首页> 外文会议>Geothermal Resources Council Annual Meeting >Collab Fracture Characterization: Preliminary Results from the Modeling and Flow Testing of Experiment 1
【24h】

Collab Fracture Characterization: Preliminary Results from the Modeling and Flow Testing of Experiment 1

机译:结痂骨折表征:实验1的模型和流动测试初步结果1

获取原文

摘要

The EGS Collab project is developing ~10-20 m-scale field sites where fracture stimulation and flow models can be validated against controlled, small-scale, in-situ experiments. At the first experimental site, a hydraulic fracture will be created in metamorphic rock at the 4850 level in the former Homestake Mine. The experimental concept is for fracturing to be initiated at an injection well and continue until it intersects a production well approximately 10 meters away. Initial step-pressure flow testing of the fracture are to be performed to describe pressure-aperture-flow relationships. The flow field between the injector and producer boreholes will be characterized using a series of forced gradient dipole tracer tests. A number of fracture characterization models have been used to assist in the design of the tracer tests. The tracer test program will use conservative, sorbing, and particulate tracers, as well as sampling for radon gas to describe the fracture surface area (i.e., potential heat transfer area), flow pathway distribution, and volume. Tracer concentration at the production well (i.e. break through curves) will be measured using a series of inline sensors, liquid sampling devices, filtering of the effluent, and the measuring of gas concentrations in the effluent. Tracer monitoring data will be compared against results from a collection of numerical simulators developed at U.S. national laboratories and universities for the purpose of validating these flow and transport models. Ultimately these same models will be used to predict the heat transfer characteristics of the fracture and will be compared to a thermal characterization field test where cold water will be injected at the injection well and the temperature will be measured at the production well. This paper discusses the early tracer transport model predictions and parameters sensitivity that affect the tracer breakthrough curves at the production well.
机译:EGS Collab项目正在开发〜10-20米级的场地,可以验证断裂刺激和流量模型,防止受控,小规模的原位实验。在第一个实验部位,将在前宿主矿的4850级的变质岩石中产生液压骨折。实验概念用于在注射井中发起压裂并继续直到与距离大约10米的生产相交。将进行骨折的初始步进压力流动测试以描述压力孔径 - 流动关系。喷射器和生产者钻孔之间的流场将使用一系列强制梯度偶极性示踪试验表征。已经使用许多裂缝表征模型来帮助设计示踪剂测试。示踪剂测试程序将使用保守,吸附和微粒示踪剂,以及用于描述氡气的采样,描述裂缝表面积(即潜在的传热区域),流动路径分布和体积。生产井的示踪剂浓度(即通过曲线断裂)将使用一系列内联传感器,液体采样装置,流出物过滤,以及流出物中的气体浓度的测量来测量。将与在美国国家实验室和大学开发的数值模拟器集合的结果进行比较示踪监测数据,以验证这些流动和运输模式。最终将用于预测裂缝的传热特性,并将与热表征场测试进行比较,其中冷水将在注射孔中注入冷水,并且将在生产孔处测量温度。本文讨论了早期的示踪运输模型预测和参数灵敏度,影响生产井的追踪曲线的追踪曲线。

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