在化操作之前,井口和形成温度恢复的数值建模
Bo Feng1,2, Long He3, Biao Ou3
1Petroleum Engineering Technology, Institute of SINOPEC Southwest Oil and Gas Branch, Deyang, Sichuan 618000, China.
ACS omega
|August 25, 2025
概括
通过考虑钻井液循环停止后的温度恢复,提高了底孔循环温度 (BHCT) 的预测. 这项研究模拟了热传递,以提高更安全,更高质量的接操作的准确性.
科学领域:
- 石油工程
- 地热工程
- 流体动力学
背景情况:
- 底孔循环温度 (BHCT) 对凝固安全性和质量至关重要.
- 现有的BHCT预测方法往往忽略循环后的温度恢复.
- 在凝固过程中,温度回收对实际的BHCT有很大的影响.
研究的目的:
- 在静态时期分析井口形成的热传递.
- 开发一种短暂温度恢复的数学模型.
- 通过结合温度回收来提高BHCT预测的准确性.
主要方法:
- 分析井口和形成之间的热传递模型.
- 基于模型假设的物理结构的简化.
- 用于数值计算的短暂温度场数学模型的开发.
主要成果:
- 液体循环导致低井口的温度下降,而高井口的温度上升.
- 在静态期间,温度逐渐恢复 (例如,静态外运行24小时后,温度增加26.67°C).
- 长时间的静态周期会减少热交换,但会扩大辐射温度的影响.
- 井口轨迹 (构建/水平截面) 影响温度回收;形成热导率的影响最小.
结论:
- 为了准确的BHCT预测,必须包括操作前的底孔温度恢复.
- 开发的模型为优化水泥加工提供了理论基础.
- 准确的BHCT预测提高了运营安全和质量.
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