The high temperature gas-cooled reactor (HTGR) coupled with direct gas turbine cycle is a promising concept in the future of nuclear power development. Both helium gas turbine and compressor are key components in the cycle. Under normal conditions, the mode of power adjustment is to control total helium mass in the primary loop using gas storage vessels. Meanwhile, thermal power of reactor core is regulated. This article analyzes off-design performances of helium gas turbine and compressors for high temperature gas-cooled reactor with gas turbine cycle (HTGR-GT) at steady state level of electric power adjustment. Moreover, performances of the cycle were simply discussed. Results show that the expansion ratio of turbine decreases as electric power reduces but the compression ratios of compressors increase, efficiencies of both turbine and compressors decrease to some extent. Thermal power does not vary consistently with electric power, the difference between these two powers increases as electric power reduces. As a result of much thermal energy dissipated in the temperature modulator set at core inlet, thermal efficiency of the cycle has a widely reduction under partial load conditions.
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14th International Conference on Nuclear Engineering
July 17–20, 2006
Miami, Florida, USA
Conference Sponsors:
- Nuclear Engineering Division
ISBN:
0-7918-4245-2
PROCEEDINGS PAPER
Study on Off-Design Steady State Performances of Helium Gas Turbocompressor for HTGR-GT Available to Purchase
Xiaoyong Yang,
Xiaoyong Yang
Tsinghua University, Beijing, China
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Zhiyong Huang,
Zhiyong Huang
Tsinghua University, Beijing, China
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Jie Wang
Jie Wang
Tsinghua University, Beijing, China
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Qisen Ren
Tsinghua University, Beijing, China
Xiaoyong Yang
Tsinghua University, Beijing, China
Zhiyong Huang
Tsinghua University, Beijing, China
Jie Wang
Tsinghua University, Beijing, China
Paper No:
ICONE14-89853, pp. 801-807; 7 pages
Published Online:
September 17, 2008
Citation
Ren, Q, Yang, X, Huang, Z, & Wang, J. "Study on Off-Design Steady State Performances of Helium Gas Turbocompressor for HTGR-GT." Proceedings of the 14th International Conference on Nuclear Engineering. Volume 4: Computational Fluid Dynamics, Neutronics Methods and Coupled Codes; Student Paper Competition. Miami, Florida, USA. July 17–20, 2006. pp. 801-807. ASME. https://doi.org/10.1115/ICONE14-89853
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