首页> 外文会议>SPE annual technical conference and exhibition >Semi-analytical model for thermal effect on gas well pressure buildup tests
【24h】

Semi-analytical model for thermal effect on gas well pressure buildup tests

机译:热分析对气井压力累积测试的半分析模型

获取原文

摘要

This paper presents a semi-analytical wellbore/reservoir model that can describe general wellbore effects, especially the thermal effect, on high temperature gas well pressure buildup tests. A numerical simulator has been developed from the model. Using different combinations of wellbore and reservoir parameters, the simulator generated curve shapes that differed with wellbore thermal effects. Many of the curve shapes have been observed in the field. Using the results from this paper, engineers can distinguish the difference between general wellbore effects and reservoir behavior in the pressure data, which will make the interpretation more accurate. Also, with the help of the simulator developed from the model, engineers can effectively design gas well pressure buildup tests by running the simulator to determine the minimum time required to obtain the data not distorted by the wellbore effects. The governing equations of the wellbore model were based on mass, momentum, and energy balances for single-phase gas in one-dimensional space. The gas PVT correlation was also used. Different flow regimes (laminar, transitional, and turbulent) inside the wellbore are modeled for calculating the friction factor. As one boundary condition, a simple analytical reservoir model was connected to the wellbore model at the bottomhole using Duhamel's principle. Heat loss effects accounted for forced-convectional heat transfer inside the tubing, heat conduction between tubing and formation, natural convection and radiation heat transfer of annular fluid, and transient heat flow in the formation. Pressure, temperature, velocity, and gas properties inside the wellbore can be predicted at any depth during an entire pressure buildup test. Variable wellbore storage, momentum, and thermal effects can be simulated.
机译:本文提出了一种半分析井眼/储层模型,该模型可以描述高温气井压力增高测试中的一般井眼效应,尤其是热效应。从该模型开发了数值模拟器。使用井眼和储层参数的不同组合,模拟器生成的曲线形状随井眼热效应而不同。在现场已经观察到许多曲线形状。利用本文的结果,工程师可以在压力数据中区分一般井眼效应和储层行为之间的差异,这将使解释更加准确。此外,借助从​​模型开发的模拟器,工程师可以通过运行模拟器来确定获得不受井眼影响失真的数据所需的最短时间,从而有效地设计气井压力累积测试。井眼模型的控制方程基于一维空间中单相气体的质量,动量和能量平衡。还使用了气体PVT相关性。对井眼内部的不同流态(层流,过渡流和湍流)进行建模,以计算摩擦系数。作为一个边界条件,使用杜哈默尔原理将一个简单的分析储层模型连接至井底的井眼模型。热损失的影响包括油管内部的强制对流热传递,油管与地层之间的热传导,环形流体的自然对流和辐射热传递以及地层中的瞬态热流。在整个压力累积测试期间,可以在任何深度预测井筒内部的压力,温度,速度和气体属性。可以模拟可变的井筒存储,动量和热效应。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号