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    • 2. 发明授权
    • Fat-line towed-array force measurement apparatus
    • 脂肪线牵引力测量仪
    • US06378383B1
    • 2002-04-30
    • US09592509
    • 2000-06-12
    • An-Keun Peter LeeMichael R. WilliamsTodd E. Whitaker
    • An-Keun Peter LeeMichael R. WilliamsTodd E. Whitaker
    • G01L126
    • G01L5/103G01V1/201
    • An apparatus for measuring tensile and bending forces applied to a fat-line towed-array. Tension sensors are configured within a modified fat-line towed-array bulkhead to measure axial tension applied to the front of the fat-line towed-array, while bending sensors mounted further downstream along the fat-line canister interior walls, measure the bending load. The sensor outputs are encoded and digitized before transmitted through a tow line for further data conditioning and processing. The tension and bending sensor data provide information to evaluate the force exerted on the towed-array, allowing a measure of the deployment capability. Measurements taken at various fluid flow rates provide data regarding deployment effectiveness.
    • 用于测量施加到脂肪线拖曳阵列的拉伸和弯曲力的装置。 张力传感器被配置在改进的脂肪线拖曳的阵列隔板内,以测量施加到脂肪线牵引阵列的前部的轴向张力,同时沿着脂肪罐内壁进一步下游的弯曲传感器测量弯曲载荷 。 传感器输出在通过拖线传输之前进行编码和数字化,用于进一步的数据调节和处理。 张力和弯曲传感器数据提供信息以评估施加在牵引阵列上的力,从而可以测量部署能力。 在各种流体流速下进行的测量提供了有关部署有效性的数据。
    • 4. 发明授权
    • Breakaway joint for subsea components
    • 海底部件分离接头
    • US06561714B1
    • 2003-05-13
    • US09716525
    • 2000-11-20
    • Michael R. WilliamsFrank M. Pattee
    • Michael R. WilliamsFrank M. Pattee
    • F16B100
    • F16L23/036Y10T403/11
    • A breakaway joint for releasably connecting a first component to a second component, comprises a first member to which the first component is attached; a second member to which the second component is attached; a plurality of columnar members each having first and second ends, the first ends being coupled to the first member; and a mechanism engaged by both the second member and the second ends of the columnar members for latching the first member to the second member and for converting a tensile load acting between the first and second members into a compressive load acting on the columnar members; wherein when the tensile load reaches a predetermined level, the columnar members will buckle and the latching means will release the first member from the second member.
    • 用于将第一部件可释放地连接到第二部件的分离接头包括第一部件,第一部件被附接到第一部件; 附接有第二部件的第二部件; 多个柱状构件,每个柱状构件具有第一和第二端,所述第一端联接到所述第一构件; 以及由所述柱状构件的所述第二构件和所述第二端两者啮合的机构,用于将所述第一构件锁定到所述第二构件并将作用在所述第一构件和所述第二构件之间的拉伸载荷转换成作用在所述柱状构件上的压缩载荷; 其中当所述拉伸载荷达到预定水平时,所述柱状构件将弯曲并且所述闩锁装置将使所述第一构件从所述第二构件释放。
    • 5. 发明授权
    • Method for obtaining base oil and removing impurities and additives from used oil products
    • 获取基础油并从废油产品中除去杂质和添加剂的方法
    • US06174431B1
    • 2001-01-16
    • US09318711
    • 1999-05-26
    • Michael R. WilliamsJan Krzykawski
    • Michael R. WilliamsJan Krzykawski
    • C10M17500
    • C10M175/0058C10M175/0016
    • A method for pretreating and re-refining used oil that requires only moderate heat and only one re-refining step. The pretreatment involves mixing the used oil with a basic solution and optionally a phase transfer catalyst. The phase transfer catalyst aids the chemical reaction which allows removal of impurities in used oil. The basic solution preferably includes more than one base. The used oil, basic solution and phase transfer catalyst are mixed under low heat. The pretreated oil is then mixed with liquid propane in a non-turbulent manner, such as by use of a globe valve or orbit valve. The mixture of used oil and liquid propane are then placed into an extraction vessel and impurities are allowed to settle out of the oil and propane mixture. Heavy fraction may be removed from the extraction vessel. Preferably, a second vessel called a settling vessel will be used to cause further settling of impurities out of the used oil. Light fraction is produced which may be re-refined to produce base oil. The heavy fraction may be used for asphalt production. The invented method and system removes interfering amounts of metals, additives and additive derivative products from used oil and produces useful base oil.
    • 用于预处理和再精炼用过的油的方法,其仅需要中等热量,并且仅需一次再精炼步骤。 预处理包括将废油与碱性溶液和任选的相转移催化剂混合。 相转移催化剂有助于除去废油中的杂质的化学反应。 基本溶液优选包括多于一个碱。 所用的油,碱性溶液和相转移催化剂在低热下混合。 然后将预处理的油以非湍流的方式与液体丙烷混合,例如通过使用球阀或轨道阀。 然后将废油和液态丙烷的混合物放入萃取容器中,使杂质从油和丙烷混合物中沉淀出来。 重馏分可以从萃取容器中除去。 优选地,称为沉降容器的第二容器将用于使杂质进一步从废油中沉淀出来。 产生轻馏分,其可以重新精炼以生产基础油。 重馏分可用于沥青生产。 本发明的方法和系统从废油中除去金属,添加剂和添加剂衍生物的干扰量,并产生有用的基础油。
    • 7. 发明授权
    • Dual radially locked subsea housing
    • 双径向锁定海底外壳
    • US5299643A
    • 1994-04-05
    • US968755
    • 1992-10-30
    • Vincent H. VetterShiva P. SingeethamWilliam A. ValkaMichael R. Williams
    • Vincent H. VetterShiva P. SingeethamWilliam A. ValkaMichael R. Williams
    • E21B33/035E21B33/043
    • E21B33/043E21B33/035
    • A radially locked subsea housing includes a low pressure housing having upper and lower radial lock regions, each of which regions includes a radial interference surface that is between vertical to only slightly tapered in orientation. A high pressure housing also has upper and lower radial lock regions, each of which regions includes a radial interference surface that is slightly greater in radial diameter than the corresponding interference surface of the low pressure housing. The interference surfaces of the upper and lower radial lock regions form upper and lower interference fits, respectively, between the high pressure and low pressure housings when the housings are assembled subsea. The low pressure housing further includes a landing shoulder defining a landing surface that is substantially more tapered in orientation than are the interference surfaces of the upper and lower radial lock regions, and the high pressure housing includes a landing shoulder defining a landing surface formed to land on the landing surface of the low pressure housing when the housings are assembled subsea. In an alternative embodiment, a zero-clearance, axially extended fit is employed at one or both of the radial lock regions.
    • 径向锁定的海底壳体包括具有上径向锁定区域和下径向锁定区域的低压壳体,每个区域包括在垂直方向上仅略微渐缩的径向干涉表面。 高压壳体还具有上和下径向锁定区域,每个区域包括径向干涉表面,该径向干涉表面的径向直径小于低压壳体的相应干涉面。 上壳体和下径向锁定区域的干涉表面在壳体组装海底时分别形成高压和低压壳体之间的上下干涉配合。 所述低压外壳还包括着陆台肩,所述着陆台肩限定了与所述上径向锁定区域和所述下径向锁定区域的所述干涉表面相比基本上在取向上更加锥形的着陆表面,并且所述高压壳体包括限定着陆面 当壳体组装在海底时,在低压壳体的着陆面上。 在替代实施例中,在径向锁定区域中的一个或两个处采用零间隙轴向延伸配合。
    • 9. 发明授权
    • Constant motion swivel seal assembly
    • 恒定旋转密封组件
    • US4626003A
    • 1986-12-02
    • US740710
    • 1985-06-03
    • Michael R. WilliamsNeil G. Weber
    • Michael R. WilliamsNeil G. Weber
    • F16L17/073F16L27/08F16L17/06
    • F16L17/073F16L27/0828
    • A constant motion swivel seal assembly having greatly improved useful life without leakage of fluid from a swivel joint. The seal assembly includes one or more annular sealing rings rotatably positioned between an outer joint member and an inner joint member. A wedge-shaped anti-extrusion ring mounted between the annular sealing ring and a gap between the inner and outer joint members prevents the sealing ring from extrusion into the gap. The anti-extrusion ring has a relatively large surface area in contact with the inner joint member and a relatively small surface area in contact with the outer joint member so the anti-extrusion ring remains in substantially the same position relative to the inner joint member. The relatively small area of contact between the outer joint member and the anti-extrusion ring allows the anti-extrusion ring to slide over the surface of the outer joint member as the outer joint member rotates relative to the inner joint member. Hoop stress also prevents fluid pressure from forcing the anti-extrusion ring radially outward against the outer joint member while fluid pressure axially presses the anti-extrusion ring tightly against an end portion of the inner joint member. A relatively small area of contact between the sealing ring and the inner member and a larger area of contact between the sealing ring and the outer member allows the sealing ring to slide over the inner member and rotate with the outer member.
    • 恒定运动的旋转密封组件具有大大改善的使用寿命而不会从旋转接头泄漏流体。 密封组件包括可旋转地定位在外接头构件和内接头构件之间的一个或多个环形密封环。 安装在环形密封环与内外接头构件之间的间隙处的楔形防挤压环防止密封环挤出到间隙中。 抗挤压环具有与内接头构件接触的相对大的表面积和与外接头构件接触的相对小的表面积,因此抗挤压环相对于内接头构件保持在基本相同的位置。 当外接头构件相对于内接头构件旋转时,外接头构件和抗挤压环之间相对较小的接触面允许抗挤压环在外接头构件的表面上滑动。 环向应力还​​防止流体压力将抗挤压环径向向外压靠在外接头构件上,同时流体压力将抗挤压环轴向地压靠在内接头构件的端部上。 密封环和内部构件之间相对较小的接触面积以及密封环与外部构件之间较大的接触面积允许密封环在内部构件上滑动并与外部构件一起旋转。