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              產品展廳>>產品銷售>>辰工油藏數值模擬系列軟件>>辰工(區塊)油藏數值模擬軟件

              經過對數值試井軟件的完善和改進,辰工數值試井軟件已發展為介于傳統意義的試井軟件和油藏數值模擬軟件之間的軟件—區塊精細模擬軟件。該軟件能準確模擬1-5年時間內幾十口井的井底流壓、壓力分布及飽和度分布,可大大提高油藏動態預測的精度,并且可以進行壓裂優化方案設計,同時形成多個水平井壓裂方案,對多個方案進行計算比較。

              軟件采用非結構PEBI網格,可對垂直井、垂裂縫井、水平井及水平井多段壓裂等不同井型進行精確的網格劃分;充分考慮復雜井型與斷層及邊界干擾;不僅提供壓力歷史擬合,還對不同時期的多井井底壓力恢復資料進行試井分析。

              對頁巖氣井進行數值模擬:考慮頁巖氣的吸附、氣體滑脫及地層壓敏效應,并對啟動壓力梯度等進行考慮。

              采用三相、五組分方程,對聚合物驅、聚表驅等開展數值模擬研究,可考慮各種物化現象,可得到聚合物濃度分布等。

              針對致密油氣開發中的大型體積壓裂進行計算分析,可對壓后返排數據、生產數據進行擬合,得到SRV體積、裂縫有效縫長及滲透率分布等,預測油氣井未來產能。

              提供水平井井多段壓力優化:對水平井多段壓裂數值模擬,實現對壓裂規模(裂縫長度、裂縫條數等)優化,預測油氣井產能。

              圖1 可變網格劃分 圖2 六邊形網格劃分 圖3 四邊形網格劃分 圖4 數值模擬得到的壓力歷史擬合圖 圖5 壓裂方案設計-多方案對比

              Products>>Products on Sale>>Chengong Oil Reservoir Numerical Simulation Software Series>>Chengong (Block) Reservoir Numerical Simulation Software

              Through the perfection and improvement of the numerical well test software, Chengong numerical well testing software has been developed into block fine simulation software, which is between the traditional well testing software and reservoir numerical simulation software. The software can accurately simulate the bottom-hole flowing pressure, pressure distribution and saturation distribution of dozens of wells in a period of 1-5 years, can greatly improve the precision of the dynamic prediction of the oil reservoir, and can carry out the fracturing optimization scheme design, and compare and calculate multiple horizontal well fracturing schemes.

              The software adopts a non-structure PEBI grid, and can perform precise grid division on different well types such as vertical well, vertical fracture well, horizontal well and horizontal well multi-fracture, fully considers complex well type, fault and boundary interference, not only provides pressure history simulation, the well testing analysis of multi-well bottom hole pressure recovery data in different periods is also carried out.

              Numerical simulation of the shale gas well: Considering the adsorption of the shale gas, the gas slip and the formation pressure-sensitive effect, and considering the starting pressure gradient and so on.

              Using three-phase and five-component equations, the numerical simulation research of polymer flooding and polymer surface flooding can be carried out, and various physical and chemical phenomena can be considered, and the distribution of polymer concentration can be obtained.

              According to the calculation and analysis of large volume fracturing in the development of dense oil and gas, the back flow data after pressure and the production data can be simulated, we obtain the volume of the SRV, the effective length of the crack and the distribution of permeability and so on, and the future productivity of the oil and gas well is predicted.

              Provide multi-stage pressure optimization of horizontal well: The multi-fracture of horizontal well is numerical simulated, the optimization of the fracturing scale (crack length, number of cracks, etc.) is realized, and the productivity of the oil gas well is predicted.

              Figure1: Variable grids division Figure2: Hexagonal grids division Figure3: Quadrilateral grids division Figure4: Historical pressure simulated chart obtained by numerical simulation Figure5: Fracturing scheme design & multi-scheme comparison
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