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深层气井
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  deep gas well
     Analysis and Application of Formation Pressure Reducing Method in Deep Gas Well
     深层气井地层压力折算方法分析及应用
短句来源
     Application of Flow Back Method by Closing and Giving Out in Deep Gas Well of Daqing Oilfield.
     关放排液方法在大庆油田深层气井中的应用
短句来源
     Dynamic Monitor Method on Oil Pressure Change of Oosed Well for Gas Testing in Deep Gas Well.
     深层气井试气过程中关井油压变化动态预测方法
短句来源
     Application of dcs exponent used in the reservoir physical property evaluation in deep gas well
     dcs指数在深层气井储集层物性评价中的应用
短句来源
     This paper proposes four interpretation methods of deep gas wells, including evaluating gas bearing property of reservoirs using methane content difference value method, predicting reservoir productivity using wholly degassed analysis data, evaluating gas bearing property of reservoirs using export drilling fluid parameters and identifying water property of deep gas well reservoirs using infrared CO2 analysis data.
     提出了应用甲烷含量差值法评价储层含气性、应用全脱气分析资料预测储层产能、应用出口钻井液参数评价储层含气性以及应用红外CO2分析资料对深层气井储层进行水性识别等四种深层气井解释方法,在生产应用中取得了较好效果。
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  deep gas wells
     Application of comprehensive logging parameters in logging interpretation of deep gas wells
     综合录井参数在深层气井录井解释中的应用
短句来源
     Research and Application of Oil Testing Fracturing of Deep Gas Wells
     深层气井试油压裂技术研究与应用
短句来源
     The results indicate the stress profile on fractured reform of Daqing deep gas wells' "hundred-meters-deep giant thickness" can fulfill the combination from physical separated-layer to stress separated-layer, enhancing the reservoirs producing amount and evaluation quality.
     结果表明:地应力剖面在大庆深层气井“百米巨厚”储层的压裂改造上,可实现从物性分层到与地应力分层,提高储层动用程度和评价质量;
短句来源
     This paper proposes four interpretation methods of deep gas wells, including evaluating gas bearing property of reservoirs using methane content difference value method, predicting reservoir productivity using wholly degassed analysis data, evaluating gas bearing property of reservoirs using export drilling fluid parameters and identifying water property of deep gas well reservoirs using infrared CO2 analysis data.
     提出了应用甲烷含量差值法评价储层含气性、应用全脱气分析资料预测储层产能、应用出口钻井液参数评价储层含气性以及应用红外CO2分析资料对深层气井储层进行水性识别等四种深层气井解释方法,在生产应用中取得了较好效果。
短句来源
     Aiming at the problem that pressure gauge of deep gas wells is not put in the middle part of gas reservoirs and recorded pressure has error with real formation pressure,this paper performs analysis on pressure reducing method for deep gas wells.
     针对有些深层气井压力计未下在气层中部,记录的压力与实际地层压力之间存在误差的问题,开展了深层气井压力折算方法分析,采用积分迭代方法对2000年以来压力计未下在气层中部的深层气井资料进行了压力折算。
短句来源
  “深层气井”译为未确定词的双语例句
     CORROSION BEHAVIORS OF N80 STEEL IN SIMULATED WATER FROM DEEP GASWELL CONTAINING CO_2
     N80钢在模拟深层气井水溶液中的CO_2腐蚀行为
短句来源
     According to the analysis of the former techniques of fracture testing in deep seated gas wells and new theory and process technique,we solved the problems of mud pollution near the well bore,and reduced fracture pressure applying to perforation manner of large ported,deep penetration,negative pressure and high energy gas fracture.
     通过对过去深层气井试气压裂技术总结分析 ,并结合现有的先进理论及工艺技术 ,在深层气井的射孔技术上采用大孔密、深穿透、负压射孔方式 ,并附以高能气体压裂技术来解除近井筒地带泥浆污梁问题 ,降低压裂施工的破裂压力。
短句来源
     The technique of continous tubing liquid nitrogen can solve the problem of normal swabbing drainage in deep seated gas well.
     对于深层气井采用常规抽汲排液技术不能满足要求 ,采用连续油管液氮排液技术解决这一难题。
短句来源
     The technique is applied in Well Pushen 15 successfully,and the technique of testing fracture in deep seated gas well is improved.
     这些技术在濮深 1 5井应用成功 ,进一步完善了东濮凹陷深层气井的试油压裂技术。
短句来源
     By experiment show that it have good clip and cut steadied, thermal steady and temperature_resisting according with SY/T 5107_1995 of trade method evaluated. This system has been succeed applied at deep floor gas well in Daqing. To High temperature fracture liquid flowed-denaturation influence factor analyzing and summarizing.
     论述的高温压裂液体系具有良好的剪切稳定性、热稳定性以及耐温性等,参数均符合SY/T5107-1995的行业方法评价标准,该体系在大庆油田深层气井压裂中得到了成功的应用,本文对高温压裂液体系的流变性影响因素进行分析总结。
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The characteristics of high temperature,high pressure,low porosity and low permeability in Dongpu sag makes it difficult for fracture testing.According to the analysis of the former techniques of fracture testing in deep seated gas wells and new theory and process technique,we solved the problems of mud pollution near the well bore,and reduced fracture pressure applying to perforation manner of large ported,deep penetration,negative pressure and high energy gas fracture.As to improvement of reservoir,we preferred...

The characteristics of high temperature,high pressure,low porosity and low permeability in Dongpu sag makes it difficult for fracture testing.According to the analysis of the former techniques of fracture testing in deep seated gas wells and new theory and process technique,we solved the problems of mud pollution near the well bore,and reduced fracture pressure applying to perforation manner of large ported,deep penetration,negative pressure and high energy gas fracture.As to improvement of reservoir,we preferred fracture manner,optimized fracture designation,invented high temp proof and low harmful fracture fluid system,and pressed long seam of deep penetration and high mobility to increase production.The technique of continous tubing liquid nitrogen can solve the problem of normal swabbing drainage in deep seated gas well.The technique is applied in Well Pushen 15 successfully,and the technique of testing fracture in deep seated gas well is improved.

东濮凹陷深层气藏具有高温、高压、低孔隙度、低渗透的特点 ,使得试油压裂工艺难度加大。通过对过去深层气井试气压裂技术总结分析 ,并结合现有的先进理论及工艺技术 ,在深层气井的射孔技术上采用大孔密、深穿透、负压射孔方式 ,并附以高能气体压裂技术来解除近井筒地带泥浆污梁问题 ,降低压裂施工的破裂压力。在储层改造技术方面优选压裂方式、优化压裂设计、研制耐高温低伤害压裂液体系 ,在储层内压出深穿透、高导流的长缝 ,来达到增加产能的目的。对于深层气井采用常规抽汲排液技术不能满足要求 ,采用连续油管液氮排液技术解决这一难题。这些技术在濮深 1 5井应用成功 ,进一步完善了东濮凹陷深层气井的试油压裂技术。

In order to improve the effect and technical level of fracturing treatment, calculation and calibration models are established based on the elastic theory, combined acoustic logging information and testing on the well-site operation. The results indicate the stress profile on fractured reform of Daqing deep gas wells' "hundred-meters-deep giant thickness" can fulfill the combination from physical separated-layer to stress separated-layer, enhancing the reservoirs producing amount and evaluation quality. We applied...

In order to improve the effect and technical level of fracturing treatment, calculation and calibration models are established based on the elastic theory, combined acoustic logging information and testing on the well-site operation. The results indicate the stress profile on fractured reform of Daqing deep gas wells' "hundred-meters-deep giant thickness" can fulfill the combination from physical separated-layer to stress separated-layer, enhancing the reservoirs producing amount and evaluation quality. We applied the least principle stress profile, adopted full-three-dimensional fracturing technical to simulate the actual morphology of fracturing height can prevent the fracture penetrate the upper and lower restraining barrier, and the resultant destructive strata series. Wehave also optimize the engineering parameters, determined the operating size, enhanced the fracture prop available, making the oil producing increase from 0.017 t/d of pre-fracture to 3.911 t/d of post-fracture, and the single successful fracturing rate improved from the previous 55.8% to the present 85.4%.

为提高压裂的施工成功率、措施效果和技术水平,以弹性理论为基础,结合声波测井资料,建立了地应力的计算模型和校正模型,并进行了现场应用. 结果表明:地应力剖面在大庆深层气井“百米巨厚”储层的压裂改造上,可实现从物性分层到与地应力分层,提高储层动用程度和评价质量;应用最小主应力剖面,采用全三维压裂施工技术模拟裂缝高度的实际形态,可防止裂缝穿透上下隔层而破坏层系开采,合理进行工程参数优化、确定施工规模,提高裂缝有效支撑,使产油量由压裂前的0.017 t/d,增加到压裂后的3. 911 t/d;应用地应力剖面模型,可使压裂一次成功率由以往的55.8%提高到85.4%.

High temperature fracture liquid system of properties was discussed in this paper. By experiment show that it have good clip and cut steadied, thermal steady and temperature_resisting according with SY/T 5107_1995 of trade method evaluated. This system has been succeed applied at deep floor gas well in Daqing. To High temperature fracture liquid flowed-denaturation influence factor analyzing and summarizing.

论述的高温压裂液体系具有良好的剪切稳定性、热稳定性以及耐温性等,参数均符合SY/T5107-1995的行业方法评价标准,该体系在大庆油田深层气井压裂中得到了成功的应用,本文对高温压裂液体系的流变性影响因素进行分析总结。

 
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