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    • 2. 发明申请
    • Method for evaluating ply wire anomalies in a tire
    • 评估轮胎中钢丝网异常的方法
    • US20070029027A1
    • 2007-02-08
    • US11196170
    • 2005-08-03
    • George StoilaWilliam DuttShaun ImmelEric OsbornJohn MaloneyDavid SchweitzerNormajean SelbyLuis Cabrera Arevalo
    • George StoilaWilliam DuttShaun ImmelEric OsbornJohn MaloneyDavid SchweitzerNormajean SelbyLuis Cabrera Arevalo
    • B29D30/06
    • B29D30/06B29D2030/0077
    • A method for detecting ply wire anomalies in a tire carcass ply having a plurality of spaced apart ply wires extending across a tire carcass, the method comprising the steps: constructing a green tire carcass in a diametrically expanded toroidal configuration, the carcass comprising a pair of beads, the carcass ply extending from bead to bead, at least one crown layer covering the carcass ply and having a peripheral skirt region; and sidewalls covering the carcass ply and extending from the beads to the crown layer and having edge portions intersecting the crown layer; mounting a wire sensor apparatus proximal to the tire carcass ply, the wire sensor apparatus including a wire sensor for detecting the presence of a proximal ply wire; establishing relative movement between the wire sensor and the tire carcass whereby the plurality of spaced apart ply wires are sequentially placed into proximal relationship with the wire sensor; and generating sequential data from the wire sensor indicative of at least one ply wire parameter of the plurality of spaced apart ply wires.
    • 一种用于检测轮胎胎体帘布层中的帘线异常的方法,所述轮胎胎体帘布层具有延伸穿过轮胎胎体的多个间隔开的帘布层线,所述方法包括以下步骤:构造为径向膨胀的环形构造的生胎轮胎,所述胎体包括一对 珠,胎体帘布层从胎圈延伸到胎圈,至少一个冠层覆盖胎体帘布层并具有周边裙部区域; 以及覆盖所述胎体帘布层并且从所述胎圈延伸到所述冠层并且具有与所述冠层相交的边缘部分的侧壁; 在所述轮胎胎体帘布层附近安装线传感器装置,所述线传感器装置包括用于检测近端帘布层线的存在的线传感器; 建立线传感器和轮胎胎体之间的相对运动,由此多个间隔开的帘布层帘布层依次放置成与线传感器的近端关系; 以及从所述线传感器生成指示所述多个间隔开的层叠线中的至少一个层线参数的顺序数据。
    • 7. 发明申请
    • Novel Arrangement of Denitrification Reactors in a Recirculating Aquaculture System
    • 在循环水产养殖系统中反硝化反应堆的新型布置
    • US20090152192A1
    • 2009-06-18
    • US12333352
    • 2008-12-12
    • James T. Michaels, IIHeather J. HamlinWilliam DuttWilliam GrahamPeter SteinbachBrain BabbittBrian A. Richard, II
    • James T. Michaels, IIHeather J. HamlinWilliam DuttWilliam GrahamPeter SteinbachBrain BabbittBrian A. Richard, II
    • A01K63/04C02F3/30C02F103/20
    • A01K63/04C02F1/20C02F3/302C02F2101/163C02F2103/20C02F2209/003C02F2209/04C02F2209/15C02F2209/40C02F2301/046C02F2303/16C02F2303/24Y10S210/903
    • The present invention relates to a novel arrangement of denitrification reactors for removal of nitrate compounds in a recirculating aquaculture system. The novel arrangement of an aquaculture system of the present invention includes positioning one or more anaerobic denitrification reactors upstream of aerobic nitrification and degassing processes. One aspect of the present invention includes a flow of aqueous medium from aquatic species rearing tanks towards one or more denitrification reactors. Another aspect of the present invention includes flow of aqueous medium from aquatic species rearing tanks to a solids removing filter or mechanical filtration means for removal of solid waste matter or biomass prior to flow of aqueous medium towards one or more denitrification reactors. In a sequence of components comprising a system of the present invention, treated and denitrified aqueous medium exiting one or more denitrification reactors is directed towards a solids removing filter wherein treated and denitrified aqueous medium combines with untreated aqueous medium. Combined untreated aqueous medium and denitrified aqueous medium exits a solids removing filter and is directed towards an aerobic nitrification unit. Aqueous medium exiting the aerobic nitrification unit is degassed and oxygenated and returned to aquatic species rearing tanks. A system of the present invention which utilizes denitrification reactors positioned upstream of aerobic nitrification has advantages over existing aquaculture systems which use denitrification in reduction of nitrate concentrations. This results in greater mitigation of water chemistries and compounds which are harmful to aquatic species and more efficient use and conservation of water resources.
    • 本发明涉及用于在循环水产养殖系统中去除硝酸盐化合物的反硝化反应器的新颖布置。 本发明的水产养殖系统的新颖设计包括将一个或多个厌氧反硝化反应器定位在需氧硝化和脱气过程的上游。 本发明的一个方面包括从水生物种饲养池向一个或多个反硝化反应器的水介质流。 本发明的另一方面包括将水性培养基从水生物种饲养池流入固体除去过滤器或用于在向一个或多个反硝化反应器流动水性介质之前除去固体废物或生物质的机械过滤装置。 在包括本发明的系统的组件序列中,离开一个或多个反硝化反应器的经处理和反硝化的水性介质被引导至固体除去过滤器,其中处理和反硝化的水性介质与未处理的水性介质组合。 组合的未处理的水性介质和反硝化水性介质离开固体除去过滤器并且被引向有氧硝化单元。 离开有氧硝化单元的水性介质脱气并充氧并返回到水生物种饲养池。 利用位于有氧硝化上游的脱氮反应器的本发明的系统具有优于使用反硝化还原硝酸盐浓度的现有水产养殖系统的优点。 这样可以大大减轻对水生物种有害的水化学物质和化合物,更有效地利用和保护水资源。