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1.
The problem of steady, laminar, thermosolutal Marangoni convection flow of an electrically-conducting fluid along a vertical permeable surface in the presence of a magnetic field, heat generation or absorption and a first-order chemical reaction effects is studied numerically. The general governing partial differential equations are converted into a set of self-similar equations using unique similarity transformations. Numerical solution of the similarity equations is performed using an implicit, iterative, tri-diagonal finite-difference method. Comparisons with previously published work is performed and the results are found to be in excellent agreement. Approximate analytical results for the temperature and concentration profiles as well as the local Nusselt and sherwood numbers are obtained for the conditions of small and large Prandtl and Schmidt numbers are obtained and favorably compared with the numerical solutions. The effects of Hartmann number, heat generation or absorption coefficient, the suction or injection parameter, the thermo-solutal surface tension ratio and the chemical reaction coefficient on the velocity, temperature and concentration profiles as well as quantitites related to the wall velocity, boundary-layer mass flow rate and the Nusselt and Sherwood numbers are presented in graphical and tabular form and discussed. It is found that a first-order chemical reaction increases all of the wall velocity, Nusselt and Sherwood numbers while it decreases the mass flow rate in the boundary layer. Also, as the thermo-solutal surface tension ratio is increased, all of the wall velocity, boundary-layer mass flow rate and the Nusselt and Sherwood numbers are predicted to increase. However, the exact opposite behavior is predicted as the magnetic field strength is increased. 相似文献
2.
The problem of coupled heat and mass transfer by natural convection from a semi-infinite inclined flat plate in the presence
of an external magnetic field and internal heat generation or absorption effects is formulated. The plate surface has a power-law
variation of both wall temperature and concentration and is permeable to allow for possible fluid wall suction or blowing.
The resulting governing equations are transformed using a similarity transformation and then solved numerically by an implicit,
iterative, finite-difference scheme. Comparisons with previously published work are performed and good agreement is obtained.
A parametric study of all involved parameters is conducted and a representative set of numerical results for the velocity
and temperature profiles as well as the skin-friction parameter, average Nusselt number, and the average Sherwood number is
illustrated graphically to show typical trends of the solutions.
Received on 26 October 1998 相似文献
3.
The freezing of water-salt (sodium chloride) solution on a vertical wall of a rectangular cavity has been studied experimentally. The influence of thermally and solutally driven natural convection on the freezing process has been examined. The spatial and temporal variations of the temperature in the solid, mush and liquid regions have been recorded. By selectively withdrawing liquid samples and in conjunction with a refractometer, the concentration variation has been studied. The thermosolutal convective flow strongly influenced the rate of freezing. Due to the continuous rejection of salt, a solutally stratified stable region developed at the bottom of the test cell. The thickness of this region increased with the progress of freezing and it was separated from the remaining bulk liquid, where convective flow was present, by a thin interface.
Gefrieren einer Wasser-Salzlösung unter dem Einfluß temperatur- und konzentrationsinduzierter Konvektion
Zusammenfassung Es wurde der Gefriervorgang einer Wasser-Salzlösung (H2O-NaCl) an der senkrechten Wand einer rechtekigen Kammer experimentell untersucht, und zwar unter dem Einfluß der durch Temperatur- und Konzentrationsunterschiede ausgelösten Freikonvektion. Die mitgeteilten Ergebnisse betreffen die räumlichen und zeitlichen Temperaturänderungen im Fest-, Misch- und Flüssigkeitsgebiet. Die Konzentrationsänderungen wurden durch selektive Entnahme von Flüssigkeitsproben in Verbindung mit refraktometrischen Messungen ermittelt. Das Gefriergeschehen hängt wesentlich von der durch Temperatur- und Konzentrationsunterschiede gesteuerten Konvektionsströmung ab. Infolge ständiger Anreicherung der Flüssigkeit mit Salz entwickelte sich eine konzentrationsstabilisierte Schicht am Boden der Versuchskammer, die mit zunehmender Eisbildung anwuchs und vom konvektiv beeinflußten Flüssigkeitsgebiet durch eine dünne Grenzschicht getrennt blieb.相似文献
4.
5.
The article examines the unsteady mixed convection flow over a vertical stretching sheet in the presence of chemical reaction and heat generation or absorption with non-uniform mass transfer. The unsteadiness is caused by the time dependent free stream velocity varying arbitrarily with time. Non-similar solutions are obtained numerically by solving the coupled nonlinear partial differential equations using the quasilinearization technique in combination with an implicit finite difference scheme. To reveal the tendency of the solutions, typical results for the local skin friction coefficient and the local Nusselt and Sherwood numbers are presented for different values of parameters. The effects of various parameters on the velocity, temperature, and concentration distributions are discussed here. The present numerical results are compared with the previously published work, and the results are found to be in excellent agreement. 相似文献
6.
7.
B. Martin 《International Journal of Non》1967,2(4):285-301
Exact solutions are given for flows of power-law fluids, with heat generation and temperature dependent viscosity, in three situations, namely pressure flow through a circular tube, shear flow between rotating concentric cylinders and shear flow between parallel plates. The application of the results to the experimental determination of the material parameters is discussed and it is shown that the method usually adopted in practice, does in fact lead to accurate estimates. 相似文献
8.
The problem of double-diffusive convection in inclined finned triangular porous enclosures for various thermal and concentration
boundary conditions and in the presence of heat source or sink was studied. The finite difference method was employed to solve
the dimensionless governing equations of the problem. The effects of the governing parameters, namely the dimensionless time
parameter, the inclination angle, Darcy number, heat generation/absorption parameter, the buoyancy parameter and the Rayleigh
number on the streamlines, temperature and concentration contours as well as selected velocity component in the x-direction, local and average Nusselt numbers and local and average Sherwood number at the heated and concentrated wall for
various values of the aspect ratio and the position of the fin were considered. The present results are validated by favorable
comparisons with previously published results. All the results of the problem were presented in graphical and tabular forms
and discussed. 相似文献
9.
Dr. R. L. Webb 《Heat and Mass Transfer》1971,4(4):197-204
A critical evaluation of recently proposed analytical solutions and Reynolds analogy based correlations for heat transfer with constant properties to turbulent flow of liquids and gases in smooth tubes is presented. A new Reynolds analogy correlation is developed which agrees with the solutions of DeissleR, and Sparrow et al., within ±2 percent. The ability of this equation to correlate constant properties heat transfer data is compared with the equations proposed by FRiend and MetzneR, and Petukhov and Popov. Both the new equation and the Petukhov and Popov equation provide a very good correlation of existing data for.7 <Pr < 50. However, the Petukhov and Popov equation yielded a better correlation of the high Schmidt number mass transfer data of six investigators. Although there is considerable disagreement among these mass transfer data, the Petukhov and Popov equation agrees with the smoothed results of four investigators within ±15 percent. Therefore, this equation is tentatively recommended for use at high Prandtl or Schmidt numbers. The recommended equation is compared to the popular Colburn and Dittus-Boelter empirical equations and is shown to be superior to both equations. 相似文献
10.
Steady convection in a gaseous medium with intense heat generation is considered without making use of the Boussinesq approximation. The effect on convection of the thermal boundary conditions at the walls of the enclosure is investigated, together with the influence of a longitudinal magnetic field which is effective when the medium is strongly heated and becomes electrically conducting.Translated from Izvestiya Rossiiskoi Akademii Nauk, Mekhanika Zhidkosti i Gaza, No.3, pp. 11–18, May–June, 1992.The authors are grateful to the participants in the G. A. Lyubimov seminar for discussing their work. 相似文献
11.
Marc-André Douville Philippe Le Grognec 《International Journal of Solids and Structures》2013,50(16-17):2597-2609
Sandwich structures are widely used in many industrial applications, due to the attractive combination of a lightweight and strong mechanical properties. This compromise is realized thanks to the presence of different parts in the composite material, namely the skins and possibly core reinforcements or thin-walled core structure which are both thin/slender and stiff relative to the other parts, namely the homogeneous core material, if any. The buckling phenomenon thus becomes mainly responsible for the final collapse of such sandwiches. In this paper, classical sandwich beam-columns (with homogeneous core materials) are considered and elastic buckling analyses are performed in order to derive the critical values and the associated bifurcation modes under various loadings (compression and pure bending). The two faces are represented by Euler–Bernoulli beams, whereas the core material is considered as a 2D continuous solid. A set of partial differential equations is first obtained from a general bifurcation analysis, using the above assumptions. Original closed-form analytical solutions of the critical loading and mode of a sandwich beam-column are then derived for various loading conditions. Finally, the proposed analytical formulae are validated using 2D linearized buckling finite element computations, and parametric analyses are performed. 相似文献
12.
J.ZUECO S.AHMED 《应用数学和力学(英文版)》2010,31(10):1217-1230
An exact and a numerical solutions to the problem of a steady mixed convective MHD flow of an incompressible viscous electrically conducting fluid past an infinite vertical porous plate with combined heat and mass transfer are presented.A uniform magnetic field is assumed to be applied transversely to the direction of the flow with the consideration of the induced magnetic field with viscous and magnetic dissipations of energy.The porous plate is subjected to a constant suction velocity as well as a uniform mixed stream velocity.The governing equations are solved by the perturbation technique and a numerical method.The analytical expressions for the velocity field,the temperature field,the induced magnetic field,the skin-friction,and the rate of heat transfer at the plate are obtained.The numerical results are demonstrated graphically for various values of the parameters involved in the problem.The effects of the Hartmann number,the chemical reaction parameter,the magnetic Prandtl number,and the other parameters involved in the velocity field,the temperature field,the concentration field,and the induced magnetic field from the plate to the fluid are discussed.An increase in the heat source/sink or the Eckert number is found to strongly enhance the fluid velocity values.The induced magnetic field along the x-direction increases with the increase in the Hartmann number,the magnetic Prandtl number,the heat source/sink,and the viscous dissipation.It is found that the flow velocity,the fluid temperature,and the induced magnetic field decrease with the increase in the destructive chemical reaction.Applications of the study arise in the thermal plasma reactor modelling,the electromagnetic induction,the magnetohydrodynamic transport phenomena in chromatographic systems,and the magnetic field control of materials processing. 相似文献
13.
Meccanica - We prove the existence and, in certain cases, the uniqueness of functional solutions for boundary value problems of systems of P.D.E. in divergence form with constant boundary... 相似文献
14.
A numerical study of double-diffusive natural convection in an enclosure with a partial vertical heat and mass sources for an aspect ratio Ar = 4 has been carried out. The influence of various dimensionless parameters (Rayleigh number, buoyancy ratio, source location, Lewis number, and source length) on the flow behavior are investigated. Correlations of average Nusselt and Sherwood numbers are obtained as function of two parameters (Ra, d) and (Le, d), respectively. 相似文献
15.
In this study, a numerical methodology for the solution of conjugate heat and mass transfer problem is presented. Fluid flow,
heat and mass transfer over a rectangular brick due to transient laminar mixed convection has been numerically simulated.
The coupled non-linear partial differential equations, for both gas phase and solid are solved using finite element procedure.
Flow is assumed to be incompressible, two-dimensional, laminar. Analysis has been carried out at a Reynolds number of 200
with Pr = 0.71. The effect of buoyancy on the brick drying has been investigated. Velocity vectors, streamlines in the flow
field and temperature and moisture contours and temperature distribution along the solid surface are presented. It is observed
that there is considerable effect of buoyancy during drying. The results indicate a non-uniform drying of the brick with the
leading edge drying faster than the rest of the brick.
Received on 9 December 1998 相似文献
16.
The objective of the present study is to develop a novel similarity model for analysis of mixed convection heat and mas transfer
in combined stagnation and rotation-induced flows over a rotating disk. Thermal and concentration (solutal) buoyancy effects
stemmed from temperature and concentration gradients in rotational as well as gravitational forces fields are all taken into
account. The influences of the forced flow, disk rotation, thermal buoyancy, buoyancy ratio and the fluid properties, i.e.
Prandtl and Schmidt numbers, on the flow, temperature and concentration fields and the associated friction factors, heat and
mass transfer rates are investigated. The present results reveal the effects of various buoyancy modes with combined forces
on the transport phenomena in rotating-disk flows, and the analysis is also useful in understanding the mechanisms of mixed
convection in the class of rotating fluids.
Received on 30 December 1997 相似文献
17.
Meccanica - In this study, an innovative procedure is presented for the analysis of the static behavior of plates at the micro and nano scale, with arbitrary shape and various boundary conditions.... 相似文献
18.
The problem of the self-similar boundary flow of a “Darcy-Boussinesq fluid” on a vertical plate with temperature distribution
T
w(x) = T
∞+A·x
λ and lateral mass flux v
w(x) = a·x
(λ−1)/2, embedded in a saturated porous medium is revisited. For the parameter values λ = 1,−1/3 and −1/2 exact analytic solutions
are written down and the characteristics of the corresponding boundary layers are discussed as functions of the suction/ injection
parameter in detail. The results are compared with the numerical findings of previous authors.
Received on 8 March 1999 相似文献
19.
Chien-Hsin Chen 《International Journal of Non》2009,44(6):596-603
The problem of magneto-hydrodynamic mixed convective flow and heat transfer of an electrically conducting, power-law fluid past a stretching surface in the presence of heat generation/absorption and thermal radiation has been analyzed. After transforming the governing equations with suitable dimensionless variables, numerical solutions are generated by an implicit finite-difference technique for the non-similar, coupled flow. The solution is found to be dependent on the governing parameters including the power-law fluid index, the magnetic field parameter, the modified Richardson number, the radiation parameter, the heat generation parameter, and the generalized Prandtl number. To reveal the tendency of the solutions, typical results for the velocity and temperature profiles, the skin-friction coefficient, and the local Nusselt number are presented for different values of these controlling parameters. 相似文献
20.
N. Samyuktha R. Ravindran M. Ganapathirao 《Journal of Applied Mechanics and Technical Physics》2017,58(1):116-128
An analysis is performed to study the effects of the chemical reaction and heat generation or absorption on a steady mixed convection boundary layer flow over a vertical stretching sheet with nonuniform slot mass transfer. The governing boundary layer equations with boundary conditions are transformed into the dimensionless form by a group of nonsimilar transformations. Nonsimilar solutions are obtained numerically by solving the coupled nonlinear partial differential equations using the quasi-linearization technique combined with an implicit finite difference scheme. The numerical computations are carried out for different values of dimensionless parameters to display the distributions of the velocity, temperature, concentration, local skin friction coefficient, local Nusselt number, and local Sherwood number. The results obtained indicate that the local Nusselt and Sherwood numbers increase with nonuniform slot suction, but nonuniform slot injection produces the opposite effect. The local Nusselt number decreases with heat generation and increases with heat absorption. 相似文献