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Numerical simulation of the cold flow in an axisymmetric non-compressing engine-like geometry

✍ Scribed by Atilla Bilgin


Publisher
John Wiley and Sons
Year
1999
Tongue
English
Weight
160 KB
Volume
23
Category
Article
ISSN
0363-907X

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✦ Synopsis


Fluid motion within the cylinder of a piston engine has a major in#uence on the performance of the engine. The general motion within the cylinder and the associated turbulence a!ect the charge strati"cation, combustion and heat transfer processes. In order to predict the charge strati"cation, one must understand and be able to predict the turbulent mixing processes (Reynolds, 1980). There are numerous alternative turbulence modelling approaches of varying degrees of complexity, but two of them, k} turbulence models and Reynolds stress models, are commonly used in engine modelling activities. In the present study, k} turbulence model was used to predict the #ow in the cylinder of a non-compressing engine-like con"guration. Wall function treatment was employed in order to bridge the wall layer to the inner region. Finite volume method incorporated with hybrid (central/upwind) spatial and implicit temporal schemes, and SIMPLE algorithm (Patankar, 1980) were used to obtain numerical solutions. Results were compared with the measurements of Morse et al. (1978) and predictions of Gosman et al. (1980). Although the degree of agreement between the predictions and the measurements varies throughout the cycle and the #ow "eld, the overall agreement is found to be satisfactory.