1) Water Level of Well Bore
井筒水位
2) shaft location
井筒位置
1.
The system can not only determine practicable schemes with expert level but also reasonably evaluate the superiority of these schemes with the comprehensive decision making models and provides an important scientific means for the determination of optimal shaft location.
以人工智能、专家系统和计算机技术、矿井优化理论为基础 ,开发了井筒位置方案设计专家系统和综合优化子系统 ,不仅能够实现具有专家水平的可行方案的初选 ,而且通过综合决策模型能够合理评判各方案的优劣程度 ,为最优井筒位置方案的确定提供了重要的科学手段。
2.
We build up an expert designing system for shaft location schemes with MICROSOFT C6.
0语言开发了适用于立井开拓井田的矿井井筒位置方案设计专家系统。
3) horizontal wellbore
水平井筒
1.
Pressure drop of variable mass flow in perforation completion of horizontal wellbore;
水平井筒射孔完井变质量流动压降规律
2.
Experimental research on flow pattern transition of gas-liquid two-phase variable flow in horizontal wellbore;
水平井筒气液两相变质量流动流型转变实验研究
3.
Research on drift-flux model for gas-liquid two-phase flow in horizontal wellbore
水平井筒中气-液两相流漂移模型研究
4) water leakage in shaft
井筒漏水
6) Shaft Hydrate
井筒水合物
1.
The Forecast and Prevention of Shaft Hydrate in Xingcheng Gas Field;
兴城气田井筒水合物预测与防治
补充资料:地下水水位观测(见水位观测)
地下水水位观测(见水位观测)
d ixiashui shuiwei guanee地下水水位观测见水位观测。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条