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1)  well [英][wel]  [美][wɛl]
井<能>
2)  bond log
[能]固井测井
3)  gas well blowout
[能]气井井喷
4)  oil well productivity
油井产能
1.
Analysis of the factors influencing the oil well productivity of the unltra-low permeability sandstone reservoir in Yanchang Formation of Ordos Basin
鄂尔多斯盆地延长组超低渗透砂岩储层油井产能影响因素分析
2.
It is of practical significance to rational determination of oil well productivity and reservoir protection.
提出了油层出砂的门限流速概念,对于合理地确定油井产能、保护油层有着一定的实际意义。
5)  intelligent drilling
智能钻井
1.
However,with the increase of well depth,complex architectual well and transmittable speed,the wired signal transmission is the inevitable development trends of intelligent drilling.
随着井深的增加、复杂结构井和欠平衡井的增多以及对传输速度要求的提高,电缆信号传输必然是今后智能钻井的发展方向。
6)  gas well productivity
气井产能
1.
Aimed at the stress sensitivity which exists in view of the gas reservoirs performance history,the stress sensitive effect on gas well productivity is discussed from the angle of gas reservoir engineering.
在油气藏渗流数学模型及气井产能分析中通常都是假设岩石物性参数为常数,这个假设条件一般在气藏开发初期会获得较好的理论分析结果。
2.
The productivity prediction equations of conventional gas reservoirs are commonly used to estimate the gas well productivity in low-permeability gas reservoirs at present, without consideration of the threshold pressure gradient, resulting in large discrepancy between the calculations and production realities.
目前,在进行低渗透气井产能预测时,多采用常规气藏的产能预测公式,启动压力梯度被忽略,导致预测结果与生产实际存在较大误差。
补充资料:碳氧比能谱测井
      将高能脉冲中子源 (14MeV)发出的快中子射入地层,与地层中元素的核发生非弹性散射,放出有一定特征能量的γ射线;测量油水中C、O,岩石中Si、Ca的γ射线含量,以探测油层和水层的油、水含量以及岩性的一种测井方法。在低矿化度、高孔隙度(≥20%)地层的套管井中,用本法可有效地确定区分油层、水层。
  

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