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    • 1. 发明授权
    • Temperature measurement system and temperature measurement method
    • 温度测量系统和温度测量方法
    • US08636408B2
    • 2014-01-28
    • US13229933
    • 2011-09-12
    • Takeo KasajimaKazushi UnoFumio Takei
    • Takeo KasajimaKazushi UnoFumio Takei
    • G01K11/32
    • G01K11/32G01K15/00G01K2011/324
    • A temperature measurement system includes: a laser light source; an optical fiber; and a temperature measurement unit configured to acquire a measured temperature distribution of a temperature of a temperature measurement area along an installation path of the optical fiber by detecting backscattered light of the incident laser light in the optical fiber, wherein the temperature measurement unit sequentially makes a correction for the measured temperature distribution a plurality of times so as to make a square error between a convolution of a transfer function of the optical fiber along the installation path and the corrected temperature distribution and the measured temperature distribution smaller in each of the corrections, and the temperature measurement unit also replaces a corrected temperature at a specific point of the installation path with an estimated temperature at the specific point in each of the corrections.
    • 温度测量系统包括:激光源; 光纤; 以及温度测量单元,其被配置为通过检测光纤中的入射激光的反向散射光来获取沿着光纤的安装路径的温度测量区域的温度的测量温度分布,其中温度测量单元顺序地形成 对测量的温度分布进行多次校正,以便在沿着安装路径的光纤的传递函数的卷积与校正的温度分布之间产生平方误差,并且在每个校正中使测量的温度分布更小;以及 温度测量单元还用在每个校正中的特定点处的估计温度来替换安装路径的特定点处的校正温度。
    • 4. 发明授权
    • Multidentate ligand
    • 多齿配体
    • US07488819B2
    • 2009-02-10
    • US10940648
    • 2004-09-15
    • Toshio ManabeFumio Takei
    • Toshio ManabeFumio Takei
    • C07D245/00C07D487/00
    • C07D213/81B82Y10/00C07D213/53C07D487/04G11C13/025H01L51/0046H01L51/0077H01L51/0083H01L51/0084H01L51/009H01L51/0595
    • A multidentate ligand includes at least two planar tetradentate coordination sites in one plane, each of the planar tetradentate coordination sites containing four nitrogen-containing groups of at least one of imino, amido and amino groups, and has the nitrogen atoms of the four nitrogen-containing groups as coordinating atoms in one plane. A metal complex assembly has one of two-dimensional and three-dimensional structures and contains metal complex chains and electroconductive wires, the metal complex chains each contain assembled metal complexes, the electroconductive wires each contain molecules serving as at least one of an acceptor and a donor, and the metal complex chains intersect with the electroconductive wires at such positions that the metal complexes and the molecules serving as at least one of an acceptor and a donor are capable of interacting with each other.
    • 多齿配位体在一个平面中包含至少两个平面四齿配位点,每个平面四齿配位点含有四个含有氮原子的四个含氮基团,其中含有亚氨基,酰氨基和氨基中的至少一个的四个含氮基团, 含有一组作为一个平面中的配位原子。 金属络合物组件具有二维和三维结构之一并且包含金属络合物链和导电丝,金属络合物链各自含有组装的金属络合物,导电丝各自含有分子,其作为至少一个受体和 供体,金属络合物链与导电线在这样的位置相交,即金属络合物和用作受体和给体中的至少一个的分子能够相互作用。
    • 7. 发明申请
    • Fuel battery
    • 燃油电池
    • US20060216574A1
    • 2006-09-28
    • US11443122
    • 2006-05-31
    • Kensuke YoshidaFumio TakeiMasami TsutsumiHiroaki YoshidaYouichi TakasuNawalage CooraySeiji Hibino
    • Kensuke YoshidaFumio TakeiMasami TsutsumiHiroaki YoshidaYouichi TakasuNawalage CooraySeiji Hibino
    • H01M8/24H01M8/02
    • H01M8/242H01M8/0247H01M8/04201H01M8/1011H01M8/241H01M8/2455H01M8/2483Y02E60/523
    • A fuel battery 20 includes a fuel supplier 32, and a battery cell structure 31A and a battery cell structure 31B which are arranged to face each other respectively and to sandwich the fuel supplier 32, and in the battery cell structure 31A and the battery cell structure 31B, fuel battery cells CA1 through CA6, and CB1 through CB6 are arranged. Due to separators 40a and 40b, in the battery cell structure 31A, from the fuel electrode of the fuel battery cell CA1 to the air electrode of the fuel battery cell CA6, and in the battery cell structure 31B, from the fuel electrode of the fuel battery cell CB6 to the air electrode of the fuel battery cell CB1, are electrically connected in series. With the cell connector 35, the air electrodes of the fuel battery cells on the diagonal lines of the battery cell structure 31A and the battery cell structure 31B are connected electrically in parallel. Even when the surface of the liquid fuel filling the fuel supplier 32 changes, and some fuel battery cells stop electricity generation, the counterpart fuel battery cells connected in parallel can generate electricity. As a result, it is possible to easily make the fuel battery compact and light, and to prevent stoppage of power supply under various usage conditions of the fuel battery for stable power supply. Disclosure is also made of a fuel battery in which fuel battery cells facing each other are arranged to be perpendicular to each other.
    • 燃料电池20包括燃料供应器32和电池单元结构31A和电池单元结构31B,电池单元结构31A和电池单元结构31B分别布置成彼此面对并夹住燃料供应器32,并且在电池单元结构31A和 电池单元结构31B,燃料电池单元CA1〜CA6,CB1〜CB6。 由于电池单元结构31A中的分离器40a和40b从燃料电池单元CA 1的燃料电极到燃料电池单元CA 6的空气电极和电池单元结构31B中的分离器40a, 燃料电池单元CB 6的燃料电极与燃料电池单元CB 1的空气电极串联电连接。 在电池单元连接器35中,电池单元结构31A的对角线上的燃料电池单元的空气电极和电池单元结构31B并联电连接。 即使当填充燃料供给器32的液体燃料的表面发生变化,并且一些燃料电池单元停止发电时,并联连接的对应燃料电池也可以发电。 结果,可以容易地使燃料电池小型化,并且能够防止燃料电池的各种使用条件下的供电停止,从而稳定供电。 还公开了其中相互面对的燃料电池单元彼此垂直的燃料电池。