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    • 1. 发明专利
    • Ventilator for building
    • 通风通风机
    • JP2005344454A
    • 2005-12-15
    • JP2004168237
    • 2004-06-07
    • S X L Corpエス・バイ・エル株式会社
    • TASHIRO SHINICHINAITO KENTAROISHIZUKA HIROSHITAKANASHI HIDEAKI
    • E04B1/70
    • PROBLEM TO BE SOLVED: To provide a ventilator for a building sufficiently ventilating even in a set-back wall and vertically and laterally ventilating a projected corner part and an internal corner part in a plane form to attain efficient dehumidification.
      SOLUTION: In the building with a part of an upper floor set back with respect to a lower floor to form a roof balcony part 2, an upward open vent hole 25 is provided in a sill 3 of the lower floor, and a vent passage 12 communicating with the vent hole is vertically provided along the wall of the lower floor. A vent hole 26 communicating with the vent passage is provided in a front girth 4 forming the roof balcony part, and a vent passage 15 communicating with the vent hole is laterally provided along the floor of the roof balcony part. A vent hole 27 communicating with the vent passage is provided in a rear girth 5 forming the roof balcony part, and a vent passage 18 communicating with the vent passage is vertically provided along the wall of the roof balcony part.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:即使在后背壁中也能够为建筑物提供通风良好的通风机,并且以平面形式垂直和横向地通风突出的角部和内部角部,以实现有效的除湿。 解决方案:在上部楼层的一部分相对于下层设置的建筑物中,形成屋顶阳台部分2,向下敞开的通风孔25设置在下层的门槛3中,并且 与通气孔连通的排气通道12沿着下层的壁垂直设置。 在形成屋顶阳台部分的前围4中设置有与排气通道连通的通气孔26,并且沿着屋顶阳台部分的地板侧向设置有与通气孔连通的排气通道15。 在形成屋顶阳台部分的后围5中设置有与排气通道连通的通气孔27,并且沿着屋顶阳台部分的壁垂直地设置有与排气通道连通的排气通道18。 版权所有(C)2006,JPO&NCIPI
    • 2. 发明专利
    • SIMPLE CHECKING METHOD FOR ECCENTRICITY
    • JP2002138568A
    • 2002-05-14
    • JP2000330540
    • 2000-10-30
    • S X L CORP
    • TASHIRO SHINICHI
    • E04B1/00
    • PROBLEM TO BE SOLVED: To provide a simple checking method capable of easily checking eccentricity by the simple four rules of arithmetic, having a rough idea of it to some extent without calculating the eccentric rate for each plan by a planner, and effectively utilizing it at an initial stage of planning. SOLUTION: In the checking method by which the center of gravity of load supported by a major structural parts in structural endurance strength of a building and eccentricity to the calculated on the basis of the center of rigidity can be easily checked, the outermost wall of the topmost floor or the center of an outline figure of a division surrounded by the center line 1 of a column is made to be as a center of gravity 2. When the difference between the numerical value obtained by multiplying the horizontal distance from the center of gravity and the structural parts, and the numerical value obtained by making the center of gravity as a center is less than the limited numerical value led from the eccentricity provided by the enforcement regulation of the building standard low, the eccentricity is judged to be less than the limited numerical value.