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condensate gas well
相关语句
  凝析气井
     Buildup Test Analysis of Condensate Gas Well Considering Adsorption Effect
     考虑吸附影响的凝析气井试井分析
短句来源
     Based on the heat transfer principle,the formula for calculating well bore temperature distribution in condensate gas well is presented,the method acquiring the basic data for the temperature calculation is discussed and the effect law of gas output,water output,well depth and tubing diameter on wellhead temperature is analyzed.
     根据传热学原理推出了凝析气井井筒温度分布计算公式,研究了温度计算基础数据求取方法,分析了产气量、产水量、井深及油管直径对井口温度的影响规律。
短句来源
     WELLBORE TEMPERATURE DISTRIBUTION IN CONDENSATE GAS WELL BY ELECTROMAGNETIC:HEATING
     电磁加热凝析气井井筒温度分布
短句来源
     The temperature in a certain condensate gas well with a depth of 5 400 m has been calculated. The gas oil ratio of this well is 3 000.The gas contains 2 3% H 2S and 4% N 2.The formation temperature is 134 ℃.
     对某一井深为5400m的凝析气井进行了计算,该气井气油比为3000,含23%的H2S和4%的N2; 地层温度为134℃。
短句来源
     A METHOD TO DETERMINE THE EFFECTIVE PRODUCTION TIME OF LOW PERMEABILITY CONDENSATE GAS WELL
     低渗凝析气井有效生产时间确定方法
短句来源
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  “condensate gas well”译为未确定词的双语例句
     Actuality of Condensate Gas Well Test Technology
     凝析气试井技术现状
短句来源
     This formula also applies to the calculation of temperature distribution in dry gas well,wet gas well and condensate gas well and the calculation precision accords with the demands of engineering accuracy.
     该公式同时适用于干气井、湿气井和凝析气井的温度分布计算,计算精度符合工程精度要求。
短句来源
     RESEARCH ON THE INFLUENCE FACTORS OF INCREASING PRODUCTIVITY BY ELECTROMAGNETIC HEATING IN CONDENSATE GAS WELL
     凝析油气井电磁加热增产影响因素研究
短句来源
     The research results have proved the feasibility of solving the near-well bore condensate-plugging problem of the condensate gas well and have provided theoretical basis for the well-selection and heating technologic optimization of the electromagnetic heating in the condensate gas wells.
     文章的成果证实了电磁加热对解决凝析油气井近井带凝析油堵塞问题的可行性 ,也为凝析油气井电磁加热增产技术的选井及加热工艺优化提供了理论依据。
短句来源
     Modern well testing analysis has very important role in reservoir description, numerical simulation researching the condensate gas well characteristics and flow disciplinarian.
     ·本文研究和分析了凝析气藏特点,对凝析、反凝析过程进行了剖析,并综合分析了凝析、反凝析现象引起产能下降的原因。
短句来源
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  相似匹配句对
     STUDY ON CONDENSATE LIQUID FOR GAS WELL
     气井凝析液量研究
短句来源
     Actuality of Condensate Gas Well Test Technology
     凝析气试井技术现状
短句来源
     Actuality of Gas Condensate Well Deliverability Prediction
     凝析气井产能预测现状
短句来源
     DETERMINATION OF STOP FLOWING CONDITION OF GAS CONDENSATE WELL.
     凝析气井停喷条件的确定
短句来源
     EVALUATION MEIHOD OF STIMULATION EFFECT IN CONDENSATE GAS WELL
     凝析气井增产措施效果评价方法
短句来源
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Complicated phas variation and phase state redistribution exist in condensate gas wells.This may result in considerable effect on derivative curves of well test pressure. To choosethe straight section of well test analysis accurately is the key factor in successfully interpreting well test. The,f feet of condensate oil must be considered in calculating the parameters ofhigh-pressure physical property. In order to avoid interpretation error,the productivities usedin well test...

Complicated phas variation and phase state redistribution exist in condensate gas wells.This may result in considerable effect on derivative curves of well test pressure. To choosethe straight section of well test analysis accurately is the key factor in successfully interpreting well test. The,f feet of condensate oil must be considered in calculating the parameters ofhigh-pressure physical property. In order to avoid interpretation error,the productivities usedin well test analysis should also include condensate oil productivity. This has been proved bywell-test information of a condensate gas well in Tarim Basin.

凝析气井存在复杂的相变与相态重新分布,对试井压导曲线有较大影响,正确选定分析直线段是解释成败的关键。在计算高压物性参数时,应考虑凝析油的影响,试井分析中的产量应把凝析油产量折算到总产量中,方可克服解释的误差。以塔里木盆地一凝析气井试井资料作了说明。

The paper presents the succesful experience of high pressure condensate gas well completion in Sha 45 well,Tabei area,Xinjiang,with foreign completion tools and airseal screwthread tube,analyzes the characteristic of sticking and sealing operation and hydraulic pulse perforation technology,and disscusses the main existing technical problems in condensate gas well completion planning.

介绍了新疆塔北地区沙45井首次使用国外完井工具及气密封螺纹油管进行高压凝析气井完井的成功经验。分析了卡封联作与液压脉冲射孔技术特点。探讨了凝析气井完井设计方面存在的主要技术问题。

The well bore temperature distribution in condensate gas well is indispensable for the node analysis and performance analysis for gas well.Based on the heat transfer principle,the formula for calculating well bore temperature distribution in condensate gas well is presented,the method acquiring the basic data for the temperature calculation is discussed and the effect law of gas output,water output,well depth and tubing diameter on wellhead temperature is analyzed.The...

The well bore temperature distribution in condensate gas well is indispensable for the node analysis and performance analysis for gas well.Based on the heat transfer principle,the formula for calculating well bore temperature distribution in condensate gas well is presented,the method acquiring the basic data for the temperature calculation is discussed and the effect law of gas output,water output,well depth and tubing diameter on wellhead temperature is analyzed.The temperature in a certain condensate gas well with a depth of 5 400 m has been calculated.The gas oil ratio of this well is 3 000.The gas contains 2 3% H 2S and 4% N 2.The formation temperature is 134 ℃.Through calculation,it is shown that the relative error between the temperature measured at well head and that calculated is 0 2%~3 8%,being up to the engineering accuracy.The well temperature presents a nonlinear distribution with the depth and the well head temperature increases with the increase of the output and depth but decreases with the decrease of the tubing's diameter.This formula also applies to the calculation of temperature distribution in dry gas well,wet gas well and condensate gas well and the calculation precision accords with the demands of engineering accuracy.

凝析气井井筒温度分布是进行气井节点分析和动态分析必不可少的参数。根据传热学原理推出了凝析气井井筒温度分布计算公式,研究了温度计算基础数据求取方法,分析了产气量、产水量、井深及油管直径对井口温度的影响规律。对某一井深为5400m的凝析气井进行了计算,该气井气油比为3000,含23%的H2S和4%的N2;地层温度为134℃。计算结果表明:井口实测温度与计算温度的相对误差为02%~38%,符合工程精度。气井温度随井深不呈线性分布;气井井口温度随产量、井深增加而增加,随油管直径减少而减少;该公式同时适用于干气井、湿气井和凝析气井的温度分布计算,计算精度符合工程精度要求。

 
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