首页> 外文期刊>MethodsX >An experimental drilling apparatus used for evaluating drilling risks related to natural gas hydrate
【24h】

An experimental drilling apparatus used for evaluating drilling risks related to natural gas hydrate

机译:一种用于评估与天然气水合物相关的钻井风险的实验钻井装置

获取原文
       

摘要

Some countries are trying to drill and exploit natural gas hydrate (NGH). However, the disturbance effects of drilling on the stability of NGH-bearing sediments are unclear. There are still few experimental apparatuses on this issue, and existing experimental apparatuses cannot comprehensively simulate the drilling process as well. In order to fill this gap in prior studies, an experimental drilling apparatus used for evaluating drilling risks related to NGH was developed. The apparatus consists of a high-pressure vessel with a drilling system, a drilling fluid injection system, a drilling fluid treatment system, and a data acquisition system. Hydrates can form in the high-pressure vessel placed inside a walk-in cold room. The drilling fluid can be cooled to the desired temperature by the drilling fluid treatment system and be injected into the drilling system by the drilling fluid injection system. The drilling system can simulate the comprehensive drilling process, including drilling feed, trip up & down operations, drilling fluid circulation, etc. 48 thermometers were inserted into the high-pressure vessel from the bottom. The thermometers uniformly distribute in the high-pressure vessel, and they could quickly and accurately measure the hydrate phase change process under high-pressure and low-temperature conditions.?Simulate the drilling process in hydrate-bearing sediments.?Evaluate the influence of drilling parameters (drilling fluid temperatures, drilling fluid circulation rates, etc.) on hydrate dissociation characteristics around the wellbore.?Simultaneously evaluate the heat and mass transfer process in hydrate-bearing sediments during the drilling process.
机译:有些国家正在努力钻探和利用天然气水合物(NGH)。然而,钻孔对NGH轴承沉积物稳定性的干扰作用尚不清楚。在这个问题上仍有很少的实验装置,并且现有的实验装置也不能全面模拟钻井过程。为了在现有研究中填补这种差距,开发了一种用于评估与NGH相关的钻井风险的实验钻井设备。该装置包括具有钻井系统的高压容器,钻井液喷射系统,钻井液处理系统和数据采集系统。水合物可以在放置在步入式冷室内的高压容器中形成。钻井液可以通过钻井液处理系统冷却到所需温度,并通过钻井液喷射系统注入钻井系统中。钻井系统可以模拟综合钻井过程,包括钻井进给,跳闸和下降操作,钻孔流体循环等。48温度计从底部插入高压容器中。温度计在高压容器中均匀地分布,它们可以在高压和低温条件下快速准确地测量水合物相变过程。将钻井沉积物中的钻井过程造成钻井过程。钻孔的影响井眼周围水合物离解特性的参数(钻井液温度,钻井液循环率等)。钻井过程中耐水渣沉积物中的热量和传质过程。

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