| Literature DB >> 33265258 |
Fuli Zhu1,2,3, Lingen Chen1,2,3, Wenhua Wang1,2,3.
Abstract
An irreversible Maisotsenko reciprocating Brayton cycle (MRBC) model is established using the finite time thermodynamic (FTT) theory and taking the heat transfer loss (HTL), piston friction loss (PFL), and internal irreversible losses (IILs) into consideration in this paper. A calculation flowchart of the power output (P) and efficiency (η) of the cycle is provided, and the effects of the mass flow rate (MFR) of the injection of water to the cycle and some other design parameters on the performance of cycle are analyzed by detailed numerical examples. Furthermore, the superiority of irreversible MRBC is verified as the cycle and is compared with the traditional irreversible reciprocating Brayton cycle (RBC). The results can provide certain theoretical guiding significance for the optimal design of practical Maisotsenko reciprocating gas turbine plants.Entities:
Keywords: efficiency; finite-time thermodynamics; irreversible Maisotsenko reciprocating Brayton cycle; power output
Year: 2018 PMID: 33265258 PMCID: PMC7512683 DOI: 10.3390/e20030167
Source DB: PubMed Journal: Entropy (Basel) ISSN: 1099-4300 Impact factor: 2.524
Figure 1Schematic diagram of the irreversible Maisotsenko reciprocating Brayton cycle.
Figure 2M-Cycle shell and tube air saturator [5].
Figure 3T-s diagrams for the irreversible Maisotsenko reciprocating Brayton cycle.
Figure 4Influences of on the characteristics of and .
Figure 5Influences of on the characteristics of and .
Figure 6Influences of on the characteristics of and .
Figure 7Influences of on the characteristics of and .
Figure 8T-s diagram for the irreversible Maisotsenko reciprocating Brayton cycle and reciprocating Brayton cycle.
Figure 9Comparison of and between the Maisotsenko reciprocating Brayton cycle and reciprocating Brayton cycle.