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天然气物性参数计算与移动应用程序设计

Natural gas property parameter calculation and mobile application program design
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摘要 参考相关文献,整理出依据LKP状态方程计算天然气物性参数的公式与方法,。对比了目前常见的移动端开发模式的优缺点,选择以Cordova为移动开发框架设计了一款以LKP状态方程为计算方法的天然气物性参数移动应用程序。通过计算实例,将软件计算与现场实测对比,结果表明,该软件的计算结果与现场实际值相差较小,计算结果准确。证明了LKP方程计算各项物性参数计算的精确度较高,同时移动应用程序能够满足现场作业人员使用。 Referring to relevant literature,compile formulas and methods for calculating natural gas physical properties parameters based on the LKP state equation,.After comparing the advantages and disadvantages of common mobile development models,Cordova was chosen as the mobile development framework to design a natural gas physical property parameter mobile application using the LKP state equation as the calculation method.Through calculation examples,the software calculation was compared with on-site measurement,and the results showed that the calculation results of the software had a small difference from the actual values on site,and the calculation results were accurate.It has been proven that the LKP equation has high accuracy in calculating various physical property parameters,and the mobile application can meet the needs of on-site operators.
作者 黄本巍 杨洋 Huang Benwei;Yang Yang(School of Earth Sciences and Technology,Southwest Petroleum University,Chengdu 610500;Southwest Petroleum University Institute of Space Information Technology and Big Data Mining,Chengdu 610500)
出处 《石化技术》 CAS 2024年第7期113-115,共3页 Petrochemical Industry Technology
关键词 LKP状态方程 天然气物性计算 移动应用程序 Lee-Kesler-Plocker Natural gas property calculation Mobile applications
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