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    • 16. 发明申请
    • MONITORING INJECTED NONHYDROCARBON AND NONAQUEOUS FLUIDS THROUGH DOWNHOLE FLUID ANALYSIS
    • 通过井下流体分析监测注射的非氢氟酸和非水溶性液体
    • US20080135237A1
    • 2008-06-12
    • US11753863
    • 2007-05-25
    • Francois DubostOliver C. MullinsLalitha VenkataramananChristopher HarrisonNeil BostromRobert Kleinberg
    • Francois DubostOliver C. MullinsLalitha VenkataramananChristopher HarrisonNeil BostromRobert Kleinberg
    • E21B47/06
    • E21B47/10E21B41/0064Y02C10/14
    • A method of monitoring a nonhydrocarbon and nonaqueous fluid injected into the earth's subsurface through a first wellbore that involves positioning a fluid analysis tool within a second wellbore and determining the presence of the injected nonhydrocarbon and nonaqueous fluid by making a measurement downhole on the injected nonhydrocarbon and nonaqueous fluid using the fluid analysis tool. Also a related method of enhancing hydrocarbon production from a subsurface area having first and second wellbores that involves injecting a nonhydrocarbon and nonaqueous fluid into the subsurface through the first wellbore, positioning a fluid analysis tool within the second wellbore, and determining the presence of the injected nonhydrocarbon and nonaqueous fluid by making a measurement downhole on the injected nonhydrocarbon and nonaqueous fluid using the fluid analysis tool. Further, a related method of determining the relative or absolute quantity of a nonhydrocarbon and nonaqueous fluid injected into the earth's subsurface through a first wellbore that involves positioning a fluid analysis tool within a second wellbore, measuring the near-infrared spectroscopy signature of fluid downhole using the fluid analysis tool, measuring the downhole temperature and pressure using the fluid analysis tool, and estimating a relative or absolute quantity of the injected nonhydrocarbon and nonaqueous fluid within said downhole fluid using the measured near-infrared spectroscopy signature, the temperature, and the pressure to estimate a partial pressure of hydrocarbon constituents of the downhole fluid.
    • 一种通过第一井筒监测注入到地球表层内的非烃和非水液体的方法,该第一井筒涉及将流体分析工具定位在第二井筒内,并且通过在注入的非烃上进行测量并确定注入的非烃类和非水性流体的存在,以及 非流体使用流体分析工具。 还有一种从具有第一和第二井眼的地下区域提高烃生产的相关方法,其包括通过第一井孔将非烃和非水流体注入到地下,将流体分析工具定位在第二井眼内,并确定注入的 通过使用流体分析工具在注入的非烃和非水溶液上进行井下测量来测量非烃和非水的流体。 此外,一种确定通过第一井筒注入地球表层内的非烃和非水流体的相对或绝对量的相关方法,其涉及将流体分析工具定位在第二井筒内,使用以下方法测量井下流体的近红外光谱特征: 流体分析工具,使用流体分析工具测量井下温度和压力,并且使用所测量的近红外光谱特征,温度和压力估计所述井下流体内注入的非烃和非水性流体的相对或绝对量 以估计井下流体的烃组分的分压。
    • 20. 发明授权
    • Drilling system using a pocket hole joint method
    • 钻孔系统采用口袋孔接法
    • US09180529B1
    • 2015-11-10
    • US13874663
    • 2013-05-01
    • Christopher Harrison
    • Christopher Harrison
    • B23B47/28B23B45/14B23B51/00
    • B23B47/28B23B51/00B23B51/0054B23B2247/08B23B2247/10B23B2260/0482B23B2260/136B23B2265/326
    • A drilling system for joining pieces of wood using a pocket hole joint method features a first wood block having a planar first wood block mating surface and a second wood block having as planer second wood block mating surface and a second wood block drilling surface. A pocket having a cylindrical side wall and a planar front wall is angularly located on the second wood block drilling surface. The system features a drilling unit having a cylindrical outer sleeve and a cylindrical inner sleeve with a cylindrical shaft located in the inner sleeve. A drill bit is located on a shaft first end. A drill is activated to rotate the drill bit while a user applies force to the drill for pushing the drill bit through the second wood block into the first wood block.
    • 一种用于通过口袋孔接合方法连接木材的钻孔系统的特征在于具有平面的第一木块配合表面的第一木块和具有平铺第二木块配合表面的第二木块和第二木块钻孔表面。 具有圆柱形侧壁和平面前壁的口袋成角度地位于第二木块钻孔表面上。 该系统具有钻孔单元,其具有圆柱形外套筒和具有位于内套筒中的圆柱形轴的圆柱形内套筒。 钻头位于轴的第一端。 当用户向钻机施加力以将钻头推动穿过第二木块进入第一木块时,钻头被激活以旋转钻头。