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    • 7. 发明授权
    • Foreign-object offshore processing system
    • 对外海洋加工系统
    • US09303378B2
    • 2016-04-05
    • US14002394
    • 2011-03-02
    • Shinya IshikawaTakashi SaitoKyoichi ShimizuMasaki SuzukiKota ShiodaMasaru Ieyasu
    • Shinya IshikawaTakashi SaitoKyoichi ShimizuMasaki SuzukiKota ShiodaMasaru Ieyasu
    • E02B5/08E02B8/02E02B9/04E03B1/02E02B1/00
    • E02B9/04E02B1/006E02B5/08E02B5/085E02B8/023E03B1/02
    • Provided is foreign-object offshore processing system, including foreign-object inflow prevention devices configured to prevent inflow of foreign object into water intake and provided at interval. Each device includes: collecting pontoon serving as inlet of foreign object and provided to float on sea surface of pool defined by curtain wall, the pool being for drawing cooling sea water from sea toward water intake; bottom net spreading toward sea bottom on upstream side of water intake channel in triangular shape with collecting pontoon as vertex; longitudinal net fixed to two floating chains in suspended manner to spread out in surface area of sea, the two floating chains extending on sea surface from collecting pontoon in correspondence with two sides extending from vertex of triangular shape forming bottom net; and lateral net spreading between bottom net and at least portion of longitudinal net, wherein horizontal net cover covers interval between adjacent devices.
    • 提供的是外来物体海洋处理系统,包括防止异物进入进水并间隔设置的异物流入防止装置。 每个装置包括:收集作为异物入口的浮筒,并设置在浮动在幕墙限定的游泳池的海面上,该池用于将海水从海水中抽出,进入吸水口; 底部网向三角形进水通道上游侧向海底扩散,收集浮桥为顶点; 纵向网以悬挂的方式固定在两个浮动链上,以扩散到海面,两条浮动链从收集浮船延伸,对应于从三角形形成底网的顶点延伸的两侧; 以及底网和纵向网的至少部分之间的横向网扩展,其中水平网盖覆盖相邻设备之间的间隔。
    • 9. 发明申请
    • DEMAND MANAGEMENT SYSTEM FOR FLUID NETWORKS
    • 流体网络需求管理系统
    • US20140379143A1
    • 2014-12-25
    • US14236616
    • 2012-08-01
    • Rubicon Research Pty Ltd
    • David John AughtonSumith Choy
    • G05D7/06
    • G05D7/0623E03B1/00E03B1/02G05B13/048G05B15/02G05D7/0635G05D7/067
    • The invention provides a method of demand management for fluid networks. The method includes the steps of providing a computer controlled fluid network for delivery of fluid to at least one customer (14), maintaining a real time database (16) within the computer controlled fluid network of predetermined parameters, requesting a flow rate and time of delivery of said fluid from the fluid network through a user interface (22) to a customer (20), determining, using predetermined parameters from the real time database (16), the availability (24) of providing delivery of fluid from the fluid network to the customer (14) based on hydraulic capacity of the fluid network, and, if the hydraulic capacity is available, calculating parameters (38) using the real time database (16) to deliver fluid to the customer (14) through the computer controlled fluid network.
    • 本发明提供了一种流体网络的需求管理方法。 该方法包括以下步骤:提供用于将流体输送到至少一个顾客(14)的计算机控制的流体网络,将计算机控制的流体网络内的实时数据库(16)保持在预定参数内,请求流量和时间 将来自流体网络的所述流体通过用户界面(22)输送到客户(20),使用来自实时数据库(16)的预定参数确定从流体网络提供流体的可用性(24) 基于流体网络的液压能力向客户(14)提供流体网络的液压能力,并且如果液压容量可用,则使用实时数据库(16)计算参数(38)以通过计算机控制的流体向客户(14)输送流体 流体网络。