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    • 6. 发明授权
    • Single point and fiber optic temperature measurement for correction of a gas column weight in a well
    • 单点和光纤温度测量,用于校正井中气柱重量
    • US07360412B2
    • 2008-04-22
    • US11356466
    • 2006-02-16
    • David O. JohnsonJose SierraChristopher David
    • David O. JohnsonJose SierraChristopher David
    • E21B47/06E21B47/00
    • E21B47/06G01L19/0092
    • Fluid column weight correction using discrete point and fiber optic temperature measurement. A method for determining pressure at a distal end of a fluid column in a well includes the steps of: dividing the fluid column into multiple segments; determining a temperature of each segment; and determining a pressure and density for each segment. Another method includes the steps of: determining the temperature of each segment by measuring a temperature in the well near a proximal end of the fluid column, and using the measured temperature in conjunction with a thermal wellbore model to generate a temperature profile of the fluid column. Another method includes the steps of: causing a pressure change in the fluid column; recording multiple pressure measurements during the pressure change; and generating a temperature profile of the fluid column for each of the pressure measurements.
    • 流体柱重量校正使用离散点和光纤温度测量。 用于确定井中流体柱的远端处的压力的方法包括以下步骤:将流体塔分成多个段; 确定每个段的温度; 并确定每个段的压力和密度。 另一种方法包括以下步骤:通过测量靠近流体柱的近端的井中的温度来确定每个区段的温度,并结合热井眼模型使用测量的温度以产生流体柱的温度分布 。 另一种方法包括以下步骤:引起流体柱中的压力变化; 在压力变化期间记录多次压力测量; 以及为每个压力测量产生流体柱的温度曲线。
    • 7. 发明申请
    • Single point and fiber optic temperature measurement for correction of a gas column weight in a well
    • 单点和光纤温度测量,用于校正井中气柱重量
    • US20070186640A1
    • 2007-08-16
    • US11356466
    • 2006-02-16
    • David JohnsonJose SierraChristopher David
    • David JohnsonJose SierraChristopher David
    • E21B47/06
    • E21B47/06G01L19/0092
    • Fluid column weight correction using discrete point and fiber optic temperature measurement. A method for determining pressure at a distal end of a fluid column in a well includes the steps of: dividing the fluid column into multiple segments; determining a temperature of each segment; and determining a pressure and density for each segment. Another method includes the steps of: determining the temperature of each segment by measuring a temperature in the well near a proximal end of the fluid column, and using the measured temperature in conjunction with a thermal wellbore model to generate a temperature profile of the fluid column. Another method includes the steps of: causing a pressure change in the fluid column; recording multiple pressure measurements during the pressure change; and generating a temperature profile of the fluid column for each of the pressure measurements.
    • 流体柱重量校正使用离散点和光纤温度测量。 用于确定井中流体柱的远端处的压力的方法包括以下步骤:将流体塔分成多个段; 确定每个段的温度; 并确定每个段的压力和密度。 另一种方法包括以下步骤:通过测量靠近流体柱的近端的井中的温度来确定每个区段的温度,并结合热井眼模型使用测量的温度以产生流体柱的温度分布 。 另一种方法包括以下步骤:引起流体柱中的压力变化; 在压力变化期间记录多次压力测量; 以及为每个压力测量产生流体柱的温度曲线。