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    • 3. 发明授权
    • ANNULAR FLUID MANIPULATION IN LINED TUBULAR SYSTEMS TO ENHANCE COMPONENT MECHANICAL PROPERTIES AND FLOW INTEGRITY
    • 环形管系统中的环形流体操纵以提高零部件的力学性能和流动完整性
    • EP1194822B1
    • 2008-05-21
    • EP00939852.0
    • 2000-06-13
    • Insituform Technologies, Inc.
    • TAYLOR, Jack, Curtis
    • G05D7/00G01M3/28F17D5/04
    • G05D11/03F17D5/04G05D21/00Y10T137/0419Y10T137/0424Y10T137/5762
    • A method of treating fluids in an annulus (18), comprising the steps of: providing a fluid-circulation annulus (18) between a host tubular (10) and a liner (17) therein; and manipulating fluids in the annulus (18) so that the relative proportions of fluid components in the annular fluid correspond to the relative permeation rates of the fluid components from the bore to the annulus (18). The method may further comprise the steps of: detecting an undesired fluid in the annulus (18); and manipulating the annular fluids in response to the undesired fluid, so that the relative proportions of fluid components in the annular fluid, including the undesired fluid, correspond to the relative permeation rates of the fluid components from the bore to the annulus (18). In a case where the undesired fluid has potential for harm to the host tubular (10), the manipulating step may reduce the potential for harm.
    • 一种处理环形空间(18)中的流体的方法,包括以下步骤:在主管(10)和其中的衬管(17)之间提供流体循环环形空间(18) 和操纵环形空间(18)中的流体,使得环形流体中流体组分的相对比例对应于流体组分从孔到环形空间(18)的相对渗透速率。 该方法可以进一步包括以下步骤:检测环形空间(18)中的不期望的流体; 并响应于不希望的流体操纵环形流体,使得环形流体中的流体组分(包括不希望的流体)的相对比例对应于流体组分从孔到环形空间(18)的相对渗透速率。 在不需要的流体有可能损害主体管(10)的情况下,操作步骤可以降低潜在的危害。
    • 6. 发明公开
    • Chemical distribution method
    • 化工产品分销方法
    • EP1004814A3
    • 2001-12-12
    • EP99309349.1
    • 1999-11-23
    • THE BOC GROUP, INC.
    • Pozniak, Peter M.Roberts, Benjamin R.
    • F17D1/00F17D5/02F17D5/04F17D5/06
    • F17D1/08Y10T137/5762Y10T137/7287Y10T137/8158
    • A valve manifold box system (1) and method in which one or more dispense units (2) dispense chemical to a plurality points of use. A fluid circuit (3) is provided with valve manifolds (12,14,16,18) connected in series by double walled conduits (20,22,24,26,28) known as containment pipes. The fluid circuit is either in the form of a loop of a series of valve manifolds alternating with double walled piping so that each valve manifold is fed with chemical at opposite ends. Alternately, two dispense units could be connected to the end of an in-line type of fluid circuit. The valve manifolds are contained within valve boxes (33,34,36,38) and the ends of the containment pipes are connected to the valve boxes. In this manner a leak in either the valve manifolds or the containment pipes collects within the valve boxes. Leak detectors are provided in the valve boxes (30,33,34,36,38) and upon the sensing of a leak, the potentially leaking valve manifold as well as the associated, adjacent containment pipes feeding such valve manifold are isolated by isolation valves (31,32,40,42,44,46,48,50,52,54). In this manner, the remaining valve manifolds and hence, the points of use are above to continually be fed with chemical while the problem is investigated.