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            產品展廳>>產品銷售>>辰工開發系列軟件>>辰工井筒及地層溫度計算軟件

            本軟件根據地層滲流井筒熱對流及地層熱傳導建立井筒和地層熱流耦合方程,并通過開展數值求解得到單井出水量及井筒溫度損失,為地熱井深層次利用提供單井產能預測。

            根據地層孔隙度、滲透率等參數計算不同井底流壓下的出水量。

            地層溫度計算。

            井筒壓力及溫度損失計算。

            對高溫井計算干度和汽化熱。

            地熱井開發方案優化,用戶可根據需要形成各種標準報告。

            本軟件采用VC2010環境界面,界面友好,輸入輸出參數可兼容各種不同單位,計算程序運行速度快,結果準確可靠,能根據用戶需求形成各種標準的報告。適用于地熱發電中的熱能和產能預測,是地熱發電方案設計的工具軟件。

            圖1 井筒壓力變化圖 圖2 井筒溫度變化圖 圖3 地層出水量計算 圖4 地層出水量預測

            Products>>Products on Sale>>Chengong Development Software Series>>Chengong Software for Calculating the Temperature of the Wellbore and the Formation

            The coupling equation of wellbore and formation heat flow is established according to formation seepage wellbore thermal convection and formation heat conduction, and the single well water output and wellbore temperature loss are obtained by numerical solution, which provides single well productivity prediction for deep utilization of geothermal wells.

            According to formation porosity, permeability and other parameters, the water output under different bottom hole flowing pressure is calculated.

            Formation temperature calculation.

            Calculation of wellbore pressure and temperature loss.

            The dryness and vaporization heat of high temperature wells are calculated.

            Geothermal well development scheme optimization, users can form a variety of standard reports according to needs.

            The software adopts VC2010 interface, the interface is easy to operate, the input and output parameters can be compatible with different units, the calculation program runs fast, the results are accurate and reliable, and can form various standard reports according to the needs of users. It is suitable for thermal energy and productivity prediction in geothermal electric power generation, and it is a tool software for geothermal electric power generation scheme design.

            Figure1: Wellbore pressure change Figure2: Wellbore temperature change Figure3: Formation water output calculation Figure4: Formation water output prediction
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