Experimental investigation and computational fluid dynamics (CFD) analysis of geothermal sourced hot air drying
tarafından
 
Keleş, Nazlı, author.

Başlık
Experimental investigation and computational fluid dynamics (CFD) analysis of geothermal sourced hot air drying

Yazar
Keleş, Nazlı, author.

Yazar Ek Girişi
Keleş, Nazlı, author.

Fiziksel Tanımlama
x, 87 leaves: color illustrarions, charts;+ 1 computer laser optical disc.

Özet
Drying is one of the oldest methods used to increase the product's shelf life and reduce transportation costs, consisting of heat and mass transfer between the product and the surrounding environment. One of the most common drying methods is hot air drying. The most critical parameters in hot air drying processes are drying air temperature, air velocity and relative humidity. Renewable energy resources can be used as heat/electricity in drying processes. Geothermal energy resources are highly suitable for hot air drying with their temperature compatibility and reliability. The geothermal resources in Turkey have a high potential for hot air drying. This Thesis examines tomato slices' quality parameters at different drying air temperatures and velocities. A cabinet-type geothermal sourced hot air dryer is installed in the Yenikale Heat Center of the Balcova-Narlidere Geothermal District Heating System in Izmir-Turkiye. Drying experiments are carried out at 40-60-80°C air temperatures and 0.5-1.5 m/s air velocities to examine their effects on drying kinetics and quality of dried tomatoes, such as pH, color, and moisture. With the help of the data obtained, drying time, drying rate, moisture rate, and effective diffusion coefficients are determined, and dimensionless moisture rate is modeled using thin layer models. Also, energy and exergy analyses are made for each experiment. Finally, experimental and simulation results are compared by using CFD to perform experimental design. The simulations created by using CFD are obtained in a much shorter time and more accurately since all materials used for the experiment are idealized.

Konu Başlığı
Geothermal engineering
 
Renewable energy sources
 
Renewable Energy
 
Geothermal resources

Yazar Ek Girişi
Akkurt, Gülden Gökçen,
 
Helvacı, Hüseyin Utku,

Tüzel Kişi Ek Girişi
İzmir Institute of Technology. Energy Engineering.

Tek Biçim Eser Adı
Thesis (Master)--İzmir Institute of Technology:Energy Engineering.
 
İzmir Institute of Technology: Energy Engineering--Thesis (Master).

Elektronik Erişim
Access to Electronic Versiyon.


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IYTE LibraryTezT002631TJ280.7 .K29 2022Tez Koleksiyonu