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    • 1. 发明申请
    • Power Plant Life Cycle Costing System and Power Plant Life Cycle Costing Method
    • 电厂生命周期成本核算系统和电厂生命周期成本计算方法
    • US20110054965A1
    • 2011-03-03
    • US12858926
    • 2010-08-18
    • Yukinori KATAGIRINaoyuki NagafuchiTakuya YoshidaTatsuro Yashiki
    • Yukinori KATAGIRINaoyuki NagafuchiTakuya YoshidaTatsuro Yashiki
    • G06F17/30
    • G06Q10/10G06Q10/063G06Q10/0637
    • The power plant life cycle costing system for costing a power plant life cycle according to the present invention includes a flow chart generation unit for generating a power plant system flow chart based on specifications and cost information of major components of the power plant stored in a major component specifications storage unit, and plant specifications input from a plant specifications input unit; a power plant planning unit for calculating and generating a power plant life cycle cost, a plant efficiency and an operation plan including a maintenance plan as optimization indexes of a power plant configuration based on information from the flow chart generation unit, specifications and cost information of auxiliary devices of the power plant stored in a piping and device specifications storage unit, and optimization conditions of a power plant configuration input by an optimizing method selection unit; and an optimized result output unit for outputting a calculated value and a planned result calculated and generated by the power plant planning unit.
    • 根据本发明的用于对发电厂生命周期进行成本计算的发电厂生命周期成本计算系统包括:流程图生成单元,用于基于存储在主要的发电厂的主要部件的规格和成本信息来生成发电厂系统流程图 组件规格存储单元,以及工厂规格输入单元的工厂规格输入; 基于来自流程图生成单元的信息的电力设备计算单元,用于计算和生成发电厂生命周期成本,设备效率和运行计划,其包括作为电厂配置的优化指标的维护计划,规格和成本信息 存储在管道和设备规格存储单元中的发电厂的辅助装置,以及由优化方法选择单元输入的发电厂配置的优化条件; 以及优化结果输出单元,用于输出由发电厂计划单元计算和生成的计算值和计划结果。
    • 3. 发明申请
    • Heat Pump Power Generation System
    • 热泵发电系统
    • US20120167952A1
    • 2012-07-05
    • US13388830
    • 2009-11-30
    • Tatsuro YashikiNaoyuki Nagafuchi
    • Tatsuro YashikiNaoyuki Nagafuchi
    • H01L31/058F24J2/34F03G6/06
    • F03G6/067F01K25/10F03G6/001F22B1/006H02S10/10Y02E10/46Y02E20/14
    • A heat pump power generation system is provided that can generate electricity by efficiently using solar energy in a wide wavelength range including a visible light range and an infrared range.The heat pump power generation system includes a collector 1 for collecting solar light and solar heat; a power generation panel 8 for generating electricity by receiving the solar light collected by the collector; a switching unit 9 for providing switching control on a place to deliver heat energy collected by the collector or of cold energy generated by cooling; a heat accumulating device 4, 10 for accumulating the cooling energy or the heat energy going through the switching unit: and a heat pump generator 11 for generating electricity by using, as a heat source, the cold energy or heat energy accumulated in the heat accumulating device.
    • 提供一种能够通过在包括可见光范围和红外范围的宽波长范围内有效利用太阳能来发电的热泵发电系统。 热泵发电系统包括用于收集太阳光和太阳能热量的收集器1; 用于通过接收由集电器收集的太阳光发电的发电面板8; 开关单元9,用于在一个地方提供开关控制,以传递由集电器收集的热量或由冷却产生的冷能; 用于累积冷却能量或通过开关单元的热能的蓄热装置4,10以及用于通过使用积聚在蓄热器中的冷能或热能作为热源来发电的热泵发电机11 设备。
    • 4. 发明申请
    • Mesh generation method for numerical simulation
    • 网格生成方法进行数值模拟
    • US20070120849A1
    • 2007-05-31
    • US11435880
    • 2006-05-18
    • Ichiro NishigakiNoriyuki SadaokaTatsuro Yashiki
    • Ichiro NishigakiNoriyuki SadaokaTatsuro Yashiki
    • G06T17/20
    • G06T17/20
    • A mesh generating method for numerical simulation, generating mesh data for numerical simulation of one (1) piece of an analysis target, in a short time period, where there are plural numbers of high-density configuration data, each presenting a configuration surface thereof said one (1) piece of analysis target, comprising the following steps: a step for reading one (1) piece of the configuration mesh data “A” from the plural numbers of the configuration mesh data; a step for generating low-density configuration mesh data “B” through treating a density lowering process for reducing a number of meshes on the configuration mesh data “A”; a step for reading configuration mesh data “C” neighboring to said configuration mesh data “A” from the plural numbers of configuration mesh data; a step for generating mixed and combined configuration mesh data “D” mixing a low density portion and a high density portion therein, through combining the low-density configuration mesh data “B” with the configuration mesh data “C”; and a step for generating combined low-density configuration mesh data “E” through treating a density lowering process for reducing a number of meshes on the high density portion of the mixed and combined configuration mesh data “D”, wherein final combined low-density configuration mesh data is generated through repeating every said processes up to said process for generating the combined low-density configuration mesh data “E”, until when none of the plural numbers of configuration mesh data remains, and mesh data for numerical simulation is generated from the final combined low-density configuration mesh data.
    • 一种用于数值模拟的网格生成方法,在短时间段内生成用于数据模拟的一(1)个分析目标的网格数据,其中存在多个高密度配置数据,每个呈现其配置表面 一个分析目标,包括以下步骤:从多个配置网格数据中读取一(1)个配置网格数据“A”的步骤; 通过处理用于减少配置网格数据“A”上的网格数的密度降低处理来生成低密度配置网格数据“B”的步骤; 从多个配置网格数据读取与所述配置网格数据“A”相邻的配置网格数据“C”的步骤; 通过将低密度配置网格数据“B”与配置网格数据“C”组合,生成混合和组合配置网格数据“D”混合低密度部分和高密度部分的步骤; 以及通过处理用于减少混合和组合配置网格数据“D”的高密度部分上的多个网格的密度降低处理来生成组合的低密度配置网格数据“E”的步骤,其中最终组合低密度 通过重复每个所述处理直到生成组合的低密度配置网格数据“E”的所述处理来生成配置网格数据,直到不存在多个配置网格数据中的任何一个,并且生成用于数值模拟的网格数据时 最终组合的低密度配置网格数据。