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    • 4. 发明申请
    • BAFFLE PLATE, FUEL TANK AND VEHICLE
    • WO2018101871A1
    • 2018-06-07
    • PCT/SE2017/051118
    • 2017-11-09
    • SCANIA CV AB
    • IKEMEFUNA-AMAECHI, Sydney
    • B60K15/077B60P3/22B65D90/52
    • B60K15/077B60K2015/0344B60K2015/0775B60P3/22
    • The invention relates to a baffle plate (5) for a tank (3) holding a fluid, the baffle plate (5) being arranged for reducing forces acting on the tank (3), which forces are due to the fluid moving within the tank (3). The baffle plate (5) comprises a plate member (13), arranged to extend from an inner top surface (7) of the tank to an inner bottom surface (9) of the tank (3) and having at least one attachment portion (23) arranged for attaching the plate member (13) to an interior surface of the tank (3). The plate member (13) further comprises at least one hole (11) arranged therein. The baffle plate (5) is further a plan plate member (13) and comprises flange portions (15), arranged at a first circumference (17) of the at least one hole (11), wherein the flange portion (15) extends away from the plate member (13) in a first direction (19) and further extends inwards towards a centre (C) of the at least one hole (11). The flange portion (15) further comprises a second circumference (29), smaller than the first circumference (17), the flange portion (15) being defined as a portion of a torus, said portion being a curved surface between the first and the second circumference (17, 29). The invention also relates to a fuel tank (3) for a vehicle (1), which fuel tank (3) comprises at least one such baffle plate (5), and a vehicle (1) comprising at least one such fuel tank (3).
    • 5. 发明申请
    • 냉각수 저장조 및 이를 포함하는 원자로건물 피동 냉각시스템
    • 冷却剂储库和反应堆建筑被动冷却系统包括它们
    • WO2018062915A1
    • 2018-04-05
    • PCT/KR2017/010874
    • 2017-09-28
    • 한국수력원자력 주식회사
    • 김대헌이상원임상규김한곤하희운허선천종윤병조
    • G21C15/18B65D88/02B65D90/52B65D90/32B65D90/00G21C17/032G08B21/18
    • 본 발명은 설계기준사고 및 중대사고 발생 시 원자로건물의 냉각에서 원자로건물이 재가압 및 재가열되는 것을 방지하고, 원자로건물 냉각에서 발생되는 열교환기의 증기를 외부로 방출시킬 수 있는 냉각수 저장조 및 이를 포함하는 원자로건물 피동 냉각시스템을 제공하기 위하여, 냉각수가 저장되는 저장탱크 및 상기 저장탱크 내부에 배치되고, 상기 냉각수가 분리되도록 상기 저장탱크 내부를 제1 및 제2 저장조로 구획하며 상기 제1 및 제2 저장조의 수위차 발생에 따라 상기 제2 저장조의 냉각수가 상기 제1 저장조로 자연 유입되도록 하는 유입부를 갖는 구획부 및 상기 제1 저장조로부터 상기 원자로건물 내부로 연장되며, 상기 제1 저장조의 냉각수를 기반으로 상기 원자로건물을 냉각시키는 열교환기 및 상기 열교환기에 연결되며, 상기 열교환기 내부에서 발생되는 증기가 상기 열교환기 외부로 방출되도록 하는 증기 배출부를 포함한다.
    • 本发明是设计基准事故和重要避免事故发生在事件,所述反应堆建筑物再压缩和再加热和放电,其在反应器中建筑物中产生的热交换器的冷却到外部的蒸汽将反应器建筑物的冷却 包括冷却水储存罐和第一和第二储存罐的冷却水储存罐和核反应堆被动冷却系统设置在用于储存冷却水的储存罐中并且在储存罐内, 隔室,并从所述第一延伸和分割部,并且使得根据水位差的自然流入第一贮存器具有在所述第二贮存器中的冷却剂的流入,第一存储罐发生在第二储罐到反应器建筑 基于第一储罐的冷却水连接到热交换器以用于冷却反应堆建筑物的热交换器, 在热交换器中产生的蒸汽和包括蒸汽排出,使得排放到外部热交换器中。

    • 9. 发明申请
    • VESSEL FOR STORING AND TRANSPORTING LIQUID COMBUSTIBLE AND/OR EXPLOSIVE MATERIALS
    • 储存和运输液体可燃和/或爆炸材料的船只
    • WO00032497A1
    • 2000-06-08
    • PCT/EA1998/000007
    • 1998-11-27
    • B65D90/02B65D90/40B65D90/52B65D85/00B60K15/03B65D90/46
    • B65D90/52B65D90/022B65D90/40
    • The present invention relates to a vessel that comprises a body with a filling neck and with an external protection member (cover). The protection member is porous and is made of open-cell polyurethane foam or of segments of a perforated aluminium foil which has a three-dimensional structure and in which the dimensions of the voids between its partitions vary from 3 to 7 mm. The protection member is arranged on a metallic grid which is mounted inside the body at a distance representing 2/3 of the height from the filling neck. The total volume of the porous protection member represents from 50 to 65 % of the total volume of the vessel body. The external cover comprises three layers, i.e. a layer of an elastic, polymer and self-stretching material, a layer of a thermal insulation material comprising glass or basalt fibres and a layer of a fire-protection material, wherein the ratio between the respective layers is 1:2.0...2.5: 0.3...0.4.
    • 本发明涉及一种容器,其包括具有填充颈部的主体和外部保护构件(盖)。 保护构件是多孔的,并且由开孔聚氨酯泡沫或具有三维结构的穿孔铝箔的段制成,并且其间隔空间的尺寸在3至7mm之间变化。 保护构件布置在金属网格上,该金属网格以距离填充颈部的高度的2/3的距离安装在身体内。 多孔保护部件的总体积为容器主体总体积的50〜65%。 外盖包括三层,即弹性,聚合物和自拉伸材料层,包含玻璃或玄武岩纤维的绝热材料层和防火材料层,其中各层之间的比例 是1:2.0 ... 2.5:0.3 ... 0.4。