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华南理工大学传质与分离工程课件chapter10c (mass and heat balance)。
华南理工大学传质与分离工程课件Chapter 10c(mass and heat balance)。
The heat-balance integral method is used to solve the non-linear heat diffusion equation in static turbulent superfluid helium (He II). Although this is an approximate method, it has proven that it gi...
In this paper we consider approximate travelling wave solutions to the Korteweg-de Vries equation. The heat-balance integral method is first applied to the problem, using two different quartic approxi...
This paper discusses the application of heat-balance integral method for solving the conduction equation in a variety of rewetting problems. A host of rewetting problems for various geometry, convecti...
Since the pioneering studies of Goodman on the application of the integral method to transient non-linear heat diffusion, much attention has been devoted nowadays to what is called heat balance integr...
Conjugate thermal explosion is an extension of the classical theory, proposed and studied recently by the author. The paper reports application of heat-balance integral method for developing phase por...
The heat-balance integral method of Goodman is studied with two simple 1-D heat conduction problems with prescribed temperature and flux boundary conditions. These classical problems with well known e...
The heat-balance integral method of Goodman has been thoroughly analyzed in the case of a parabolic profile with unspecified exponent depending on the boundary condition imposed. That the classical Go...
This article reconsiders aspects of the analysis conventionally used to establish accuracy, performance and limitations of the heat balance integral method: theoretical and practical rates of converge...
Stefan problems relevant to burning oil-water systems are formulated. Two moving boundary sub-problems are defined: burning liquid surface and formation of a distillation ("hot zone") layer beneath it...
为研究陶瓷球固体热载体与粉状生物质之间的换热规律,以90℃陶瓷球,在1.0、1.2和1.4kg/min质量流量下与室温生物质粉在垂直下降管散体颗粒换热实验台上进行了热交换实验,通过热平衡分析确定了不同陶瓷球流量下生物质粉总吸热速率中对流换热、导热各自所占的比例。研究表明热传导在生物质粉吸热升温过程中占61%~87%;当陶瓷球流量从1.0kg/min增大到1.4kg/min时,热传导所占的比例减小,...

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