• <acronym id="bticz"><strong id="bticz"><address id="bticz"></address></strong></acronym>

    <table id="bticz"><strike id="bticz"></strike></table>
    <output id="bticz"></output>
    <object id="bticz"><strong id="bticz"><noframes id="bticz">
      1. <acronym id="bticz"></acronym>
            1. <track id="bticz"></track>

                  產品展廳>>產品銷售>>辰工生產數據分析系列軟件>>辰工生產數據分析軟件 V3.0

                  辰工生產數據分析軟件V3.0主要通過油氣井生產動態分析,處理和解釋油氣井日常動態數據響應,以獲取油氣藏或油氣井參數的重要工具。其具體分析過程是測量井口壓力(或井底壓力)和地面產量數據,通過分析壓力及產量數據的變化趨勢,達到反演地下參數、預測未來產能并了解地層動態的目的,為科學制定油氣開發制度提供科學保障。

                  軟件操作方便,提供的油氣井分析模型達9萬余種,適用于常規油氣、致密油氣、頁巖氣、煤層氣及地熱資源開發等,滿足國內外各種油氣藏勘探開發的解釋需求。

                  軟件在已有辰工生產數據軟件V1.0基礎上功能進行了升級優化,采用全新Ribbon界面設計,界面友好,操作方便。

                  基礎功能

                  數據處理:包括流體類型選擇、基本參數輸入、壓力與流量隨時間變化數據輸入、數據處理及模型診斷等各種功能。

                  傳統擬合:提供傳統的Arps、Fetkovich、Blasingame、A-G、NPI及Transmit分析方法,適用于流動已到達邊界的垂直油氣井。

                  組合擬合:提供物質平衡時間法及基于累積量時間的坐標組合方法,包括雙對數曲線圖版擬合法及Blasingame曲線圖版擬合法,基本涵蓋了目前已有解析解的生產模型,適用于所有油氣井例。

                  可視顯示:根據生產數據分析或試井分析的參數,計算變產量下不同時刻的地層壓力分布,并以二維圖形或三維圖形進行動畫顯示,可以更加直觀描述地層流動情況。

                  特色功能

                  軟件針對頁巖氣等非常規油氣藏的特殊性質及我國深部資源開發特點,提出了新型生產數據分析方法,給出了基于累積量的圖版擬合方法,可實現油氣井變流量變壓力下的生產數據分析;對于頻繁開關井的情況,提供了關井點選取功能,大大提高解釋精度;對于壓裂液返排過程的數據分析,提出了頁巖氣水兩相流模型;未來產量及壓力預測功能中,提供了適用于頁巖氣生產的多種變制度預測方法。

                  豐富的擬合手段:首創鼠標拖動擬合及基于大數據的自動擬合方法,操作簡單,擬合快捷準確,同時也提供了常用的手工擬合與非線性回歸擬合方法。

                  首次提出橫坐標為累積量時間的擬合方法,從根本上解決了物質平衡時間橫坐標不單調的問題,有效地提升了實測數據過于混亂情況下的圖版擬合質量。

                  數據突變點功能:針對頻繁開關井及改變工作制度導致的數據波動劇烈情況,首創虛擬等效時間修正理論,并提供了選突變點功能,大大提高了曲線擬合和歷史擬合的質量,并給出更符合實際的產能預測結果。

                  吸附氣比例計算:首創頁巖氣產出氣中吸附氣比例實時計算功能,輔助判斷頁巖氣井生產階段,幫助合理規劃后續生產。

                  巖氣水兩相流模型:針對頁巖氣返排階段及生產早期大量產液的情況,首次提出頁巖氣水兩相流解析模型,可計算井筒附近水飽和度變化情況,科學規劃頁巖氣返排及生產制度。

                  多樣的產能預測方法:包括定壓力預測,定流量預測,先定產后定壓預測,先定壓后定產預測,壓力趨勢線預測方法等,更加貼近現場生產實際,預測結果更加精確,為后續生產提供理論依據。

                  圖1 Blasingame擬合圖 圖2 雙對數曲線擬合圖 圖3 流量及累積量擬合圖 圖4 數據突變點選擇 圖4 三維壓力分布示意圖

                  Products>>Products on Sale>>Chengong Production Data Analysis Software>>Chengong Production Data Analysis Software V3.0

                  Chengong production data analysis software V3.0 is an important tool to obtain oil and gas reservoir or oil and gas well parameters through oil and gas well production dynamic analysis, processing and interpretation of oil and gas well daily dynamic data response. The specific analysis process is to measure wellhead pressure (or bottom hole pressure) and surface production data. By analyzing the changing trend of pressure and production data, the purpose of inversion of underground parameters, prediction of future production capacity and understanding of formation dynamics is achieved, which provides scientific guarantee for the scientific formulation of oil and gas development system.

                  The software is easy to operate and provides more than 90,000 kinds of oil and gas well analysis models, which is suitable for the development of conventional oil and gas, dense oil and gas, shale gas, coal bed methane and geothermal resources, and meets the interpretation needs of exploration and development of various oil and gas reservoirs domestic and abroad.

                  The software has been upgraded and optimized on the basis of Chen Gong production data software V1.0, using new Ribbon interface design, has friendly interface and easy to operate.

                  Basic functions

                  Data processing: including fluid type selection, basic parameter input, pressure and flow data input over time, data processing and model diagnosis and other functions.

                  Traditional simulation: provides traditional Arps、Fetkovich、Blasingame、A-G、NPI and Transmit analysis methods for vertical oil-gas wells where flow has reached the boundary.

                  Combination simulation: provides the material equilibrium time method and the coordinate combination method based on the accumulation time, including the double logarithmic curve plate simulation method and the Blasingame curve plate simulation method, basically covers the production model which already has the analytical solution, applies to all oil and gas wells example.

                  Capacity prediction: according to the formation parameters obtained from the simulation analysis, the following production conditions (such as constant pressure production) are set, and the trends of future pressure and capacity are predicted, while the auxiliary functions such as transient capacity, capacity evaluation and pressure design are provided.

                  Visual display: Based on the parameters of production data analysis or well test analysis, the formation pressure distribution at different times under variable production capacity can be calculated and animated with two-dimensional or three-dimensional graphics, which can more intuitively describe the formation flow.

                  Characteristic functions

                  According to the special properties of unconventional oil and gas reservoirs such as shale gas and the development characteristics of deep resources in China, the software puts forward a new method of production data analysis, and gives a method of plate simulation based on accumulated production, which can realize the production data analysis under the condition of variable flow and pressure of oil and gas wells; for the case of frequent shut-in and open wells, it provides the function of selecting shut-in point, which greatly improves the interpretation accuracy; for the case of data analysis during the fracturing liquid flowback drainage process, a shale gas and water two-phase flow model is proposed. In the future production and pressure prediction function, various of variable system prediction methods suitable for shale gas production are provided.

                  Abundant simulation methods: initiating mouse drag simulation and the automatic simulation method based on big data, simple to operate, fast and accurate, meanwhile also provides a common manual simulation and nonlinear regression simulation method.

                  First time proposed the simulation method which the transverse coordinate is the cumulative time, which solves the problem that the transverse coordinate of the material equilibrium time is not monotonous, and effectively improves the simulation quality of the plate when the measured data is too chaotic.

                  Data mutation point function: in view of the drastic data fluctuation caused by frequent shut-in and open wells and changing working system, the virtual equivalent time correction theory is first time created, and the function of selecting mutation points is provided, which greatly improves the quality of curve and historical simulation, and gives more realistic production capacity prediction results.

                  Calculation of the proportion of adsorbed gas: real-time calculation function of the proportion of adsorbed gas in shale gas production is first time created, to assist in judging the production stage of shale gas well, and to help the rational planning of subsequent production.

                  Shale gas and water two-phase flow model: in view of the shale gas flowback drainage stage and the large amount of liquid production in the early stage of production, the first two-phase flow analysis model of shale gas and water can be put forward to calculate the change of water saturation near the wellbore and scientifically plan the shale gas flowback drainage and production system.

                  Various production capacity forecasting methods: including constant pressure forecasting, constant flow forecasting, constant production first then constant pressure forecasting, constant pressure first then constant production forecasting, pressure trend line forecasting methods, etc., which are more close to the field production practice, the prediction results are more accurate, and provide theoretical basis for subsequent production.

                  Figure1: Blasingame simulation graph Figure2: Double logarithmic curve simulation graph Figure3: Flowrate and accumulated production simulation graph Figure4: Data mutation points selection Figure5: 3D pressure distribution graph
                  色综合黑人另类无码中文字幕,免费看日本黄色电影片,国产手机av片在线无码观你,av亚洲 av欧洲 av日韩 av综合