Projects
Development of the energy efficient plant of gasification and cogeneration of biowasters
| Code |
Science |
Field |
| T000 |
Technological sciences |
|
Gasification, cogeneration, biomass, modelling and simulation, exergy analysis, technical documentat
Organisations (1)
, Researchers (6)
0075 University of Kragujevac, Faculty of Mechanical and Civil Engineering in Kraljevo
| no. |
Code |
Name and surname |
Research area |
Role |
Period |
No. of publicationsNo. of publications |
| 1. |
11099 |
Vladimir S. Đorđević |
Automation, robotics, control engineering |
Researcher |
2011 - 2019 |
5 |
| 2. |
07360 |
Vladan Karamarković |
Thermal engineering, applied thermodynamics |
Head |
2011 - 2019 |
15 |
| 3. |
12067 |
Miloš V. Nikolić |
Energy research |
Researcher |
2015 - 2019 |
2 |
| 4. |
12065 |
Đorđe A. Novčić |
Energy research |
Researcher |
2016 - 2019 |
1 |
| 5. |
11112 |
PhD Vladimir R. Stojanović |
Automation, robotics, control engineering |
Researcher |
2011 - 2019 |
23 |
| 6. |
11113 |
Nenad P. Stojić |
Thermal engineering, applied thermodynamics |
Researcher |
2011 - 2019 |
15 |
Abstract
In the proposed project, the plant for combined heat and power (CHP) production by the use of the product gas produced by the gasification of biowastes should be developed and designed. The development of the technical documentation for the plant should be carried out for the optimally chosen gasifer and cogeneration plant by performing energetic, exergetic, economic and ecological analyses on different types of gasifiers and systems for combined heat and power production. The capacity of the designed plant will be determined in accordance with the domestic potentials of biowastes for production of electricity and thermal energy. In the scope of the project, the design of the technical documentation and manufacturing of a laboratory gasifier and a facility for cogeneration with a variable capacity (10-20 kg/h) should be carried out. The laboratory gasifier and cogeneration facility should enable testing and verifications of the models made for designing the optimal cogeneration plant that uses the product gas produced by the gasification of biowaste.