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              產品展廳>>產品銷售>>辰工油藏數值模擬系列軟件>>自適應精細歷史擬合一體化平臺 V1.0

              軟件基于ECLIPSE的水驅精細歷史擬合暨措施調整挖潛輔助決策平臺,研究分層(段)擬合技術,提高歷史擬合精度;實現自動化后處理功能,自動提取多學科油藏研究成果并進行分析和處理,轉換成動態分析工作需要的數據、圖形等格式;準確識別剩余油類型、可挖潛剩余油富集部位和規模;通過人機交互方式形成調整挖潛方案數據流并進行方案優選,從而順利地推進轉變多學科油藏研究工作模式的進程。

              軟件基于ECLIPSE的水驅精細歷史擬合暨措施調整挖潛輔助決策平臺,研究分層(段)擬合技術,提高歷史擬合精度;實現自動化后處理功能,自動提取多學科油藏研究成果并進行分析和處理,轉換成動態分析工作需要的數據、圖形等格式;準確識別剩余油類型、可挖潛剩余油富集部位和規模;通過人機交互方式形成調整挖潛方案數據流并進行方案優選,從而順利地推進轉變多學科油藏研究工作模式的進程。軟件能夠解決長期以來困擾著ECLIPSE軟件的難以分層(段)注水擬合問題,能實現高效、快速分層(段)歷史擬合,建立基于專家經驗的歷史擬合平臺,實現歷史擬合從誤差分析到調整再到運算的一體化、高效化,提高水驅歷史擬合的精度與效率。此外,建立快速、便捷、易用的后處理功能,在平臺上實現動用狀況分析、剩余油分析與措施挖潛的一體化,降低應用“門檻”,是實現“精準描述”這一目標的有力保證,具有廣泛的推廣應用價值。

              軟件以分層測試資料和吸水剖面資料為約束,形成分層(段)注水量觀測系統,對注水井進行分層(段)歷史擬合,提高其連通的采油井的模擬精度。軟件依據誤差理論,計算全區、井網、單井和沉積單元擬合指標的誤差,結合專家經驗建立參數調整模板,運用數值分析方法研究基于ECLIPSE軟件的分層(段)歷史擬合技術;通過定量化描述與計算機圖形識別技術相結合的方法來判別剩余油類型;以剩余油類型和量化成果為基礎,選擇需要進行調整挖潛的單井及其相應的調整措施挖潛方式,形成數值模擬數據流,自動發送作業、提取方案預測結果,進行方案優選。主要功能模塊如下:

              模擬成果分類存儲模塊

              讀取ECLIPSE數值模型文件和成果,包括PRT、INC等類型的文件。

              按照靜態信息、油藏參數信息、動態信息、擬合信息、過程信息進行分類存儲。

              歷史擬合誤差分析模塊

              依據誤差理論計算全區、不同井網、單井和沉積單元的擬合指標誤差。

              對誤差分析結果進行圖形顯示,包括對比曲線、旋風圖、餅圖等。

              對擬合結果進行誤差分析,找出擬合誤差較大的單井以及沉積單元。

              根據參數擬合調整需求,對指標誤差結果的分類、排序及計算等操作。

              分層歷史擬合模塊

              單井注水量劈分。

              基于單層擬合指標誤差的擬合參數調整。

              調用ECLIPSE模擬器進行試算。

              調用歷史擬合誤差分析模塊對擬合結果進行誤差分析。

              單井注水量劈分結果加載。

              分層擬合試算方案生成。

              調用模擬成果分類存儲模塊讀取擬合結果。

              歷史擬合輔助工具模塊

              全區、井網、單井及分層擬合結果的曲線顯示。

              調整參數選取方式、編輯面板。

              建立專家經驗模板。

              開發屬性場數據計算器。

              多個方案單井單層擬合值與分層劈分值的剖面對比,協同顯示對應方案所調整參數及修正值,以便擬合誤差分析。

              作業調度管理模塊

              基于模擬器許可數量及計算機硬件配置的多作業同時發送。

              作業進程管理。

              作業進程中的指標擬合誤差實時反饋、監測。

              后處理模塊

              以二維加等值線圖形方式顯示模型。

              地質參數統計,如鉆遇率、滲透率級差等。

              開發指標計算,如注采比、水驅控制程度等。

              根據用戶定義的條件,對圖形進行篩選,并能夠輸出。

              實現數據圖形一體化,點擊圖形即出相關的數據。

              動用狀況分析模塊

              對全區、井組、用戶指定的區域進行動用狀況分析。

              實現按油層組、砂巖組、沉積單元的動用狀況分析。

              單井單層動用狀況分析。

              按沉積微相、滲透率分級、有效厚度分級進行動用狀況分析。

              可挖潛剩余油分析模塊

              可挖潛剩余油界限的確定。

              單井可挖潛剩余油富集部位的量化。

              形成可挖潛剩余油數據庫。

              可挖潛剩余油富集部位的確定。

              識別可挖潛剩余油類型。

              可挖潛剩余油的編輯、索引。

              調整挖潛輔助決策模塊

              對調整挖潛方案輔助決策方案進行管理。

              調用作業調度管理模塊發布作業。

              多方案的預測曲線對比。

              根據措施篩選條件,進行單井措施預選,形成預測方案數據流。

              自動提取方案優化結果,以曲線、表格等信息顯示。

              圖1 全區日產油、綜合含水擬合曲線 圖2 分層(段)注水觀測系統 圖3 分層(段)擬合曲線圖 圖4 注水井分層(段)誤差 圖5 專家經驗模板 圖6 剩余油平面分布狀況

              Products>>Products on Sale>>Chengong Oil Reservoir Numerical Simulation Software Series>>Self-Adaptive Fine Historical Simulation Integrated Platform V1.0

              The software is based on the ECLIPSE-based of fine water flooding historical simulated production technology to adjust the assisted potential exploitation decision making platform, the stratification (segment) simulation technology is studied, the historical simulation precision is increased, the automatic after-processing function is realized, the research results of the multi-disciplinary oil reservoir are automatically extract and the analysis and treatment are processed, the format of data/graph and so on required for dynamic analysis working are converted ,the type of the residual oil, and potential exploitation allowed residual oil enrichment part and scale are identified accurately; and forming and adjusting the data flow of the potential exploitation scheme through the human-machine interaction mode and carrying out the scheme optimization, So that the process of changing the working mode of the multi-disciplinary oil reservoir research is smoothly promoted.

              The software solve the problem which troubles ECLIPSE software for a long time that stratification (segment) water injection simulation is hard to realize, realizing the historical simulation of high efficiency and fast stratification (segment), establishing a historical simulation platform based on expert experience, realizing the integration and high efficiency of the historical simulation from the error analysis to the adjustment and the calculation, It can improve the precision and efficiency of the water flooding history simulation. In addition, a quick, convenient and easy-to-use post-processing function is established, the integrations of the utilization status analysis, residual oil analysis and the potential exploitation measures are realized on platform, the application threshold is reduced, it is a strong guarantee for realizing the goal of precise description, and has wide popularization and application value.

              The software takes the stratification test data and the water absorption profile data as the constraints, forms the stratification (section) water injection observation system, carries on the stratification (section) historical simulation to the water injection well, and improves the simulation accuracy of the connected production well. According to the error theory, the software calculates the error of the simulation index of the whole area, well pattern, single well and sedimentary unit, establishes the parameter adjustment template combined with expert experience, studies the stratification (segment) historical simulation technology based on ECLIPSE software by numerical analysis method, and distinguishes the remaining oil type by combining quantitative description with computer graphic recognition technology. Based on the remaining oil types and quantitative results, the single well which needs adjustment potential exploitation and its corresponding adjustment potential exploitation measures are selected to form the numerical simulation data flow, automatically send the work and extract the prediction results of the scheme, and optimize the scheme. The main functional modules are as follows:

              Simulation results classification and storage module

              Read the ECLIPSE numerical model file and results, including the types of files of PRT, INC.

              Classification and storage according to the static information, the reservoir parameter information, the dynamic information, the simulation information and the process information.

              Historical simulation error analysis module

              Calculating the simulation index error of the whole region, the different well network, the single well and the deposition unit according to the error theory.

              Carrying out error analysis on the simulation result, finding the single well and the deposition unit with larger simulation error.

              Graphic display of the error analysis results, including the contrast curve, the cyclone, the pie chart, etc.

              According to the parameter simulation, adjust the requirement, the classification, sequencing and calculation of the index error result are carried out.

              Stratified historical simulation module

              The water injection quantity of single well is split.

              The single well water injection quantity is split and the result is loaded.

              Adjusting the simulation parameter based on the single-layer simulation index error.

              The stratified simulation trial calculation scheme is generated.

              Calling ECLIPSE simulator for trial calculation.

              Calling the simulation result classification storage module to read the simulation result.

              Calling the historical simulation error analysis module to carry out error analysis on the simulation result.

              Historical simulation auxiliary tool module

              Curve display of the whole area, well network, single well and stratified simulation results.

              Establish expert experience template.

              Adjust the parameter selection mode and the edit panel.

              Development of the property field data calculator.

              Profile comparison of the single-layer single-well simulation value and multi-layers spilt value of multiple schemes, and the adjustment parameters and the correction values of the corresponding scheme are cooperatively displayed so as to simulate the error analysis.

              Work dispatching management module

              The multi-work based on the permission number of the simulator and the computer hardware configuration is simultaneously transmitted.

              Real-time feedback and monitoring of the index simulation error in the working process.

              Management of working process.

              After-processing module

              Display the model in a two-dimensional and isogram diagram.

              The graph is screened according to the user-defined condition and can be output.

              Statistics of geological parameters, such as drilling rate, permeability differential, etc.

              Realizing the integration of the data and graph, clicking the graph to obtain the relevant data.

              Development index calculation, such as injection/production ratio, water flooding control degree, etc.

              Utilization status analysis module

              Analyze the utilization status of designated areas of the whole area, well group and users.

              Single-well single-layer utilization condition analysis.

              The utilization condition analysis of the oil layer group, the sandstone group and the deposition unit is realized.

              Performing the utilization status analysis according to the sedimentary microfacies, the permeability grade and the effective thickness classification.

              Residual oil analysis module of allowed potential exploitation.

              Determination of the limit of the potential exploitation allowed residual oil.

              Determination of the rich part of the potential exploitation allowed residual oil.

              Quantification of the rich part of the single well potential exploitation allowed residual oil.

              Identify the type of potential exploitation allowed residual oil.

              Forming a potential exploitation allowed residual oil database.

              The editing and index of the potential exploitation allowed remaining oil.

              Adjust the assisted potential exploitation decision-making module

              To manage the adjustment of assisted potential exploitation decision-making scheme.

              Pre-selecting single well measures according to the screening conditions of the measures to form a prediction scheme data stream.

              Calling a job scheduling management module to issue a job.

              The optimization result of the scheme is automatically extracted, and the information such as the curve and the table are displayed.

              Comparison of the prediction curves of the multi-scheme.

              Figure1: Daily oil production comprehensive water cut fitting curve in the whole region Figure2: Stratified (segmented) water injection observation system Figure3: Stratified (segmented) simulation curve chart Figure4: Stratified (segmented) error of water injection wel Figure5: Expert experience template Figure6: Plane distribution condition of the residual oil
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