电子设计工程
電子設計工程
전자설계공정
ELECTRONIC DESIGN ENGINEERING
2015年
2期
16-18,21
,共4页
示功图%有杆抽油系统%量油%能耗
示功圖%有桿抽油繫統%量油%能耗
시공도%유간추유계통%량유%능모
dynamometer card%sucker rod pumping system%oil production measuring%energy consumption
在石油开采中,油井产量的计量是油田生产管理中一项重要的基础工作,对油井产量进行准确、及时的计量并进行油井举升能耗与效率分析,对于掌握油藏状况,制定生产方案,具有重要的指导意义。本文的研究基于准确进行油井产量计算进而提高油田生产管理水平的目的,利用无线示功仪采集实测功图数据,采用数学迭代方法计算出井下抽油泵处的泵功图,通过示功图和泵功图判断出油井的凡尔开闭点,根据有效冲程来计量油井产量,并进行油井举升能耗与效率分析。通过与油田设置的计量站的数据对比,量油精确度达到93%以上,有效提高了有杆抽油系统的单井产量计算的精确度。
在石油開採中,油井產量的計量是油田生產管理中一項重要的基礎工作,對油井產量進行準確、及時的計量併進行油井舉升能耗與效率分析,對于掌握油藏狀況,製定生產方案,具有重要的指導意義。本文的研究基于準確進行油井產量計算進而提高油田生產管理水平的目的,利用無線示功儀採集實測功圖數據,採用數學迭代方法計算齣井下抽油泵處的泵功圖,通過示功圖和泵功圖判斷齣油井的凡爾開閉點,根據有效遲程來計量油井產量,併進行油井舉升能耗與效率分析。通過與油田設置的計量站的數據對比,量油精確度達到93%以上,有效提高瞭有桿抽油繫統的單井產量計算的精確度。
재석유개채중,유정산량적계량시유전생산관리중일항중요적기출공작,대유정산량진행준학、급시적계량병진행유정거승능모여효솔분석,대우장악유장상황,제정생산방안,구유중요적지도의의。본문적연구기우준학진행유정산량계산진이제고유전생산관리수평적목적,이용무선시공의채집실측공도수거,채용수학질대방법계산출정하추유빙처적빙공도,통과시공도화빙공도판단출유정적범이개폐점,근거유효충정래계량유정산량,병진행유정거승능모여효솔분석。통과여유전설치적계량참적수거대비,량유정학도체도93%이상,유효제고료유간추유계통적단정산량계산적정학도。
In oil exploitation, the oil production measurement is an important and foundational work for the oilfield production management, and has the guiding significance not only for the accurate and timely measurement of oil well production and analysis of oil well lifting energy consumption and efficiency, also for mastering reservoir condition and making production plan. The purpose of this research is based on measuring the oil well production correctly and improving the oilfield production management level. The research of this text is through wireless indicator instrument which is used to collect the data of measured surface dynamometer card, mathematical iteration method adopted to calculate the downhole pump indicator diagrams, and according to the indicator diagram and pump indicator diagrams to tell the valve opening and closing point, the effective stroke to measure oil well production and energy consumption of oil well lifting and efficiency analysis. The method can effectively improve the single oilwell production measuring precision of sucker rod pumping system above 93% through comparing with the data of oilfield measuring stations.