标题:A HEAT AND MASS TRANSFER COUPLING MODEL FOR TRANSITION INTERFACE OF EXPANDING SOLVENT STEAM-ASSISTED GRAVITY DRAINAGE
作者:Hao Liu
网址:https://www.dl.begellhouse.com/journals/3d21681c18f5b5e7,19a20ad70458ce39,219bb6113766322a.html
求助者:云飞
-
求助时间:2022/3/25 9:25:22
-
求助状态:AB图书馆客服已找到全文,详情咨询在线客服qq 1257749646
-
文献摘要:
Expanding solvent steam-assisted gravity drainage (ES-SAGD) has been proved by field pilots that it is capable of increasing the production rate as well as lowering the steam–oil ratio. However, the evaluation of ES-SAGD based on a single-component solvent diffusion model always presents a large deviation between the prediction and practical data, due to the fact that a multicomponent solvent is actually employed on the field. In this paper, a heat and mass transfer coupling model for transition interface of multicomponent expanding solvent steam-assisted gravity drainage is established. In the model, the equation of state and the fugacity equation are integrated to calculate the equilibrium state of transition interface. Then, the transition interface model is built by consociating heat transfer expressions and gaseous phase convective equations. Finally, based on the temperature and velocity boundaries, the model is solved by applying the implicit Runge-Kutta method and the results are used to analyze the heat and mass transfer characteristics. Results show that increasing the fraction of the lighter solvent can accelerate mass transfer, but the heat transferred is seriously deteriorated. Besides, the closer the bubble point temperature and dew point temperature of the stream are, the smaller the elevation of mass transfer is, while the heat transfer is almost unaffected. Therefore, in order to achieve optimum effects of heat and mass transfer, solvents with a larger saturation temperature difference should be chosen and the composition should be optimized based on the formation thermal properties and solvent components.
文献《A HEAT AND MASS TRANSFER COUPLING MODEL FOR TRANSITION INTERFACE OF EXPANDING SOLVENT STEAM-ASSISTED GRAVITY DRAINAGE》已经找到全文,详情请咨询在线客服 qq 1257749646。
如果您还有其他需要寻找全文的文献,请点击文献求助提交
说明:文献求助是指AB图书馆根据读者的需求,为读者查找论文资料的服务。如果您搜索到相关资料,但不能获取全文,此时便可将有关信息提交求助,由值班客服为您寻找所需文献的全文。提供的文献均来自网络共享资源,不涉及版权交易;如侵犯了您的权利,请告知在线客服,立马删除。文件格式以PDF格式为主。