The invention belongs to the field of environment protection, and in particular relates to an optimization design method of an anaerobic
continuous flow agitator bath type
biological hydrogen production reactor. The method comprises the following steps: researching reactor internal flow field characteristics of different types of stirring paddles under the conditions of different
paddle-bath
diameter ratios and different agitating speeds and influence on
hydrogen production process, by using a numerical
simulation software based on computational fluid
mechanics technology; obtaining detailed flow field information, such as velocity field, turbulence energy and dissipation rate thereof,
biogas integration rate and shearing rate distribution by adopting a two-phase flow model, and analyzing and comparing different flow field information obtained through
simulation according to influence on
hydrogen production process by the various flow field information, thereby determining an optimal stirring
paddle style and agitating speed combination, and providing an
effective method for the optimization design of the
agitator bath reactor. The optimization design method of the anaerobic
continuous flow agitator bath
biological hydrogen production reactor is mature in technology, avoids the
blindness of hydraulic design of the reactor using an empirical or semiempirical association method, and has the advantages of being visual in optimization cycle effect and short in optimization cycle, saving cost, and the like.