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    • 8. 发明授权
    • Liquid fuel burning device
    • 液体燃料燃烧装置
    • US4465457A
    • 1984-08-14
    • US308139
    • 1981-10-02
    • Katsuhiko IshikawaYoshitaka KawasakiMotoo Yotsuya
    • Katsuhiko IshikawaYoshitaka KawasakiMotoo Yotsuya
    • F23D3/08F23D3/22F23D5/00
    • F23D3/22F23D3/08
    • A liquid fuel burning device suitable for kerosene stove, kerosene kitchen range or the like. The device has an inner and outer flame sleeves each having a multiplicity of pores and a wick interposed between these sleeves. The wick has a fuel evaporating portion projectable into the annular burning space formed between these sleeves. At least one of these sleeves is provided with at least one vertical row of air pores in its portion facing the fuel evaporating portion of the wick. Above the region of vertical row of air pores, formed is a horizontal row of air pores having a multiplicity of pores arranged at a higher density than the pores in the other portion of the wall. In the case where the vertical and horizontal rows of air pores are formed in the inner flame sleeve, a partition plate having apertures is attached to the inner side of the inner flame sleeve at a level above the horizontal row or air pores. The ratio of the total area of apertures in the partition plate is selected to be smaller than 20% of the horizontal cross-sectional area of the inner flame sleeve as measured at the inner side of the latter.
    • 适用于煤油炉,煤油厨房等的液体燃料燃烧装置。 该装置具有内壁和外侧火焰套筒,每个具有多个孔和插入在这些套筒之间的灯芯。 灯芯具有可喷射到形成在这些套筒之间的环形燃烧空间中的燃料蒸发部分。 这些套筒中的至少一个在其面向燃油芯的燃料蒸发部分的部分中设置有至少一排垂直排的空气孔。 在垂直排的空气孔的区域之上,形成有水平排的空气孔,其具有以比壁的另一部分中的孔更高的密度排列的多个孔。 在内部火焰套筒中形成有空气孔的垂直和水平排的情况下,具有孔的分隔板在水平排或空气孔的上方附接到内火焰套筒的内侧。 选择分隔板中的孔的总面积的比例小于在内侧火焰套筒的内侧测量的水平横截面面积的20%。
    • 10. 发明授权
    • Physical movement analyzer and physical movement analyzing method
    • 身体运动分析仪和身体运动分析方法
    • US07387611B2
    • 2008-06-17
    • US10817880
    • 2004-04-06
    • Shigeyuki InoueShinji TanakaTakako ShiraishiHiroshi YamamotoYoshitaka Kawasaki
    • Shigeyuki InoueShinji TanakaTakako ShiraishiHiroshi YamamotoYoshitaka Kawasaki
    • A61B5/103A61B5/117G01B5/02
    • A61B5/112A61B5/1038
    • An acceleration information detecting unit of an acceleration detecting apparatus having an acceleration sensor with at least one axis that measures acceleration in a back and forth direction (or a right and left direction) of a walking person. Acceleration data indicating the acceleration is sent to a wireless communication control unit. The wireless communication control unit sends the acceleration data to a physical movement analyzer using a short-distance wireless communication method. On the other hand, the wireless communication control unit of the physical movement analyzer receives the acceleration data that is sent from the acceleration detecting apparatus using a short-distance wireless communication method and sends it to a walking speed detecting unit. The walking speed detecting unit estimates strides and walking period based on the received acceleration data and calculates the walking speed based on the strides and the walking period.
    • 一种具有加速度传感器的加速度检测装置的加速度信息检测单元,该加速度传感器至少具有一个测量行走人的前后方向(或左右方向)的加速度的轴。 指示加速度的加速度数据被发送到无线通信控制单元。 无线通信控制单元使用短距离无线通信方式将加速度数据发送到物理移动分析装置。 另一方面,物理运动分析器的无线通信控制单元使用短距离无线通信方式接收从加速度检测装置发送的加速度数据,并将其发送到步行速度检测单元。 步行速度检测单元基于接收到的加速度数据来估计步幅和步行时段,并且基于步幅和步行时间计算步行速度。