首页> 外国专利> Device for purifying sea water, comprises a pair of modules for filtration of seawater immersed in the marine medium, and a low pressure cylinder block comprising pressurizing valves with multiple sides and low pressure chambers

Device for purifying sea water, comprises a pair of modules for filtration of seawater immersed in the marine medium, and a low pressure cylinder block comprising pressurizing valves with multiple sides and low pressure chambers

机译:用于净化海水的装置,包括一对用于过滤浸入海洋介质中的海水的模块,以及低压缸体,其包括具有多个侧面和低压腔的增压阀

摘要

The device for purifying sea water, comprises a pair of modules for filtration of seawater immersed in the marine medium, and a low pressure cylinder block comprising pressurizing valves with multiple sides and low pressure chambers. The filtration modules (10a, 10b) are connected to each other by a motorized transmission to move the modules according to alternative movements of plunging and rising in the marine medium in phase opposition. Each filtration module comprises a high pressure chamber equipped with an inlet for selective admission of sea water to be filtered inside the chamber. The device for purifying sea water, comprises a pair of modules for filtration of seawater immersed in the marine medium, and a low pressure cylinder block comprising pressurizing valves with multiple sides and low pressure chambers. The filtration modules (10a, 10b) are connected to each other by a motorized transmission to move the modules according to alternative movements of plunging and rising in the marine medium in phase opposition. Each filtration module comprises a high pressure chamber equipped with an inlet for selective admission of sea water to be filtered inside the chamber, a semi-permeable membrane for filtering sea water by reverse osmosis, an outlet for recollecting filtered water produced by each membrane contained in the chamber, an outlet for evacuation of salt concentrated seawater and pressurizing valves optionally moved in the chamber rotating along a longitudinal axis for determining a pressure of seawater at the inlet of each membrane. The multiple sides of the valves comprise receiving sides linked to pressurizing sides of the valves to move longitudinally. The receiving sides of the valves are arranged to be subjected to a hydrostatic pressure of the marine medium, and are associated with atmospheric gas tight chamber. The total usage area combined of different receiving sides of the valves has a value greater than the usage area of the pressurizing sides with which receiving sides are linked. A volume of each low-pressure chamber varies along the same direction as the high pressure chamber movement of the receiving and pressurizing sides of the valves. The low pressure cylinder block has an overall transversal dimension less than or equal to the overall transversal dimension of the filtration module with respect to the longitudinal axis. The filtration module delimits the high pressure chamber comprising the pressurizing sides. The different receiving sides of the valves connected to the pressurizing sides of the valves are horizontally directed parallel to the longitudinal axis of the high pressure chamber, are parallel to each other and to the pressurizing sides of the valves, and are orthogonal to the longitudinal axis of the high pressure chamber. The different receiving sides of the valves are fixed to each other to have a total transversal dimension less than the sum of transversal dimension of each receiving side of the valve. The different receiving sides connected to the same pressurizing sides of the valves are superimposed on each other in the longitudinal direction of axis of the high pressure chamber so that the transversal dimension of all receiving sides is equivalent to one of receiving sides. The receiving side and low-pressure side of the pressurizing valves are two opposite parallel sides of the same valves, which are directed horizontally for forming sealing in a cylinder to define the low pressure chamber. The low pressure chambers of filtration modules are connected to each other by a pipe, which balances pressure between the low pressure chambers without pressure drop. Each filtration module is suspended in the marine medium by a suspension cable from the motorized transmission. The longitudinal axis of each pressurizing side and corresponding receiving sides are vertical. The suspension cable is coupled to the valve, which delimits the low pressure chamber. Each low pressure chamber extends over the high pressure chamber. The motorized transmission is suitable for movement of each filtration module between the surface of the marine medium and a maximum depth of 10-30 m, and comprises a renewable energy source chosen from a wind pump and a panel of photovoltaic light sensor. A ratio of usage area of each receiving side on usage area of the pressurizing side is 20-60.
机译:用于净化海水的装置包括:一对用于过滤浸入海洋介质中的海水的模块;以及低压缸体,其包括具有多个侧面和低压腔的增压阀。过滤模块(10a,10b)通过电动传动装置彼此连接,以根据在海洋介质中以相反的方向在水中上升和下降的交替运动来移动模块。每个过滤模块包括一个高压室,该高压室配备有一个入口,用于选择性地使要过滤的海水进入该室内。用于净化海水的装置包括:一对用于过滤浸入海洋介质中的海水的模块;以及低压缸体,其包括具有多个侧面和低压腔的增压阀。过滤模块(10a,10b)通过电动传动装置彼此连接,以根据在海洋介质中以相反的方向在水中上升和下降的交替运动来移动模块。每个过滤模块包括一个高压室,该高压室配备有一个入口,用于选择性地吸收待过滤的海水进入该室内;一个半透膜,用于通过反渗透过滤海水;一个出口,用于回收由其中包含的每个膜产生的过滤水。在该腔室中,有一个用于排空盐浓缩海水的出口,以及可选地在该腔室中移动的加压阀,该腔室沿纵轴旋转,以确定每个膜片入口处的海水压力。阀的多个侧面包括连接到阀的加压侧以纵向移动的接收侧。阀的接收侧被布置成承受海洋介质的流体静压力,并且与大气气密室相关联。阀的不同接收侧组合的总使用面积的值大于与接收侧链接的加压侧的使用面积的值。每个低压腔的容积沿与阀的接收侧和加压侧的高压腔运动相同的方向变化。低压缸体的总横向尺寸相对于纵轴小于或等于过滤模块的总横向尺寸。过滤模块界定了包括增压侧的高压腔。连接到阀的加压侧的阀的不同的接收侧平行于高压室的纵向轴线水平地定向,彼此平行并且与阀的加压侧平行,并且与纵向轴线正交。高压室。阀的不同接收侧彼此固定,以具有小于阀的每个接收侧的横向尺寸之和的总横向尺寸。连接到阀的相同加压侧的不同接收侧在高压室的轴线的纵向方向上彼此叠置,使得所有接收侧的横向尺寸等于接收侧之一。增压阀的接收侧和低压侧是同一阀的两个相对的平行侧,它们被水平定向以在气缸中形成密封以限定低压室。过滤模块的低压腔通过管道相互连接,该管道平衡低压腔之间的压力而不会产生压降。每个过滤模块通过悬挂电缆从电动变速箱悬挂在海洋介质中。每个加压侧和相应的接收侧的纵轴是垂直的。悬架电缆连接到阀,该阀界定了低压腔。每个低压室在高压室上方延伸。电动变速器适用于每个过滤模块在海洋介质表面和最大深度10-30 m之间的移动,并且包括选自风泵和光伏光传感器面板的可再生能源。每个接收侧的使用面积与加压侧的使用面积之比为20-60。

著录项

  • 公开/公告号FR2918364A1

    专利类型

  • 公开/公告日2009-01-09

    原文格式PDF

  • 申请/专利权人 LOPEZ SOCIETE PAR ACTIONS SIMPLIFIEE;

    申请/专利号FR20070004803

  • 发明设计人 LOPEZ FERNAND;LOPEZ ALEXIS;

    申请日2007-07-03

  • 分类号C02F1/44;B01D61/02;B01D63;

  • 国家 FR

  • 入库时间 2022-08-21 19:07:26

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