热渗耦合,coupled thermal conduction and groundwater advection
1)coupled thermal conduction and groundwater advection热渗耦合
1.Heat transfer analysis of underground hear exchangers under coupled thermal conduction and groundwater advection conditions;热渗耦合作用下地下埋管换热器的传热分析
2.The model of the fluid in the U-tube and the coupled thermal conduction and groundwater advection model of undergound temperature field around the underground heat exchanger were developed.针对土壤耦合热泵地下U型换热埋管,建立了管内流体以及换热器周围土壤热渗耦合物理数学模型。
3.The model of the fluid in the U-tube and the coupled thermal conduction and groundwater advection model of soil temperature field around the underground heat exchanger were set up,in which the U-tube were identical to real con- dition,the seepage of groundwater was considered.考虑了地下水的渗流作用和U型换热埋管的实际形状,建立了U型管地下换热器管内流体以及周围土壤热渗耦合物理数学模型。
英文短句/例句

1.Investigation on Underground Heat Exchanger under Coupled Thermal Conduction and Groundwater Seepage Conditions;基于热渗耦合作用下的埋管换热性能研究
2.Theoretical and Experimental Research on Geothermal Heat Exchanger in the Integrated Soil Cool Thermal Storage and Ground Source Heat Pump System under Coupled Heat Conduction and Groundwater Advection;土壤蓄冷与热泵集成系统地埋管热渗耦合理论与实验研究
3.Model Considering Thermal Conduction and Groundwater Advection of Soil Viewed as Porous Medium and Numerical Simulation on Soil Temperature Field Around Underground Heat Exchanger;多孔介质土壤热渗耦合模型及埋管周围土壤温度场数值模拟研究
4.Heat transfer analysis of underground heat exchangers under coupled thermal conduction and groundwater advection地下水渗流对土壤耦合热泵换热器传热的影响
5.Application of Thermo-hydro-mechanical Coupled in the Seepage Law of Coal Gas;热流固耦合在煤层气渗流过程中的应用
6.Coupled thermo-hydro-mechanical response of argillite rock based on nonlinear seepage behavoir基于渗透非线性的黏土岩热–水–力耦合效应研究
7.Green's Function Calculation Theory and Parameter Sensitivity Analysis of the Coupled Flow and Heat Transfer in Fractured Rocks裂隙岩体渗流—传热耦合的格林函数计算理论与参数敏感度分析
8.Evaluation of Analytical Solutions and Parameter Sensitivities for Coupled Flow and Heat Transfer in Single-Fractured Rocks单裂隙岩体渗流与传热耦合的解析解与参数敏感度分析
9."In a mechanical transmission, the oil loses its lubricating capacity if overheated; in a hydraulic coupling or converter, the fluid leaks under the pressure created."若过热,机械传动装置中的润滑油会丧失润滑能力,而液力耦合器或变矩器会发生渗漏。
10.The Theory and Application Research of Fluid-solid Coupling Seepage Flow in Low Permeability Reservoir;低渗透储层流固耦合渗流理论及应用研究
11.A Study on Leachate Transport of MSW Landfill under Coupled Temperature-Seepage Action;生活垃圾渗滤液运移的温度—渗流耦合作用研究
12.Permeability of single fracture under coupled hydrological–mechanical–chemical action渗流-应力-化学耦合作用下单裂隙渗透特性
13.Stochastic Finite Element Method for the Coupled Process of the Stress Field and the Seepage Field in the Rock;岩体渗流—应力耦合的随机有限元方法
14.The Study of Fluidl-Solid Coupling Theory of Coalbed Methane in Low Permeabiliyt Reservoir;低渗透煤层瓦斯流固耦合理论的研究
15.Analysis of Slope Stability Considering the Coupling Seepage and Stress;考虑渗流应力耦合的边坡稳定性分析
16.Coupled Analysis of Stress Field and Seepage Field in Deep Foundation Pit;基坑开挖中渗流场与应力场耦合分析
17.Ultrasound-Fenton Method to Landfill Leachate;超声-Fenton试剂氧化耦合处理垃圾渗滤液
18.Numerical simulation of piping based on coupling seepage and pipe flow基于渗流和管流耦合的管涌数值模拟
相关短句/例句

Coupled heat conduction and advection热渗耦合理论
3)coupled thermo-hydro-dynamic analysis热-渗流-动力耦合分析
4)coupling seepage耦合渗流
5)coupled flow耦合渗流
1.Experimental study on coupled flow through low permeability rock under confining pressure;低渗透岩石在围压作用下的耦合渗流实验
6)hydro-mechanical coupling渗流耦合
1.Numerical simulation of hydro-mechanical coupling for a hydraulic project pit in excavation process;某水力枢纽基坑开挖过程渗流耦合数值模拟
2.Taking a hydraulic project foundation pit excavation as engineering background,Biot s consolidation theory as theoretical basis,and Mohr-Coulomb s principle as soil yield criterion,hydro-mechanical coupling of foundation pit is simulated in the process of excavation.以某水利枢纽厂房基坑开挖为工程背景,比奥固结理论为理论基础,莫尔-库仑准则为土体屈服判据,对基坑开挖过程中渗流耦合进行了数值模拟。
延伸阅读

热耦合精馏塔控制分子式:CAS号:性质:多个精馏塔串联操作时,上一塔蒸汽可以做为下一塔热源,以便热量回收利用。首先要求上一塔的塔顶温度高于下一塔提供大部分能量,同时可自行压入下一塔再沸器,这种流程称为精馏塔的热耦合系统。热耦合精馏塔控制即为控制各塔操作状态以稳定热耦合操作。