產品展廳>>項目研發>>致密儲層大規模壓裂停泵壓力解釋技術服務

致密儲層自然產能很低,只有采用壓裂才能實現高效開發,但壓后評價一直是世界難題。停泵壓降分析,可以利用單段壓后停泵壓力分析評價各段的裂縫半長,指導壓裂方案優化,提高壓裂后產能評價的準確性。目前采用的微地震及電位測量法,不僅施工難度大,成本高,精確度也不高,而且無法獲得裂縫導流能力及滲透率等產能計算的核心參數。因此,探索經濟有效的壓裂效果評價方法是高效開發致密油氣藏的關鍵。

停泵壓力測試數據預處理

變密度變流量的井底壓力折算

壓裂期間注入各種不同類型的壓裂液,同時還需要加沙,井筒不同位置壓裂液類型、沙濃度都不相同,這些不同類型的流體其密度、黏度等物性參數在井筒中會產生復雜的流動,導致將井口壓力折算到井底壓力的計算方法十分復雜,本項目根據力學質量守恒、動量守恒及井筒中能量守恒原理,建立考慮變密度、變流體物性的井筒垂直管流方程,采用龍格-庫特法進行方程求解,從而確保井口壓力折算到井底壓力的精度,為正確進行停泵壓力的解釋分析提供保障。

停泵后水擊壓力的濾波消除

停泵產生的壓力振蕩,也就是水擊效應,對壓力及導數曲線前期存在著較大的影響。為了更好的對停泵壓力數據進行分析解釋,需要通過濾波處理壓裂停泵后壓力數據。

停泵壓力數據軟件解釋分析

Laplace空間及物理空間中多段壓裂水平井井底壓力求解

多段壓裂水平井停泵數據分析圖版繪制

針對不同裂縫條數、不同裂縫長度及不同滲透率,獲得不同的壓力及導數雙對數圖版,由于水平井多段壓裂的參數很多,我們提出按曲線參數重要性、大小順序等分類排序法進行圖版管理,這樣有利于提高曲線擬合速度。

對每層壓力數據進行停泵數據分析

通過分析可以獲得:每條裂縫的半長、導流能力,以及SRV區域的滲透率、面積和平均壓力等參數。

解釋評價報告編制

我公司長期開展停泵壓力理論研究及軟件研發工作,攻克了變流量、變密度井筒垂直管流、水擊效應的濾波算法及短時大注入量的壓力反演三大技術難題,最終形成壓裂停泵數據分析軟件,在致密油氣及頁巖氣中應用數百井段,并與微地震結果進行充分對比,驗證軟件的實用性和可靠性,并且可以利用已有數據進行分析,大大提高了經濟效益。

Products>>Project Development>>Stop pump pressure interpretation technical services of dense reservoir large-scale fracturing

The natural capacity of dense reservoir is very low, only by fracturing can it be developed efficiently, but after-pressure evaluation has always been a world problem. single stage after-pressure stop pump pressure analysis can be used to evaluate the crack half-length of each stage and guide the fracturing scheme optimization, to improve the accuracy of the capacity evaluation after fracturing. At present, the micro-seismic and potential measurement methods are not only difficult to construct, high cost and low accuracy, but also cannot obtain the core parameters of capacity calculation, such as fracture diversion capacity and permeability. Therefore, exploring economical and effective fracturing evaluation method is the key to the efficient development of dense oil and gas reservoirs.

Pre-processing of stop pump pressure test data

Bottom-hole pressure conversion for variable density and flow

During fracturing, different types of fracturing fluid are injected and sand adding is also required. The viscosity, density and so on physical parameters of different types of fluid will produce complex flow in the wellbore,so that the calculation method of converting the wellhead pressure to the bottom hole pressure is very complicated. According to the principles of mechanical mass conservation, momentum conservation and energy conservation in wellbore, this project establishes the vertical pipe flow equation of wellbore considering variable density and fluid physical property, and adopts Longer-Kut method to solve the equation, so as to ensure the accuracy of the wellhead pressure converted to the bottom hole pressure, and to provide guarantee for the correct interpretation and analysis of the stop pump pressure.

Filtering elimination of water hammer pressure after stop pump

The pressure oscillation produced by stopping pump, that is, water hammer effect, has a great influence on the pressure and derivative curve in the early stage. In order to better analyze and explain the stop pump pressure data, it is necessary to process the pressure data after stop pump fracture by filtering.

Analysis of stop pump pressure data software

The bottom-hole pressure solution of multiple stage fracture horizontal well in Laplace space and physical space

Multi-stage fracturing horizontal well stop pump data analysis plate drawing

According to the number of different fractures, different fracture length and different permeability, different pressure and derivative double logarithmic plate are obtained. Because of the many parameters in horizontal well fracturing, we propose to manage the graph plate according to the importance of curve parameters, size order and so on, which is beneficial to improve the speed of curve simulation.

Stop pump data analysis for each layer of pressure data

Through the analysis, we can obtain: the half length of each fracture, the diversion capacity, and the parameters such as permeability, area and average pressure in the SRV area.

Interpretation and evaluation of report preparation

Based on the test and analysis, combine the drainage reality, the influence of different drainage methods on the seepage capacity of gas-water reservoir two-phase flow is studied. At the same time, the stress state is evaluated by using the pressure recovery well test results.

Our company has carried out the research on the theory of stop pump pressure and software for a long time, solved the three technical problems of variable flow rate, variable density wellbore vertical pipe flow, filtering algorithm of water hammer effect and pressure inversion of short-term large injection, finally formed fracturing stop pump data analysis software, applied hundreds of wells in dense oil and gas and shale gas, and compared fully with the results of micro-seismic, verified the practicability and reliability of the software, our software can use the existing data to analyze and greatly improve the economic benefit.

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