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    • 4. 发明申请
    • AQUATIC ENERGY STORAGE SYSTEM AND METHOD OF USE THEREOF
    • WO2021255417A1
    • 2021-12-23
    • PCT/GB2021/051448
    • 2021-06-10
    • JDSE LIMITED
    • KNIGHT, Jeremy
    • F03B13/00F03G3/00A01K61/75B63B5/24F05B2240/95F05B2240/97F05B2260/42
    • An aquatic energy storage system (110) is provided for selectably storing and releasing energy. The aquatic energy storage system (110) comprises a buoyant support element (114) submersible below a surface of a body of water (12). The energy storage system (110) also comprises an elongate support element (158) extending from the buoyant support element (114); a platform element (160) spaced-apart from the buoyant support element (114)and which is at or adjacent to the elongate support element (158), so as to at least in part mitigate the effect of waves and/or currents on the aquatic energy storage system (110). The energy storage system (110) also has geostationary location means (116) for geostationarily or substantially geostationarily maintaining one or a plurality of positions of the buoyant support element (114) when sited in the body of water (12). A winch mechanism (118) supportable by the platform element and having a flexible elongate element (144) is provided. The storage system (110) also has a mass element (120) connectable to the flexible elongate element (144); and an electricity generation means (122) which is associated with the winch mechanism (118) for generating electricity based on an in-use vertical or substantially vertical translation of the mass element (120) under gravity into the body of water when the winch mechanism (118) unspools the flexible elongate element (144). The flexible elongate element (144) extends from the buoyant support element (114) such that the flexible elongate element (144) and the mass element (120) together form a stabilisation element for stabilising the in-use aquatic energy storage system in a predetermined orientation and for biasing the aquatic energy storage system (110) towards the predetermined orientation when the aquatic energy storage system (110) is displaced therefrom. At least one of the buoyant support element, elongate support element, geostationary location means, and platform element forms an artificial tidal habitat; and at least one growth promotor associated with the artificial tidal habitat is configured to promote the growth of a marine organism thereon.
    • 7. 发明申请
    • CALIBRATION FLUID AND/OR SAMPLE CONTAINER
    • 校准流体和/或样品容器
    • WO2018069662A1
    • 2018-04-19
    • PCT/GB2016/053167
    • 2016-10-12
    • JDSE LIMITED
    • KNIGHT, TomKNIGHT, Jeremy
    • G01N33/00B01L3/00
    • G01N33/0006B01L3/502B01L2200/12B01L2300/16
    • A calibration fluid container and/or sample fluid container10for fluid containment and which comprises a container body (12) formed from at least first and second mutually engagable container body portions (14). Each container body portion (14) has an internal surface (8) which defines an inner volume. A fluid chamber (38) being devoid of threads and having a smoothed and passivated contiguous chamber surface when in an engaged condition is defined. The container (10) further comprises a fluid port (32) in fluid communication with the fluid chamber (38), the or each said fluid port (32) having a fluid-flow opening on the internal surface of the respective container body portion (14). A method of manufacturing and/or method of reducing dead-space/flow disturbance in such a container is also provided.
    • 校准流体容器和/或样品流体容器10用于流体容纳并且包括由至少第一和第二可相互接合的容器主体部分(14)形成的容器主体(12)。 每个容器主体部分(14)具有限定内部容积的内表面(8)。 限定了当处于接合状态时没有螺纹并且具有平滑且钝化的连续室表面的流体室(38)。 容器(10)还包括与流体腔室(38)流体连通的流体端口(32),所述流体端口或每个所述流体端口(32)在相应容器主体部分的内表面上具有流体流动开口 14)。 还提供了一种减少这种容器中的死空间/流动干扰的制造方法和/或方法。