师资队伍

副研究员、硕士生导师

电子邮箱:peng_h@tsinghua.edu.cn

教育背景

博士 202101 清华大学 力学

学士 201406 武汉理工大学 工程力学


工作履历

202412-至今 清华大学核研院 副研究员

202306-202412 清华大学核研院 助理研究员

202104-202306 清华大学核研院 博士后


研究领域

反应堆结构力学:承压设备分析设计与完整性评价技术研究、高温金属材料力学性能研究、高温气冷堆一回路主设备(压力容器、蒸汽发生器、中间换热器)力学分析与结构优化


研究概况

202406-202706 高温气冷堆国产800H合金非弹性本构与寿命预测模型试验研究 中核集团领创科研项目 项目负责人

202301-202512 高温承压设备安定分析理论与新型数值直接法研究 国家自然科学基金青年项目 项目负责人


奖励与荣誉

2021 中国石油工程建设协会科技进步 二等奖

2021 中国机械工程学会压力容器分会优秀博士学位论文卓越奖(每四年评选一次, 全国共一位)

2021 北京市优秀博士毕业生


学术成果

[1] Bowen Li, Haitao Wang, Heng Peng*. Probabilistic fracture mechanics analysis of a HTGR reactor pressure vessel under several typical transient conditions. Nuclear Engineering and Design. 2025, 442, 114219.

[2] 沈鋆, 粟雨平, 彭恒*, 刘应华. GB/T 47322024《压力容器分析设计》中关于“极限、安定和棘轮载荷边界的直接计算法”的讨论和应用. 压力容器, 2025, 42(02):54-61.

[3] Zerui Chen, Heng Peng*, Yinghua Liu*. Effective strength estimation of metal matrix composites by stress compensation method, International Journal of Mechanical Sciences. 2025, 283:109908.

[4] 何思翾, 彭恒*, 史力, 吴莘馨. 基于ASME -5800H合金材料数据的高温部件非弹性分析评价方法. 压力容器, 2023, 40(10):28-37.

[5] 何思翾, 汪子杨, 彭恒*, 王计辉, 侯冬冬, 史力. 基于θ投影参数法的950℃GH3128镍基合金蠕变本构模型研究. 中国核科学技术进展报告(第八卷)中国核学会2023年学术年会论文集, : 2023-10-17, : 241-248.

[6] Heng Peng*, Yinghua Liu*, Haofeng Chen, Zhengming Zhang. Shakedown analysis of bounded kinematic hardening engineering structures under complex cyclic loads: Theoretical aspects and a direct approach. Engineering Structures, 2022, 256:114034.

[7] Heng Peng, Yinghua Liu*, Shakedown and limit analysis of kinematic hardening piping elbows under internal pressure and bending moments. Journal of Pressure Vessel Technology – Transactions of the ASME, 2022, 144(2):021302.

[8] Heng Peng, Yinghua Liu*, Haofeng Chen. Creep rupture assessment of cyclically heated 3D pressure pipelines with volumetric defects using a direct numerical approach. Journal of Pressure Vessels and Piping, 2021,192:104387.

[9] 彭恒*, 刘应华. 应力补偿法在压力容器安定分析中的应用. 压力容器先进技术——第十届全国压力容器学术会议论文集, : 2021-09-26, : 481-496.

[10] 张贵辰, 彭恒*, 刘应华. 基于动力安定分析的诱导风作用下侧框架塔的安全评估. 压力容器先进技术——第十届全国压力容器学术会议论文集, : 2021-09-26, : 731-738.

[11] Heng Peng, Yinghua Liu*, Haofeng Chen. Stress compensation method for shakedown analysis and its engineering applications. In: Pisano, A., Spiliopoulos, K., Weichert, D. (eds) Direct Methods. Lecture Notes in Applied and Computational Mechanics, 2021, vol 95:137-166. Springer, Cham

[12] Heng Peng, Yinghua Liu*, Haofeng Chen. Numerical schemes based on the stress compensation method framework for creep rupture assessment. European Journal of Mechanics - A/Solids, 2020, 83:104014.

[13] Heng Peng, Jun Shen, Yinghua Liu*, Haofeng Chen. Limit and Shakedown Analysis of 45-Degree Piping Elbows Under Internal Pressure and In-Plane Bending. Journal of Pressure Vessel Technology – Transactions of the ASME, 2020, 142(2): 021302.

[14] 张贵辰, 彭恒*, 刘应华, 周京华. 石化侧框架塔器的地震响应分析及太阳能源阻尼器研究. 压力容器, 2020, 37(6):1-8.

[15] Heng Peng, Yinghua Liu*, Haofeng Chen. A numerical formulation and algorithm for limit and shakedown analysis of large-scale elastoplastic structures. Computational Mechanics, 2019, 63:1-22.

[16] Heng Peng, Yinghua Liu*, Haofeng Chen. Shakedown analysis of elastic-plastic structures considering the effect of temperature on yield strength: theory, method and applications. European Journal of Mechanics - A/Solids, 2019, 73:318-330.

[17] Heng Peng, Jun Shen, Yinghua Liu*, Haofeng Chen. Shakedown analysis of a torispherical head with a piping nozzle under combined loads by the stress compensation method. International Journal of Pressure Vessels and Piping, 2019, 172:107-118.

[18] Heng Peng, Yinghua Liu*. Stress compensation method for structural shakedown analysis. Key Engineering Materials, 2019, 794:169-181.

[19] Heng Peng, Yinghua Liu*, Haofeng Chen, Jun Shen. Shakedown analysis of engineering structures under multiple variable mechanical and thermal loads using the stress compensation method. International Journal of Mechanical Sciences, 2018, 140: 361-375.

[20] 彭恒*, 刘应华. 组合载荷作用下带接管碟形封头的安定分析. 压力容器先进技术——第九届全国压力容器学术会议论文集, 2017:576-585.

[21] 彭恒*, 张荣钢, 杜显赫等. 高耸塔器的风振模拟及其采用侧向支撑的减振分析. 压力容器, 2016, 33(1):25-31.