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- 2015
HTR-10GT充装量调节特性及其机理
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Abstract:
针对HTR-10GT低回热度设计带来的充装量调节规律的特殊性进行了准稳态特性与机理研究。该文通过基于假设的简化推导得到支配调节特性的主要规律与机理, 同时对系统整体进行建模与数值仿真, 通过对比分析对结论进行验证与补充。研究结果表明: 调节过程中相对氦气质量流量降低速率慢于相对负载降低速率, 二者近似满足抛物线关系; 调节过程中回热度的升高有助于提高循环效率, 然而温比的降低、部件偏离设计工况以及Reynolds数效应将导致循环效率的损失; 另外Reynolds数效应还会对系统稳定性产生部分负面影响。研究结果可为高温气冷堆(HTR)的循环设计与运行提供参考。
Abstract:The HTR-10GT inventory control characteristics were analyzed to design a system with low recuperated effectiveness. The system was modeled using a simplified model based on reasonable hypotheses and numerical simulations of the entire system model. The results illustrate that the helium mass flow rate decreases as the load decreases but at a slower rate with both following approximately quadratic relations. The regenerator effectiveness is improved which improves the cycle efficiency; however, the efficiency is reduced by temperature ratio decreases, several components deviating from their design operating points and Reynolds number effects. The Reynolds number effects also negatively impact the compressor stability. This study provides reference information for high temperature gas-cooled reactor (HTR) cycle design and operation.
[1] | Verkerk E. Dynamics of the Pebble-Bed Nuclear Reactor in the Direct Brayton Cycle [D]. Delft, The Netherlands: Delft University of Technology, 2002. |
[2] | Kumar K N, Tourilidakis A, Pilidis P. Performance Review: PBMR Closed Cycle Gas Turbine Power Plant, XA0103032 [R]. Palo Alto, USA: International Atomic Energy Agency (IAEA), 2001. |
[3] | 丁铭. 高温气冷堆闭式布雷登循环动态特性和控制方法研究 [D]. 北京: 清华大学. 2009.DING Ming. Study on Dynamic Characteristics and Control Methods of HTGR Brayton Cycle [D]. Beijing: Tsinghua University, 2009.(in Chinese) |
[4] | 潘继红, 田茂诚. 管壳式换热器的分析与计算 [M]. 北京: 科学出版社, 1996.PAN Jihong, TIAN Maocheng. Analysis and Calculation of Shellandtube Heat Exchanger [M]. Beijing: Science Press, 1996. (in Chinese) |
[5] | Gaudet S R. Development of a Dynamic Modeling and Control System Design Methodology for Gas Turbines [D]. Ottawa, Canada: Carleton University, 2007. |
[6] | Kurzke J. Advanced user-friendly gas turbine performance calculations on a personal computer [C]// Proceedings of International Gas Turbine and Aeroengine Congress and Exposition 1995. Houston, USA: American Society of Mechanical Engineers (ASME) Press, 1995: 95-GT-147 1-8 |
[7] | 孙明臣. 相似原理在高温气冷堆氦气透平特性研究中的应用 [D] . 北京: 清华大学, 2005.SUN Mingchen. The Application of the Similarity Criteria in the High Temperature Gas Cooled Reactor Helium Gas Turbo Compressor [D]. Beijing, Tsinghua University, 2005. (in Chinese) |
[8] | Wassell A B. Reynolds number effects in axial compressors [J]. ASME Journal of Engineering for Power, 1968, 90(2): 149-156. |
[9] | 彭学创, 朱书堂, 王捷. 高温气冷堆氦气透平直接循环的实际特性研究 [J]. 核科学与工程, 2005, 25(4): 302-306.PENG Xuechuang, ZHU Shutang, WANG Jie. Preliminary study on thermal features for high temperature gas-cooled reactor gas turbine cycle [J]. Nuclear Science and Engineering, 2005, 25(4): 302-306. |
[10] | 李勇, 张作义. 高温气冷堆氦气透平直接循环发电技术进展 [J]. 核动力工程, 1999, 20(2): 159-164.LI Yong, ZHANG Zuoyi. Prospects of power conversion technology of direct-cycle helium gas Turbine for MHTGR [J]. Nuclear Power Engineering, 1999, 20(2): 159-164. (in Chinese) |
[11] | 尤·阿·李特维诺夫. 航空涡轮喷气发动机的特性和使用性能 [M]. 陈炳慈, 译. 北京: 国防工业出版社, 1986.Litvinov I A. The Characteristics and Performance of Aircraft Turbojet Engine [M]. Chen Bingci, translated. Beijing: National Defense Industry Press, 1986.(in Chinese) |
[12] | Brenan K E, Campbell S L, Petzold L R. Numerical Solution of Initial-Value Problems in Differential-Algebraic Equations [M]. New York, USA: North-Holland, 1989. |