Numerical analysis of thermal-hydraulic properties of turbulent aerosol-carbon black nanofluid flow in corrugated solar collectors with double application

نویسندگانGhanbar Ali Sheikhzadeh, Farhad Monfaredi, Ali Reza Aghaei, Soroush Sadripour, Mohammad Adibi
نشریهJournal of Transport Phenomena in Nano and Micro Scales (TPNMS)
ارائه به نام دانشگاهUniversity of Kashan
شماره صفحات37-52
شماره سریال1
شماره مجلد7
نوع مقالهFull Paper
تاریخ انتشارWinter and Spring 2019
رتبه نشریهISI
نوع نشریهچاپی
کشور محل چاپایران

چکیده مقاله

In this study the effects of corrugated absorber plate and using aerosol-carbon black nanofluid on heat transfer and turbulent flow in solar collectors with double application and air heating collectors, were numerically investigated. The two-dimensional continuity, momentum and energy equation were solved by finite volume and SIMPLE algorithm. In the present investigation all the simulations were done for two different angles of tilt of collector according to horizon, that these angles were the optimum ones for the period of six months setting. As a result the corrugated absorber plate was inspected in the case of triangle, rectangle and sinuous with the wave length of 1 mm and wave amplitude of 3 mm in turbulent flow regime and Reynolds number between 2500 to 4000. Choosing the proper geometry was carried out based on the best performance evaluation criteria (PEC), for collectors with dual usage and increasing the air temperature from collector inlet to outlet for air heating collector. The results revealed that using corrugated absorber plate has a considerable influence on flow field and heat transfer. For all times of the year the highest PEC was obtained for corrugated Sinusoidal model, however the highest temperature increase from inlet to outlet was obtained for rectangular corrugated model.

لینک ثابت مقاله

tags: Solar collector; corrugated absorber plate; turbulent flow; performance evaluation criteria; Nanofluid