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    • 1. 发明授权
    • Method for opening, closing and rotating rigid marine sail
    • 打开,关闭和旋转刚性海洋帆船的方法
    • US4448144A
    • 1984-05-15
    • US281164
    • 1981-07-07
    • Akira SenooYuzo NezuMasanori ItoHironobu NaganoTatsuo Aire
    • Akira SenooYuzo NezuMasanori ItoHironobu NaganoTatsuo Aire
    • B63B49/00B63H9/04B63H9/06G05B7/02
    • B63B49/00B63H9/0607
    • A method for opening, closing and rotating a rigid marine sail, which comprises the steps of: selectively opening, closing and rotating, in response to a wind velocity and a wind direction, a rigid sail comprising at least two sail portions which are fitted in front of a mast rotatable around the vertical axis thereof substantially in parallel with said axis, and which are selectively pivotably movable between the opened position and the closed position relative to the mast: the method being characterized by: smoothing a plurality of wind velocity signals and a plurality of wind direction signals from a wind velocity/wind direction meter, by a calculating device at prescribed intervals of time; determining opening and closing of the at least two sail portions by the calculating device on the basis of smoothed wind velocity signals and smoothed wind direction signals; automatically selectively opening or closing the at least two sail portions by an opening/closing device in response to the determination; determining by the calculating device an optimum sail angle relative to the horizontal reference line of the ship, the optimum sail angle providing the maximum propulsion to the at least two sail portions when the sail portions are opened, and minimizing the wind resistance acting on the at least two sail portions when the sail portions are closed; and, selectively rotating the mast together with the at least two sail portions, by a mast rotating mechanism, in response to the deviation of an actual sail angle relative to the horizontal reference line of the ship from the optimum sail angle, thereby always keeping the at least two sail portions at the optimum sail angle.
    • 一种用于打开,关闭和旋转刚性海洋帆的方法,其包括以下步骤:响应于风速和风向选择性地打开,关闭和旋转;刚性帆,包括至少两个帆形部分,其装配在 所述桅杆的前部可绕其垂直轴线大致平行于所述轴线旋转,并且其可相对于所述桅杆在打开位置和关闭位置之间选择性地可枢转地移动。所述方法的特征在于:平滑多个风速信号和 来自风速/风向计的多个风向信号通过计算装置以规定的时间间隔; 基于平滑的风速信号和平滑的风向信号,通过计算装置确定至少两个帆部分的打开和关闭; 响应于所述确定,通过打开/关闭装置自动选择性地打开或关闭所述至少两个帆部; 由所述计算装置确定相对于所述船的水平参考线的最佳帆角,所述最佳帆角在所述部分打开时向所述至少两个帆形部分提供最大推进力,并且最小化作用在所述船上的所述风阻力 当帆部分关闭时,至少两个帆部分; 并且响应于相对于最佳帆角相对于船舶的水平参考线的实际帆角的偏差,通过桅杆旋转机构选择性地将桅杆与至少两个帆部分一起旋转,从而始终保持 至少两个帆部分处于最佳帆角。
    • 6. 发明申请
    • STORAGE UNIT, DATA WRITE METHOD AND DATA WRITE PROGRAM
    • 存储单元,数据写入方法和数据写入程序
    • US20100241802A1
    • 2010-09-23
    • US12696219
    • 2010-01-29
    • Atsushi IGASHIRAMasanori ItoYoshihito KontaNorihide KubotaKenji Kobayashi
    • Atsushi IGASHIRAMasanori ItoYoshihito KontaNorihide KubotaKenji Kobayashi
    • G06F12/08G06F12/00
    • G06F12/0873G06F2212/262G06F2212/281
    • A storage unit includes a cache memory, a cache controller which accesses the cache memory, one or more disk units, a data receiving unit, a merge interpolation determination unit, a data readout unit, a write data generation unit and a data write unit. The data receiving unit receives, from the cache controller, unit readout data that includes update records updated by the cache controller and is unit of data read from the cache memory. The merge interpolation determination unit determines whether the received unit readout data is merge interpolated. The data readout unit reads, from the disk unit, data corresponding to the unit readout data when the unit readout data is determined to be merge interpolated. The write data generation unit generates data to be written to the disk unit by merge interpolating the unit readout data. The data write unit writes, to the disk unit, the generated data.
    • 存储单元包括高速缓存存储器,访问高速缓冲存储器的高速缓存控制器,一个或多个盘单元,数据接收单元,合并插值确定单元,数据读出单元,写入数据生成单元和数据写入单元。 数据接收单元从高速缓存控制器接收包括由高速缓存控制器更新的更新记录的单元读出数据,并且是从高速缓冲存储器读取的数据单位。 合并插值确定单元确定接收单元读出数据是否合并内插。 当确定单元读出数据被合并内插时,数据读出单元从盘单元读取对应于单元读出数据的数据。 写数据生成单元通过合并内插单位读出数据来生成要写入到盘单元的数据。 数据写入单元向盘单元写入生成的数据。
    • 9. 发明申请
    • Hollow fiber membrane module, and a manufacturing method therefor, and housing for hollow fiber memberane module
    • 中空纤维膜组件及其制造方法以及中空纤维构件模块的壳体
    • US20080164203A1
    • 2008-07-10
    • US12010785
    • 2008-01-30
    • Yoshihito NakaharaTetsuya TorichigaiMasatoshi KamataMasanori ItoKenji HonjouHiroyuki OkazakiYoshihiro Kakumoto
    • Yoshihito NakaharaTetsuya TorichigaiMasatoshi KamataMasanori ItoKenji HonjouHiroyuki OkazakiYoshihiro Kakumoto
    • B01D27/08B29C65/54
    • B01D63/02B01D63/021B01D63/022B01D63/024B01D63/026B01D63/043Y10T428/26Y10T428/31504
    • In a hollow fiber membrane flat module according to the present invention, both ends of hollow fiber membrane bundle which are formed by bundling a plurality of hollow fiber membrane as a sheet are fixed to two housing separately by a fixing resin while maintaining an opening condition in an opening end section in the follow fiber membrane. Furthermore, a maximum width in an orthogonal direction to a longitudinal direction of the hollow fiber membrane is no longer than 25 mm in a cross section which is orthogonal to a longitudinal direction of the housings, and a maximum deflection in the housings which are measured according to a method for measuring the deflection according to the present invention is not more than 1% of a distance between the two housings. In such a hollow fiber membrane module, it is possible to enhance the integration ratio of the hollow fiber membrane module per a unit volume of the hollow fiber membrane module unit in which there is less deflections in the housing caused by adjust the wavelength dispersion and the dispersion slope always in minimum level automatically only by matching the position of the reflecting mirror 8, the dispersion compensation amount and the dispersion slope compensation amount which correspond to a shape of the reflecting surface 8a on the reflecting mirror 8 which is selected under such a current condition in advance. Factors such as an air bubble, and the entanglement of the hollow fiber membranes is restricted; thus, a hollow fiber membrane is not damaged. Also, in the hollow fiber membrane module, it is preferable that the housing is provided with a reinforcing rib section which strengthens the housing.
    • 在根据本发明的中空纤维膜平板组件中,通过将多个中空纤维膜作为片材捆扎形成的中空纤维膜束的两端通过固定树脂分别固定到两个壳体,同时保持开口状态 在后续纤维膜中的开口端部分。 此外,与中空纤维膜的长度方向正交的方向上的最大宽度在与壳体的长度方向正交的截面中不大于25mm,并且壳体中的最大挠度根据 根据本发明的用于测量偏转的方法不超过两个壳体之间的距离的1%。 在这样的中空纤维膜组件中,可以提高中空纤维膜组件的中空纤维膜组件的单位体积的积分比,其中通过调节波长色散而导致壳体中的偏转少, 色散斜率始终在最小水平,通过匹配反射镜8的位置,色散补偿量和色散斜率补偿量,与反射镜8的形状对应,反射镜8在这样的 当前状况提前。 气泡等因素和中空纤维膜的缠结受到限制; 因此,中空纤维膜不被损坏。 此外,在中空纤维膜组件中,优选的是,壳体设置有加强壳体的加强肋部。