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    • 2. 发明公开
    • DISPOSITIF DE COLLECTE SÉQUENTIELLE D'EAU DE PLUIE, NOTAMMENT EN VUE DE L'ÉTUDE DE L'ÉVOLUTION DE LA RADIOACTIVITÉ DES EAUX DE PLUIE
    • DISPOSITIF DE COLLECTESÉQUENTIELLED'EAU DE PLUIE,NOTAMMENT EN VUE DE L'ÉTUDEDEL'ÉVOLUTIONDE LARADIOACTIVITÉDES EAUX DE PLUIE
    • EP3183552A1
    • 2017-06-28
    • EP15756130.9
    • 2015-08-18
    • Institut de Radioprotection et de Sûreté Nucléaire
    • MARO, DenisLAGUIONIE, Philippe
    • G01N1/18E03B3/03
    • G01N1/18E03B3/03G01N33/18G01W1/14Y02A20/106
    • The invention relates to a collection device (10) that comprises a plurality of collection containers (12A, 12B, 12C) suitable for receiving rainwater, each collection container (12A, 12B, 12C) comprising a circumferential wall (14) and a lower wall (16). The collection containers (12A, 12B, 12C) are stacked so as to form a stack along a vertical axis (Z). Each container (12A, 12B) arranged above another, adjacent container (12B, 12C) comprises a water flow opening (18) that is provided in the lower wall (16) thereof and leads into said other, adjacent container (12B, 12C). Each container (12B, 12C) that is arranged below another, adjacent container (12A, 12B) houses a buoyant closure element (20) that is movable along the vertical axis (Z) between a lower position and an upper position depending on the amount of water in said container (12B, 12C) and closes the flow opening (18) in the upper position.
    • 本发明涉及一种收集装置(10),其包括适于接收雨水的多个收集容器(12A,12B,12C),每个收集容器(12A,12B,12C)包括周壁(14)和下壁 (16)。 收集容器(12A,12B,12C)堆叠以沿着竖直轴线(Z)形成堆叠。 布置在另一相邻容器(12B,12C)上方的每个容器(12A,12B)包括设置在其下壁(16)中并通向所述另一相邻容器(12B,12C)的水流开口(18) 。 布置在另一相邻容器(12A,12B)下方的每个容器(12B,12C)容纳浮力闭合元件(20),所述浮力闭合元件沿竖直轴线(Z)在下部位置和上部位置之间移动, 在所述容器(12B,12C)中的水并且在上部位置关闭流动开口(18)。
    • 3. 发明公开
    • PROCEDE DE CARTOGRAPHIE EN TEMPS REEL D'UNE DISTRIBUTION DE PHOTONS DANS UN SITE
    • VERFAHREN ZUR ECHTZEIT-ABBILDUNG EINER VERTEILUNG VON PHOTONEN AN EINEM ORT
    • EP2859380A1
    • 2015-04-15
    • EP13729676.0
    • 2013-06-11
    • Institut de Radioprotection et de Sûreté Nucléaire
    • PANZA, FabienGURRIARAN, Rodolfo
    • G01T1/169G01T7/00
    • The invention concerns a method of real-time mapping of a presence distribution of a source of photons in a site, the method comprising the steps consisting of measuring (100), at a plurality of measurement points, a photon flux in an energy bandwidth determined with a spectrometric detector, and noting the geographical co-ordinates of said point, and, at each measurement point, - from a response function of the detector, and information on the site, establishing a distribution of origins (200) of the photons around the measurement point, - from the distributions, representing (300), on a map of the site, a distribution of origin of photons, the method further comprising, for each measurement point starting from the second, a step (250) prior to the representing step (300), during which the distributions of origins of the photons around the current measurement point are correlated with those of previous measurement points.
    • 本发明涉及一种对现场光子源的存在分布进行实时映射的方法,该方法包括以下步骤:在多个测量点处测量(100)光能通量, 宽度由光谱测定器确定,并注意到所述点的地理坐标,并且在每个测量点, - 根据检测器的响应函数和站点上的信息,建立起始点(200)的分布 在测量点周围的光子,从表示(300)的分布,在场地的地图上,光子原点的分布,该方法还包括对于从第二步开始的每个测量点,先前的步骤(250) 到代表步骤(300),在该步骤期间,当前测量点周围的光子的原点分布与先前测量点的分布相关。