Author:
Wang Kuiyang,Tang Jinhua,Li Guoqing
Abstract
In order to optimize the design method and improve the performance of hydraulic retarder, the numerical
simulation of multi-field coupling of heat, fluid and solid is carried out to hydraulic retarder, based on the numerical
computation and algorithm of heat-fluid coupling and fluid-solid coupling. The computation models of heat-fluid coupling
and fluid-solid coupling of hydraulic retarder are created. The three dimensional model of hydraulic retarder is established
based on CATIA software, and the whole flow passage model of hydraulic retarder is extracted on the basis of the three
dimensional model established. Based on the CFD calculation and the finite element numerical simulation, the
temperature field, stress field, deformation and stress state are analysised to hydraulic retarder in the state of whole filling
when the rotate speed is 1600 r/min. In consideration of rotating centrifugal force, thermal stress and air exciting vibration
force of blade surface, by using the sequential coupling method, the flow field characteristics of hydraulic retarder and
dynamic characteristics of blade structure are analysised and researched based on multi-field coupling of heat, fluid and
solid. These provide the theoretical foundation and references for parametric design of hydraulic retarder.
Publisher
Bentham Science Publishers Ltd.
Cited by
3 articles.
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