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   油环的 在 石油天然气工业 分类中 的翻译结果: 查询用时:0.649秒
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油环的
相关语句
  oil ring
    According to a comprehensive analysis the oil/gas reservoir is of oversaturated condensate gas reservoir with a fairly large oil ring controlled by the weathered crust.
    据目前综合分析 ,该潜山油气藏类型为受风化壳控制的带较大油环的高饱和凝析气藏。 图 4参 3 (梁大新摘 )
短句来源
    It is four factors above-mentioned controlling that form the deep structure-lithology condensate reservoir with oil ring in Baimiao structure.
    上述 4种因素控制形成了白庙深层带油环的构造岩性凝析油气藏。
短句来源
    The Jurassi c Sangonghe reservoir in Mobei-2Wellblock is a typical gas-cap pool where the g as cap volume is0.91times as big as its oil ring's.
    准噶尔盆地莫北2井区侏罗系三工河组油藏为一典型的气顶油藏,气顶体积是油环的0.91倍。
短句来源
    By analy sing the hydro carbon composition of natural gas in Huang qiao CO_2 reser voir and comparing it to the hydro carbon composidon of realexample,ie Mc Caiium CO_2 field,the articles tudied Huang qiao CO_2 reservoir,and inferred the possib leh quid(oil & gas) distri but ionfeatures of Huang qiao CO_2 reser voir,-high concen tration gas condens atereser voir of oil ring belt.
    本文从气田中天然气烃类组分资料判别及与麦卡伦CO2 油气田类比,推断了黄桥CO2 气藏可能的流体分布特征——带油环的高浓度CO2 凝析气藏。
短句来源
    Along with the development of China's oil/gas exploration & production, more and more gas-cap oil reservoirs or the condensate gas reservoirs with oil ring have been discovered one after another. The judgment of gas-cap oil reservoirs fluid type directly guides the selection of the way of the exploitation.
    随着我国油气田勘探开发的发展,越来越多的气顶油藏或带油环的凝析气藏相继发现,判断气顶油藏的流体类型对开发方式的选择有直接的指导意义。
短句来源
  “油环的”译为未确定词的双语例句
    In detail, Ⅲ formation of Yancan 1 fault block is condensate gas reservoir with oil circles, Ⅳformation is condensate gas reservoir, Ⅱ and Ⅳ formations of Bao 3 fault block are light oil reservoirs belonging to conventional black oil.
    结论宝中区块油气性质和油气藏类型比较特殊,存在常规黑油中轻质油、挥发油和凝析气,焉参1断块Ⅲ油组为带油环的凝析气藏,Ⅳ油组为凝析气藏; 宝3断块Ⅱ、Ⅳ油组为常规黑油中轻质油藏。
短句来源
    MATERIAL BALANCE EQUATION OF OIL-RIMMING CONDENSATE GAS RESERVOIR
    带油环的凝析气藏物质平衡方程
短句来源
    The former, indicated as X_4~2—X_5~2, sequenel, is a secondary oil-gas condensate reservoir with edge water and oil-ring gas cap. During the production, it is recognized that there were three periods of the reservoir pressure, i. e, stable, fall-off and build-up periods. The change in pressure gradient was evidently controlled by its edge water horizontally or vertically.
    上油组X_4~2—X_5~2开发层系为具边水、气顶带油环的次生凝析油气藏,地层压力在开发过程中分稳定期、衰减期和回升期三个阶段,平面或垂向的压力梯度变化明显受边水驱控制。
短句来源
    The formulation of the problem, the physical and mathematical modeling, the parameter treatment and solution are given in this paper Its reliability having been tested by means of an example of the SPE 4272, a series of results are obtained by using the simulation calculation for Su 1 Qian Shan condensate oil-gas reservoir.
    借用SPE4271一例对模型进行了可靠性检验后,对华北苏1潜山凝析油气藏进行模拟计算。 结果表明,该模型能较好地模拟带底水、油环的凝析气藏的开发过程。
短句来源
    There are a lot of gas-condensate reserviors bearing gas-caps or oil-rings found in the north of Tarim Basin.
    塔北地区普遍存在气顶型凝析气藏和带油环的凝析气藏。 与传统烃类热演化理论相矛盾的是:1)天然气的成熟度远高于油环原油或凝析油;
短句来源
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  oil ring
A thick hydrocarbon column at Lisbon field contains a gas cap and oil ring.
      
An oil ring is a large loose fitting ring with its top half resting on the shaft and its bottom half in an oil reservoir.
      
However, oil ring plugging was severe, and the entire engine was coated with a heavy layer of tenacious black sludge.
      
Oil ring speed is important to provide sufficient oil to the bearing surface.
      
The bearings are typically self-lubricated by means of an oil ring.
      
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Based on the behaviour of North China Oil Field, a three phase model of oil, gas and water coning has been developed. The model is used for analysis of Su Qiao oilfield with gas cap and oil ring. A compariston between the different development programmes of this sort of fields is made and factors of influence on the development are calculated. The model played a good part in development of the oil field.

根据华北油田特点;编制了油气水三相锥进模型,用这个模型对苏桥带油环的气顶油田进行了计算,对于这类油气田开发的特点和影响因素进行了对比计算,为开发好这类油气田起到了一定的作用。

Xihepu formation (miocene) of Kokeya condensate field can be divided into two members, upper member and lower one. The former, indicated as X_4~2—X_5~2, sequenel, is a secondary oil-gas condensate reservoir with edge water and oil-ring gas cap. During the production, it is recognized that there were three periods of the reservoir pressure, i. e, stable, fall-off and build-up periods. The change in pressure gradient was evidently controlled by its edge water horizontally or vertically.Belonging to fluvial sedimentary...

Xihepu formation (miocene) of Kokeya condensate field can be divided into two members, upper member and lower one. The former, indicated as X_4~2—X_5~2, sequenel, is a secondary oil-gas condensate reservoir with edge water and oil-ring gas cap. During the production, it is recognized that there were three periods of the reservoir pressure, i. e, stable, fall-off and build-up periods. The change in pressure gradient was evidently controlled by its edge water horizontally or vertically.Belonging to fluvial sedimentary facies, this reservoir is characterized by serious heterogeneities with permeability changing from higher for the lower to lower for the upper, and the horizontal higher than the vertical. However, no cross flow occurred between zones. The effect of the edge water and gas cap on the properties of its oil-gas condensate has been variable during the period of production and, with increase of oil-gas ratio, the content of condensate was reduced generally.

柯克亚凝析油气田上第三系中新统西河甫组分上、下两套油组。上油组X_4~2—X_5~2开发层系为具边水、气顶带油环的次生凝析油气藏,地层压力在开发过程中分稳定期、衰减期和回升期三个阶段,平面或垂向的压力梯度变化明显受边水驱控制。 X_4~2—X_5~2储层属河流相沉积,非均质性严重,渗透性能具有下大上小、水平渗透率高于垂直渗透率的特点,但层间不存在窜流现象。开采过程中,油气性质受边水和气顶影响,变化不一;生产油气比不断上升,凝析油含量普遍下降。

A new method of numerical simulation for condensate oil-gas reservoir is presented in this paper, and an equation-of-state multicomponent model is set up by using pseudo-component theory. The formulation of the problem, the physical and mathematical modeling, the parameter treatment and solution are given in this paper Its reliability having been tested by means of an example of the SPE 4272, a series of results are obtained by using the simulation calculation for Su 1 Qian Shan condensate oil-gas reservoir.

本文描述了一种新的凝析油气藏数值模拟方法。它是应用拟组分理论建立的一种状态方程型多组分模型。文中阐述了物理及数学模式,参数处理和求解方法;借用SPE4271一例对模型进行了可靠性检验后,对华北苏1潜山凝析油气藏进行模拟计算。结果表明,该模型能较好地模拟带底水、油环的凝析气藏的开发过程。

 
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