期刊文献+
共找到4篇文章
< 1 >
每页显示 20 50 100
中深层同轴地埋管换热器井下换热关键参数及影响规律分析
1
作者 刘成路 胡振阳 +1 位作者 赵永哲 苟立 《科学技术与工程》 北大核心 2025年第8期3134-3141,共8页
为探明中深层同轴地埋管换热器的高效换热特性,基于流体流动传热方程,构建中深层同轴地埋管换热器与周围岩土体的传热模型,应用COMSOL软件进行换热数值分析与计算,研究该模型在不同埋深、内管导热系数、循环水流量、固井材料导热系数条... 为探明中深层同轴地埋管换热器的高效换热特性,基于流体流动传热方程,构建中深层同轴地埋管换热器与周围岩土体的传热模型,应用COMSOL软件进行换热数值分析与计算,研究该模型在不同埋深、内管导热系数、循环水流量、固井材料导热系数条件下名义取热量的变化情况。结果表明:内管导热系数、循环水流量及固井材料导热系数对名义取热量影响较大;内管导热系数从0.5 W/(m·K)降至0.002 W/(m·K),名义取热量增幅为289.4%;循环水流量从20 m^(2)/h升至45 m~2/h,名义取热量增幅为124%;固井材料导热系数从0.8 W/(m·K)升至1.8 W/(m·K),名义取热量增幅为2%。最后依托中煤科工西安研究院(集团)有限公司中深层地热能建筑供热试点示范项目,对该项目连续运行(168 h)工况下实验与模拟数据进行差异化分析。研究成果对中深层同轴地埋管换热器优化设计及中深层地热井高效开发利用具有一定的指导意义。 展开更多
关键词 中深层同轴地埋管换热器 高效换热 流体传热模型 名义取热量
在线阅读 下载PDF
水中电火花放电能量分配系数研究 被引量:6
2
作者 高睿恒 张发旺 +1 位作者 顾琳 赵万生 《电加工与模具》 2014年第2期1-4,9,共5页
采用实验与仿真相结合的方法,通过设计不同的峰值电流及脉宽等加工参数,对水中电火花加工的能量分配系数及电蚀坑形貌的形成进行了研究。基于COMSOL MULTIPHSICS仿真软件建立固体-流体传热耦合模型。通过试验得到不同峰值电流及脉宽条... 采用实验与仿真相结合的方法,通过设计不同的峰值电流及脉宽等加工参数,对水中电火花加工的能量分配系数及电蚀坑形貌的形成进行了研究。基于COMSOL MULTIPHSICS仿真软件建立固体-流体传热耦合模型。通过试验得到不同峰值电流及脉宽条件下的电蚀坑半径,结合最小二乘法拟合电蚀坑半径与脉宽、电流之间的关系。利用拟合公式和所建模型,在不同加工参数下得到不同能量分配系数对应的电蚀坑尺寸。通过与试验测量结果进行比对得到水中电火花放电的能量分配系数,并验证所建模型的正确性。 展开更多
关键词 水中电火花放电 能量分配系数 固体-流体传热耦合模型
在线阅读 下载PDF
Peristaltic transport of MHD Williamson fluid in an inclined asymmetric channel through porous medium with heat transfer 被引量:2
3
作者 K.Ramesh M.Devakar 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第8期3189-3201,共13页
The intention of this investigation is to study the effects of heat transfer and inclined magnetic field on the peristaltic flow of Williamson fluid in an asymmetric channel through porous medium. The governing two-di... The intention of this investigation is to study the effects of heat transfer and inclined magnetic field on the peristaltic flow of Williamson fluid in an asymmetric channel through porous medium. The governing two-dimensional equations are simplified under the assumption of long wavelength approximation. The simplified equations are solved for the stream function, temperature, and axial pressure gradient by using a regular perturbation method. The expression for pressure rise is computed numerically. The profiles of velocity, pressure gradient, temperature, heat transfer coefficient and stream function are sketched and interpreted for various embedded parameters and also the behavior of stream function for various wave forms is discussed through graphs. It is observed that the peristaltic velocity increases from porous medium to non-porous medium, the magnetic effects have increasing effect on the temperature, and the size of the trapped bolus decreases with the increasing of magnetic effects while the trend is reversed with the increasing of Darcy number. Moreover, limiting solutions of our problem are in close agreement with the corresponding results of the Newtonian fluid model. 展开更多
关键词 Williamson fluid heat transfer inclined magnetic field porous medium inclined asymmetric channel
在线阅读 下载PDF
Thermal conductivity modeling of water containing metal oxide nanoparticles 被引量:1
4
作者 Ahmad Azari 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第3期1141-1145,共5页
The nano particles have demonstrated great potential to improve the heat transfer characteristics of heat transfer fluids.Possible parameters responsible for this increase were studied. The heat transfer profile in th... The nano particles have demonstrated great potential to improve the heat transfer characteristics of heat transfer fluids.Possible parameters responsible for this increase were studied. The heat transfer profile in the nanolayer region was combined with other parameters such as volume fraction, particle radius thermal conductivity of the fluid, particle and nanolayer, to formulate a thermal conductivity model. Results predicting the thermal conductivity of nanofluids using the model were compared with experimental results as well as studies by other researchers. The comparison of the results obtained for the Cu O/water and Ti O2/water nanofluids studied shows that the correlation proposed is in closest proximity in predicting the experimental results for the thermal conductivity of a nanofluid. Also, a parametric study was performed to understand how a number of factors affect the thermal conductivity of nanofluids using the developed correlation. 展开更多
关键词 nanofluid effective thermal conductivity nanoparticle nanolayer modeling
在线阅读 下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部