Abstract
In this paper, a detailed thermodynamic analysis of the pure low-temperature waste heat recovery generation system is presented. The parameters affecting the system performance are compared to obtain the most significant ones; furthermore, parameter values are optimized for the largest power generating capability of the system. It is found that the most important parameters are inlet flue gas temperature, steam pressure and the pinch point temperature difference. There is an optimal superheated steam pressure value for giving the maximum generation power per unit flue gas. With the increase of inlet flue gas temperature, the generating power increases and the optimized steam pressure rises as well. However, with increase in pinch point temperature difference, the generating power decreases and the optimized steam pressure decreases as well. The theoretical calculation provides a theoretical basis for the parameters optimization in the design of the pure low-temperature waste heat recovery generation system.
| Original language | English |
|---|---|
| State | Published - 2009 |
| Event | 9th International Conference on Power Engineering, ICOPE 2009 - Kobe, Japan Duration: 16 Nov 2009 → 20 Nov 2009 |
Conference
| Conference | 9th International Conference on Power Engineering, ICOPE 2009 |
|---|---|
| Country/Territory | Japan |
| City | Kobe |
| Period | 16/11/09 → 20/11/09 |
Keywords
- Optimal analysis
- Pinch point
- Steam pressure
- Waste heat recovery generation
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