time chart to show a state change of equipment arranged on a spreadsheet.
      SOLUTION: Character strings and graphic definition information 52 to define association between a character string and a graphic is pre-stored in a storage device 5. Upon receiving a time chart generation instruction from an input device 2, a CPU 3 reads a plurality of character strings on a first spreadsheet; when a character string is determined to be a state changing character string from the character and graphic definition information 52, assumes the determined character string to be a first character string; reads a plurality of second character strings entered in a cell at a predetermined position from a cell of the first character string; associates and generates on the second spreadsheet, a cell position of the first character string and the second character string, as a line on the second spreadsheet; associates a cell indicating a state value among the second character strings with an operation procedure step number and enters it in a cell; and generates a graph indicating the state value in the same cell as the state value has been written in.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种时间表生成方法,其以简单的过程生成显示布置在电子表格上的设备的状态变化的时间图。 解决方案:用于定义字符串和图形之间的关联的字符串和图形定义信息52被预先存储在存储设备5中。在从输入设备2接收到时间表生成指令时,CPU 3读取 多个字符串在第一电子表格上; 当从字符和图形定义信息52确定字符串是状态改变字符串时,将所确定的字符串假定为第一字符串; 从第一字符串的单元读取在预定位置处输入到单元格中的多个第二字符串; 关联并在第二电子表格上生成第一字符串和第二字符串的单元位置作为第二电子表格上的行; 将表示第二字符串中的状态值的单元与操作步骤编号相关联,并将其输入单元格中; 并生成指示与状态值已写入同一单元格中的状态值的图表。(C)2010,JPO&INPIT
    • 9. 发明专利
    • FUEL CONTROLLER FOR GAS TURBINE
    • JPS6429626A
    • 1989-01-31
    • JP18356987
    • 1987-07-24
    • HITACHI LTD
    • NISHIJIMA YASUMASAKIDA ARATA
    • F02C9/40
    • PURPOSE:To prevent the variation of output for an arbitrary mixing ratio by controlling a flow rate adjusting valve on the basis of the calorific power, specific gravity of each fuel, and the mixing ratio of the both fuels, in the use of two kinds of fuels having different calorific power. CONSTITUTION:After two kinds of fuels A and B having different calorific power are mixed in a prescribed mixing ratio in a mixing valve 3, and the flow rate of the mixed fuel is supplied into a conbustor by the control by a flow rate adjusting valve 4. The mixing valve 3 performs feedback control so that the measured mixing ratio RM calculated from the fuel flow rate QAM and QBM measured by the flow rate meters 1 and 2 becomes a prescribed mixing ratio Rs. The flow rate adjusting valve 4 performs feedback control so that the measured flow rate QM becomes a set flow rate Qs. The set flow rate Qs is obtained through the calculation from the volume heat generation coefficients XA and XB of the fuels A and B which are calculated from the low rank calorific power and specific gravity of each fuel A, B, mixing ratio Rs. and the fuel energy signal Es.