石油钻探技术
石油鑽探技術
석유찬탐기술
PETROLEUM DRILLING TECHNIQUES
2014年
2期
23-27
,共5页
余夫%金衍%陈勉%牛成成%李晓益
餘伕%金衍%陳勉%牛成成%李曉益
여부%금연%진면%우성성%리효익
纵波速度Biot理论%骨架体积弹性模量%压力异常
縱波速度Biot理論%骨架體積彈性模量%壓力異常
종파속도Biot이론%골가체적탄성모량%압력이상
P-wave velocity%Biot theory%rock framework bulk modulus%abnormal pressure
目前已经可以利用试验方法解释纵波速度在砂泥岩与碳酸盐岩异常高压地层的变化特征,但机理研究还处于探索阶段。基于Bio t理论,建立了纵波速度方程,分析了纵波速度的主要组成;探讨了影响纵波速度变化的主要因素,解释了异常高压地层的纵波速度变化特征。研究结果表明,在异常高压地层,砂泥岩的骨架体积弹性模量大幅变小,基质型碳酸盐岩的骨架体积弹性模量几乎不变,裂缝性碳酸盐岩的骨架体积弹性模量小幅变小。研究表明,骨架体积弹性模量决定了砂泥岩与碳酸盐岩地层异常高压的纵波速度变化特征,可以根据骨架纵波速度分析饱和流体岩石的纵波速度变化趋势。
目前已經可以利用試驗方法解釋縱波速度在砂泥巖與碳痠鹽巖異常高壓地層的變化特徵,但機理研究還處于探索階段。基于Bio t理論,建立瞭縱波速度方程,分析瞭縱波速度的主要組成;探討瞭影響縱波速度變化的主要因素,解釋瞭異常高壓地層的縱波速度變化特徵。研究結果錶明,在異常高壓地層,砂泥巖的骨架體積彈性模量大幅變小,基質型碳痠鹽巖的骨架體積彈性模量幾乎不變,裂縫性碳痠鹽巖的骨架體積彈性模量小幅變小。研究錶明,骨架體積彈性模量決定瞭砂泥巖與碳痠鹽巖地層異常高壓的縱波速度變化特徵,可以根據骨架縱波速度分析飽和流體巖石的縱波速度變化趨勢。
목전이경가이이용시험방법해석종파속도재사니암여탄산염암이상고압지층적변화특정,단궤리연구환처우탐색계단。기우Bio t이론,건립료종파속도방정,분석료종파속도적주요조성;탐토료영향종파속도변화적주요인소,해석료이상고압지층적종파속도변화특정。연구결과표명,재이상고압지층,사니암적골가체적탄성모량대폭변소,기질형탄산염암적골가체적탄성모량궤호불변,렬봉성탄산염암적골가체적탄성모량소폭변소。연구표명,골가체적탄성모량결정료사니암여탄산염암지층이상고압적종파속도변화특정,가이근거골가종파속도분석포화류체암석적종파속도변화추세。
The response characteristics of P-wave velocity in abnormal over-pressure shale sand and carbonate rock can be interpreted by using experimental methods now ,but the research on mechanism is still in the exploratory stage .Based on Biot theory ,P-wave velocity equation was established and the major components of the P-wave velocity were analyzed .The main factors affecting P-wave velocity change were discussed and the variation features of P-wave velocity in abnormal over-pressure formation were ex-plained .The results showed that in the abnormal over-pressure formation ,the rock framework bulk modu-lus of shale sand rock became significantly smaller ,that of matrix carbonate rock kept essentially constant , and that of fractured carbonate rock dropped slightly .The study showed that the response characteristics of P-wave velocity of shale sand rock and carbonate rock with abnormal over-pressure were determined by the rock framework bulk modulus ,and the P-wave velocity of rock framework could be used to estimate the P-wave velocity variation trend of saturated rock .