Exergoeconomic (Thermoeconomic) Analysis and Performance Assessment of a Gas Engine-Driven Heat Pump Drying System Based on Experimental Data

被引:26
作者
Gungor, Aysegul [3 ]
Erbay, Zafer [2 ]
Hepbasli, Arif [1 ]
机构
[1] King Saud Univ, Coll Engn, Dept Mech Engn, Riyadh 11421, Saudi Arabia
[2] Ege Univ, Dept Food Engn, Fac Engn, Izmir, Turkey
[3] Gediz Univ, Dept Mech Engn, Fac Engn, Izmir, Turkey
关键词
Drying; Exergoeconomic; Exergy; Gas engine-driven heat pump; SPECO; Thermoeconomic; EXERGY ANALYSIS; ECONOMIC-ANALYSIS; OPTIMIZATION; ENERGY; PLANTS; MODEL; SIMULATION; GEHPS;
D O I
10.1080/07373937.2011.618897
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Exergoeconomic analysis has been used as a powerful tool to study and optimize various types of energy-related systems. In this study, we use the specific exergy cost (SPECO) method to calculate exergy-related parameters and display cost flows for all streams and components in a gas engine-driven heat pump drying system based on the experimental data. We analyze and evaluate the performance of the drying system components and the drying process for three different medicinal and aromatic plants from an exergoeconomic point of view. We also investigate the effect of varying dead (reference) state temperatures on exergoeconomic performance parameters for the drying system components and drying process. Although the condenser and drying chamber of the gas engine-driven heat pump dryer were significantly affected by the ambient temperature, the gas engine was slightly influenced by the ambient temperature. At low ambient temperatures, the exergy rates increased and the most effective performance obtained from this dryer was at 0 degrees C. The performance of the drying process also increased at low ambient temperatures. This study demonstrated that exergoeconomic analysis can provide more information than exergy analysis, and the results obtained from the exergoeconomic analysis provided cost-based information, suggesting potential locations for drying system improvement.
引用
收藏
页码:52 / 62
页数:11
相关论文
共 42 条
[1]   Exergoeconomic Optimization of a Diesel-engine-powered Cogeneration Plant [J].
Abusoglu, Aysegul ;
Kanoglu, Mehmet .
ENERGY & FUELS, 2009, 23 (3-4) :1977-1989
[2]   Mathematical model development and simulation of heat pump fruit dryer [J].
Achariyaviriya, S ;
Soponronnarit, S ;
Terdyothin, A .
DRYING TECHNOLOGY, 2000, 18 (1-2) :479-491
[3]  
Alves O, 1996, DRY TECHNOL, V14, P2061
[4]   A simulation model for heat pump dryer plants for fruits and roots. [J].
Alves, O ;
Strommen, I ;
Thorbergsen, E .
DRYING TECHNOLOGY, 1997, 15 (05) :1369-1398
[5]   Thermodynamic and thermoeconomic analyses of a trigeneration (TRIGEN) system with a gas-diesel engine: Part II - An application [J].
Balli, Ozgur ;
Aras, Haydar ;
Hepbasli, Arif .
ENERGY CONVERSION AND MANAGEMENT, 2010, 51 (11) :2260-2271
[6]  
Chen F.C., 1998, ASHRAE Trans, V104, P1471
[7]   Convective drying of agricultural products. Effect of continuous and stepwise change in drying air temperature [J].
Chua, KJ ;
Mujumdar, AS ;
Hawlader, MNA ;
Chou, SK ;
Ho, JC .
DRYING TECHNOLOGY, 2001, 19 (08) :1949-1960
[8]   Energetic, exergetic and thermoeconomic analysis of Bilkent combined cycle cogeneration plant [J].
Colpan, C. Ozgur ;
Yesin, Tulay .
INTERNATIONAL JOURNAL OF ENERGY RESEARCH, 2006, 30 (11) :875-894
[9]   A new model for thermodynamic analysis of a drying process [J].
Dincer, I ;
Sahin, AZ .
INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2004, 47 (04) :645-652
[10]   Performance of a gas engine driven heat pump for hot water supply systems [J].
Elgendy, E. ;
Schmidt, J. ;
Khalil, A. ;
Fatouh, M. .
ENERGY, 2011, 36 (05) :2883-2889