基本信息来源于合作网站,原文需代理用户跳转至来源网站获取       
摘要:
The problem of hydromagnetic free convection flow over a moving infinite vertical plate with Newtonian heating,mass diffusion and chemical reaction in the presence of a heat source is completely solved.Radiative and porous effects are not taken into consideration but they can be immediately included by a simple rescaling of Prandtl number and magnetic parameter.Exact general solutions for the dimensionless velocity and concentration fields and the corresponding Sherwood number and skin friction coefficient are determined under integral form in terms of error function or complementary error function of Gauss.They satisfy all imposed initial and boundary conditions and can generate exact solutions for any problem with technical relevance of this type.As an interesting completion,uncommon in the literature,the differential equations which describe the thermal,concentration and momentum boundary layer,as well as the exact expressions for the thicknesses of thermal,concentration or velocity boundary layers were determined.Numerical results have shown that the thermal boundary layer thickness decreases for increasing values of Prandtl number and the concentration boundary layer thickness is decreasing with Schmidt number.Finally,for illustration,three special cases are considered and the influence of physical parameters on some fundamental motions is graphically underlined and discussed.The required time to reach the flow according with post-transient solution (the steady-state),for cosine/sine oscillating concentrations on the boundary is graphically determined.It is found that,the presence of destructive chemical reaction improves this time for increasing values of chemical reaction parameter.
推荐文章
期刊_丙丁烷TDLAS测量系统的吸收峰自动检测
带间级联激光器
调谐半导体激光吸收光谱
雾剂检漏 中红外吸收峰 洛伦兹光谱线型
期刊_联合空间信息的改进低秩稀疏矩阵分解的高光谱异常目标检测
高光谱图像
异常目标检测 低秩稀疏矩阵分解 稀疏矩阵 残差矩阵
内容分析
关键词云
关键词热度
相关文献总数  
(/次)
(/年)
文献信息
篇名 General Solutions for Hydromagnetic Free Convection Flow over an Infinite Plate with Newtonian Heating, Mass Diffusion and Chemical Reaction
来源期刊 理论物理通讯(英文版) 学科
关键词
年,卷(期) 2017,(12) 所属期刊栏目
研究方向 页码范围 768-782
页数 15页 分类号
字数 语种 英文
DOI 10.1088/0253-6102/68/6/768
五维指标
传播情况
(/次)
(/年)
引文网络
引文网络
二级参考文献  (0)
共引文献  (0)
参考文献  (0)
节点文献
引证文献  (0)
同被引文献  (0)
二级引证文献  (0)
2017(0)
  • 参考文献(0)
  • 二级参考文献(0)
  • 引证文献(0)
  • 二级引证文献(0)
引文网络交叉学科
相关学者/机构
期刊影响力
理论物理通讯(英文版)
月刊
0253-6102
11-2592/O3
北京2735信箱
eng
出版文献量(篇)
6547
总下载数(次)
1
  • 期刊分类
  • 期刊(年)
  • 期刊(期)
  • 期刊推荐
论文1v1指导