首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 31 毫秒
1.
The possibility of analyzing the nonsteady temperature fields of inhomogeneous systems using the quasi-homogeneous-body model is investigated.Notation t, tI, ti temperature of quasi-homogeneous body inhomogeneous system, and i-th component of system - a, , c thermal diffusivity and conductivity and volume specific heat of quasi-homogeneous body - ai i, ci same quantities for the i-th component - q heat flux - S, V system surface and volume - x, y coordinates - macrodimension of system - dimensionless temperature Fo=a/2 - Bi=/ Fourier and Biot numbers - N number of plates - =h/ ratio of micro- and macrodimensions - V, volumeaveraged and mean-square error of dimensionless-temperature determination - time - mi i-th component concentration Translated from Inzhenerno-Fizicheskii Zhurnal, Vol. 39, No. 1, pp. 126–133, July, 1980.  相似文献   

2.
The kinetics of the cooling of a plane semitransparent layer under conditions of a regular regime of the second kind is analyzed.Notation time - T temperature - Te temperature of the surrounding medium (the ambient temperature) - T° initial temperature of the layer - he coefficient of convective heat exchange - x coordinate - coefficient of absorption of the substance - n index of refraction - B(, T) surface density of radiation of a black body - C bulk specific heat - K thermal conductivity - wavelength of the radiation - t range of wavelengths in which the material is partially transparent - op range of wavelengths in which the material is opaque - degree of blackness of the surfaces in the range of op - R() coefficient of reflection from the inner surfaces of the layer - + intensity of the rays consisting of acute angles with the inner normal to the surface x = 0 - intensity of rays in the opposite direction - q thermal flux - angle measured from the inner normal to the surface x = 0 Translated from Inzhenerno-Fizicheskii Zhurnal, Vol. 41, No. 3, pp. 541–546, September, 1981.  相似文献   

3.
A method is proposed for numerical calculation of the temperature field of a generalized model of electronic equipment with high component density.Notation x,y,z,x,y spatial coordinates, m - time, sec - Lx, Lv, Lz dimensions of heated zone, m - x, y, z effective thermal-conductivity coefficients of heated zone, W/m·deg - 2 thermal conductivity of chassis, W/m·deg - a z thermal diffusivity of heated zone along z axis, m2/sec - c1 effective specific heat of heated zone, J/kg·deg - 1 effective density of heated zone, kg/m3 - c3, 3, c2, 2 thermophysical characteristics of cooling agent and chassis, J/kg·deg·kg/m3 - qv(x, ), q(x, y) volume heat-source distribution, W/m3 - qs (x) surface heat-source distribution, W/m2 - p number of cooling agent channels - Fo Fourier number - Bi Biot number - Ui coolant velocity in i-th channel, m/sec - T1(x, ), T2(x, ), T3(x, ) temperature distribution of heated zone, chassis, and coolant, °K - T30, T10(x), T20(x) initial temperatures, °K - T3in coolant temperature at input to channel, °K - TT(x) effective temperature distribution of heat loss elements, °K - TC temperature of external medium, °K - dimensionless heated zone temperature - v(x) local volume heat exchange coefficient, W/m3·deg - 12(x), 1C(x), 1T(x) heat liberation coefficients - W/m2·sec; 21(x, y), 2c(x, y), 2T(x, y) volume heat-exchange coefficients of chassis with heated zone, medium, and cooling elements, W/m3·deg Translated from Inzhenerno-Fizicheskii Zhurnal, Vol. 40, No. 5, pp. 876–882, May, 1981.  相似文献   

4.
Exposures consisting of 1 to 900 h at 1000 and 1100 °C after an ageing treatment of 16 h at 870 °C were used to study the thermal stability of selected -strengthened Ni-based superalloys representing conventional, directional solidification, and single-crystal castings. Various techniques of microscopy, spectroscopy and diffraction were used to characterize the microstructure. Primary MC carbides in the alloys studied were found to be stable toward decomposition into lower carbides. In the aged condition, the strengthening phase assumed a cuboidal morphology; however, all alloys also contained varying proportions of coarse lamellar and hyperfine cooling . On an atomic scale, the nature of the cuboidal -matrix interface was found to vary from coherent to partially coherent. However, the overall lattice mismatch varied from one alloy to another depending upon its composition and the distribution of various elements in carbide phases and lamellar phase. Directional growth of the cuboidal phase upon exposure to higher temperatures was found to be accelerated by a large initial lattice mismatch leading to a considerable loss of coherency, as indicated by the observation of dislocation networks around the particles. Although the composition of the phase remained essentially unchanged, there was a marked change in matrix composition. Sigma phase was found to precipitate in all alloys, but its thermal stability was a function of alloy composition. The initial decrease in hardness followed by a hardening effect during exposure could be explained in terms of the partial dissolution of the phase and precipitation of sigma phase.  相似文献   

5.
The specific heat under saturated vapor pressure of pure 4He and of six 3He-4He mixtures up to X = 0.545 was measured in the temperature range 3 × 10–6T-T ¦ <10–2 K. The critical exponents and along the path = are independent of X up to X = 0.545, where (= 34) is the difference between chemical potentials. If we take account of higher order terms, the exponent (= ) and the amplitude ratio A /A are independent of X up to X = 0.545. The values of and A /A are –0.023 and 1.090, respectively. The critical-tricritical crossover effect was observed for X = 0.545 and the boundary of crossover region closest to the critical region was at /T = (1–2) × 10–4, where is the distance ¦TT ¦ along the path = . This value is in good agreement with the estimated value by Riedel et al. But, remarkably, in the case of X = 0.439 this effect was not observed.  相似文献   

6.
Summary The hypersonic small-disturbance theory is reexamined in this study. A systematic and rigorous approach is proposed to obtain the nonlinear asymptotic equation from the Taylor-Maccoll equation for hypersonic flow past a circular cone. Using this approach, consideration is made of a general asymptotic expansion of the unified supersonic-hypersonic similarity parameter together with the stretched coordinate. Moreover, the successive approximate solutions of the nonlinear hypersonic smalldisturbance equation are solved by iteration. Both of these approximations provide a closed-form solution, which is suitable for the analysis of various related flow problems. Besides the velocity components, the shock location and other thermodynamic properties are presented. Comparisons are also made of the zeroth-order with first-order approximations for shock location and pressure coefficient on the cone surface, respectively. The latter (including the nonlinear effects) demonstrates better correlation with exact solution than the zeroth-order approximation. This approach offers further insight into the fundamental features of hypersonic small-disturbance theory.Notation a speed of sound - H unified supersonic-hypersonic similarity parameter, - K hypersonic similarity parameter, M - M freestream Mach number - P pressure - T temperature - S entropy - u, v radial, polar velocities - V freestream velocity - shock angle - cone angle - density - density ratio, /() - ratio of specific heats - polar angle - stretched polar angle, / - (), (), () gage functions  相似文献   

7.
The effects of substrate temperature (Ts) on the properties of vacuum evaporated p-type Ge thin films have been investigated for 25s<400°C. Increase in the substrate temperature improves the crystallinity and increases the grain size resulting a gradual change from amorphous to polycrystalline structure which was attained above a substrate temperature of 225°C. Low resistive (1×10–2 ohm-cm) and high mobility (280 cm2/V·s) films were obtained at Ts=400°C. It has been observed that the conduction mechanism in polycrystalline films was dominated successively by hopping, tunneling and thermionic emission as the sample temperature was increased from 40 to 400 K. In amorphous samples, conduction was described in terms of different hopping mechanisms.  相似文献   

8.
We have solved the Eliashberg gap equations which are valid for arbitrary phonon frequency, (ph), electron-phonon coupling constant, (), and screened Coulomb interaction, ( *). We have used values of (ph),, and ( *) appropriate to the cuprate superconductors, and calculated the density of states, the pair potential., and the value of the gap at T=0 K. Using the linearized Eliashberg equations in the matrix representation, we have calculatedT c and 2/k T c . We have found that we can account for the highT c 's in the cuprates with reasonable values for, *, and ph.  相似文献   

9.
Conversion-electron Mössbauer spectra of epitaxial -Fe16N2 and -Fe8N films have been studied and their differences are discussed in detail. The Mössbauer spectrum of -Fe16N2 can be decomposed into three subspectra, which correspond to the 4d, 8h and 4c sites. The Mössbauer spectrum of -Fe8N can be fitted using four spectra based on a nitrogen-atom-random-distribution model. The average hyperfine field is larger (3%) for -Fe16N2 than for -Fe8N, which is approximately consistent with a 4.1% enhancement of the magnetic moments for -Fe16N2. The iron moments tend to locate in the film plane for -Fe16N2 and to arrange perpendicularly to the film plane for -Fe8N.  相似文献   

10.
The thermal conductivity and electrical resistivity of the tin-lead alloy system Sn x Pb1 – x (x = 0.85, 0.7 0.5 0.3) were measured in the temperature range 7–300 K. The thermal conductivity was analyzed at temperature T 20K, assuming 1//T+Tn, where , , and n are constants. The analysis shows that n < 2, and not n 2, which would be expected for a normal pure metal. The electrical resistivities could be represented by a T 5 relation for temperatures up to about 60 K. The characteristic temperature R appears to decrease with increasing weight percent of lead. The total Lorenz functions were high, indicating the presence of phonon conductivity. The phonon conductivity g appears to vary with T, and can be represented by g=a/Tn (a > 0) and n2.Work supported by the Universiti Sains Malaysia.  相似文献   

11.
We examine the applicability of the standard McMillan inversion of Eliashberg's equations for superconductors with a nonconstant electronic density of statesN(). We do this usign simple models forN() and a realistically shapedN() taken from recent band structure work for Nb3Sn. It turns out that peak structure inN() near F may lead to gross errors in the derived Eliashberg function 2F() when the energy dependence ofN() is omitted in the inversion procedure. For Nb3Sn, this leads to a 40% overestimate of when 2F() is evaluated via the standard McMillan program.  相似文献   

12.
Experimental evidence for flux-line cutting in superconductors (intersection and cross-joining of singly quantized vortices) is briefly reviewed. The interaction energy between two straight vortices tilted at an angle ( 0)is then shown to be finite in the London model, i.e., in the limit of vanishing core radius. Next, the activation energy and maximum interaction force are calculated for the vortices in an analytic approximation to the Ginzburg-Landau theory. Here two competing interactions determine the behavior. Electromagnetic repulsion (0 < < /2) varies as cos and decays over distances scaled by the penetration depth , while core attraction is independent of and varies over distances scaled by the coherence length . The force is always repulsive at large flux-line separation (0 < < /2) and its maximum decreases rapidly as decreases, so that flux-line cutting isexpected to be more probable in low- materials. The calculations provide a basis for explaining longitudinal flux-flow resistance as well as some intriguing magnetization behavior in the same configuration.This work was supported by the U.S. Department of Energy, Office of Basic Energy Sciences, Materials Sciences Division, and by the Deutsche Forschungsgemeinschaft.On leave from Max-Planck-Institut für Metallforschung, Institut für Physik, Stuttgart, West Germany.On leave from New University of Ulster, Coleraine, Northern Ireland.  相似文献   

13.
Summary The validity of an approximation 0 of one of the solutions of a set of two linear coupled dispersive wave equations has been discussed. 0 is the solution of a linear Korteweg-de Vries equation and satisfies the same initial condition as . It is shown that for square integrable solutions having a spectral range not exceeding [–, ] the approximation is useful if 5 2t«1 in the sense that –0(t)« (t)(L 2 -norm). is a measure for the dispersion. The approximation fails in that sense ast . Some remarks to a similar nonlinear problem are made.  相似文献   

14.
Gorbunov  S. I.  Seleznev  A. G. 《Radiochemistry》2001,43(2):111-117
The crystal structure of film samples of "high-level" (based on 238Pu) and low-level (based on 239Pu) metallic plutonium during their prolonged (up to 343 days) storage (self-irradiation) at room temperature was studied by X-ray diffraction. In the samples of high-level plutonium, the -Pu and -Pu lattices coexist. In the period of 40-60 days, the other known crystal modifications of plutonium (-Pu, -Pu, -Pu, and -Pu) are also present. Low-level plutonium had only the -Pu lattice. A possible origin of this phenomenon is discussed.  相似文献   

15.
A glass-ceramic material was developed to act as a flow visualization material. Preliminary experiments indicate that aperiodic, thermally induced, convective flows can be sustained at normal processing conditions. These flows and the stress and temperature gradients induced are most likely responsible for the anomalous behaviour seen in these materials and the difficulties encountered in their development and in their production on industrial and experimental scales. A simple model describing the dynamics of variable-viscosity fluids was developed and was shown to be in qualitative agreement with more sophisticated models as well as with experimental results. The model was shown to simulate the dependence of the critical Rayleigh number for the onset of convection on the viscous properties of the fluid at low T, and also to simulate quenching behaviour when the temperature differences were high.Nomenclature C p Heat capacity - D, E, F Expansion coefficients - H Height of the roll cell - Pr Prandtl number - R a Rayleigh number - R c Critical Rayleigh number for the onset of convection in a constant-viscosity fluid - S Dimensionless stream function - T Temperature - T m Mean temperature - T 0 Bottom surface temperature - T r Reference temperature - a Aspect ratio of cell - g Acceleration due to gravity - k Thermal conductivity - k 1 Function related to 2v/T 2 - k 2 Function related to 4v/T 4 - r Rayleigh number ratioR a/R c - t Time - w Dimensionless vertical coordinate - w m Mean cell height - x Horizontal coordinate - y Dimensionless horizontal coordinate - z Vertical coordinate - , Constants - t Thermal expansion coefficient - Constant in viscosity function - T Temperature difference between top and bottom surfaces - i Viscosity coefficients - Kinematic viscosity - m Mean kinematic viscosity - Dimensionless kinematic viscosity - Thermal diffusivity - Non-linear temperature function - Dimensionless non-linear temperature function - o - Stream function - Dimensionless time - Eigenvalues  相似文献   

16.
This paper presents a finite element formulation for a three dimensional nine node p-version hierarchical curved shell element for heat conduction where the element temperature approximation can be of arbitrary order p , p , and p in the , and directions. This is accomplished by first, constructing one dimensional hierarchical approximation functions and the corresponding nodal variable operators for each of the three directions , and using Lagrange interpolating polynomials and then taking their products (sometimes also called tensor products). The element approximation functions as well as the nodal variables are hierarchical and therefore the element matrices and the equivalent heat vectors are hierarchical also i.e. the element properties corresponding to polynomial orders p , p , and p are a subset of those corresponding to (p +1), (p +1), and (p +1). The element formulation ensures C 0 continuity. The curved shell geometry is constructed in the usual way by taking the coordinates of the nodes lying on the middle surface of the element (=0) and the nodal thickness vectors. The element properties i.e. element matrices and the equivalent heat vectors are derived using weak formulation (or quadratic functional) of the three dimensional F ourier heat conduction equation and the hierarchical element temperature approximation. The element formulation is equally effective for very thin as well as extremely thick shells. Numerical examples are presented to demonstrate the accuracy, efficiency, modeling convenience, faster rate of convergence and over all superiority of the present formulation. The h-approximation results are presented for comparison purposes.  相似文献   

17.
Conclusions It is possible by means of the above resonator, according to our analysis and in the absence of air gaps between the sample and the line, to evaluate the real components and of permeability and permittivity respectively in the range of 2 to 100 with an error between ±3% and ±10% in the temperature range from room temperature to +400°C, and the imaginary components and (for tan and tan in the range of 0.001 to 2) with an error of 7 to 20% over the same temperature range.  相似文献   

18.
We have measured the 16 Hz susceptibility of the giant magnetic moments induced by Fe impurities in highly dilutedPdFex andPtFex samples with 2.5 ppm x 75 ppm in a wide temperature range, 30 K T 300 mK, and at static magnetic fields 0,01 mT B 25 mT. We find spin glass freezing at Tf(X)/X0,19mK/ppm Fe forPdFex and the larger value 0.26 mK/ppm Fe forPtFex. This is the first observation of spin glass freezing inPtFex. In the low-temperature range T 0.5Tf(x), the susceptibilities follow — 0 T with small zero-temperature 0 values forPdFeX and vanishing 0 values forPtFex. In the paramagnetic high-temperature range, we find (T — )it-1 at T 10 mK independent of x forPdFex, and at T 2Tf(x) dependent of x forPtFex with vanishing values for both systems. The data compare well to the predictions of the Thouless-Anderson-Palmer TAP approach of the Sherrington-Kirkpatrick SK model for spin glasses.  相似文献   

19.
The 2 phase transformation in fractured high temperature stress rupture Ti-48Al-2Nb(at.%) alloy has been studied by analytical electron microscopy. 2 and phases were found at grain boundaries. 2 layers that suspended in layers and interfacial ledge higher than 2d (111) at /2 interfaces were observed in the lamellar grains. These facts indicated that 2 phase transformation and dynamic recrystallization have occurred during high temperature stress rupture deformation. It can be concluded that deformation induced 2 phase transformation and dynamic recrystallization resulted in the presence of particles at grain boundaries. A structural and compositional transition area between deformation-induced 2(or ) and its adjacently original (or 2) phases was found by HREM and EDS and is suggested as a way to transform between and 2 phase during high temperature stress rupture deformation. The transition area was formed by slide of partial dislocations on close-packed planes and diffusion of atoms.  相似文献   

20.
The thermal conductivity of hydrocarbons in the naphthene group has been experimentally determined. An equation is now proposed for calculating the thermal conductivity over the given temperature and pressure ranges.Notation thermal conductivity - 20 and 30 values of the thermal conductivity at 20 and 30°C, respectively - t0,P0 thermal conductivity at t0, p0 - t p thermal conductivity at temperature t and under pressure P - change in thermal conductivity - P pressure - Pmelt melting pressure - P0 atmospheric pressure - t0 20°C temperature - T, t temperature - Tcr critical temperature - temperature coefficient of thermal conductivity - 20 temperature coefficient of density - density - 20 density at 20°C - cr critical density - M molar mass - =T/Tcr referred temperature - v specific volume - v0 specific volume at 20°C - v change in specific volume - 3 0 a coefficient - B (t) a function of the temperature - S a quadratic functional - Wi, weight of the i-th experimental point - i error of the i-th experimental value of thermal conductivity - B y, =0.6 value of B (t) at T = 0.6Tcr - B = B (t)/B, =0.6 referred value of coefficient B (t) Translated from Inzhenerno-Fizicheskii Zhurnal, Vol. 41, No. 3, pp. 491–499, September, 1981.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号