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THE NEUTRON DANCE: A QUEST FOR RELIABLE CASED-HOLE NEUTRON DATA FOR HIGH-TEMPERATURE STEAMFLOOD SURVEILLANCE

机译:中子舞蹈:寻求高温蒸汽监测的可靠套管中子数据

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The Midway Sunset oil field in the San Joaquin Valley of California is one of the United States’ largest fields, having produced approximately three billion barrels of oil out of various reservoirs. Many of these reservoirs contain heavy oil, requiring recovery by steam to reduce the viscosity of the oil and allow it to flow. In steamflood operations, monitoring the steam’s distribution and behavior is necessary for effective steam management and identification of bypassed oil. Cased-hole neutron logs are critical to this surveillance and are acquired throughout the life of the steamflood operation using cased observation wells. Each subsequent cased-hole neutron porosity is compared to the original open-hole neutron porosity to determine the increase in steam saturation and corresponding decrease in oil saturation that has taken place since the well was drilled. These logs are used to define current steam-oil contacts throughout the field, allowing reservoir teams to modify steam injection accordingly. There are many cased-hole neutron tools available, but they vary in tool characteristics, benefits and costs. Some tools can only be run in temperatures lower than 300 degrees Fahrenheit (degF), while steam chest temperatures can reach 350 degF or more. This constraint leaves fewer tool options for some wells, and the data from these tools has not always been reliable. To better define the quality, limits and value of this data, we test multiple high-temperature neutron tools, including both chemically-sourced and electrically-sourced tools, by running them in a new well immediately after completion to compare them directly to the open-hole neutron log and to each other. We analyze the data quality, benefits and costs of the different tools and design a plan for our future surveillance.
机译:加州圣Joaquin Valley的中行落日油田是美国最大的领域之一,生产了大约30亿桶的油箱。这些储层中的许多含有重油,需要通过蒸汽恢复以降低油的粘度并使其流动。在蒸汽机运营中,监测蒸汽的分布和行为是有效的蒸汽管理和旁路油的识别所必需的。套管孔中子日志对这种监视至关重要,并且在整个套管观察井中的整个寿命中获取。将每个随后的套管中子孔隙率与原始开孔中子孔隙率进行比较,以确定自钻井井以来发生的蒸汽饱和度的增加和相应的油饱和度降低。这些日志用于在整个场中定义电流蒸汽油触点,允许水库团队相应地修改蒸汽喷射。有许多套管中子工具可用,但它们的刀具特征,优惠和成本各不相同。一些工具只能在低于300华氏度(DEGF)的温度下运行,而蒸汽胸部温度可以达到350°或更大。此约束对某些井的工具选项留下了更少的工具选项,并且来自这些工具的数据并不总是可靠的。为了更好地定义该数据的质量,限制和价值,我们通过在完成后立即在新的井中运行它们以便将它们直接与开放式进行比较后,测试多种高温中子工具,包括化学源和电源的工具。 - 井中的日志和彼此。我们分析了不同工具的数据质量,优惠和成本,并为未来监视设计了一个计划。

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