研究成果: |
围绕温度场数学建模和流场均匀性优化方法,在高精度加工中心热误差补偿及高超声速飞行器热防护等领域开展了深入研究,致力于传热机理在工程实际中的应用与扩展。在移动热源理论和温度场建模方面取得了一系列进展,成果发表于INT COMMUN HEAT MASS、CASE STUD THERM ENG、RELIAB ENG SYST SAF等国际高水平期刊十余篇,多次参加国际学术会议并作学术报告,获批2023年江苏省卓越博士后计划资助。近五年代表性研究成果如下: [1] X. Sheng*, C. Gao, J.N. Ding*, et al. International Communications in Heat and Mass Transfer, 2025, 165(A): 108977. (Top期刊) [2] X. Sheng*, A. Liu, C. Gao, et al. International Communications in Heat and Mass Transfer, 2024, 153: 107367. (Top期刊) [3] X. Sheng, Y.D. Xu, J.R. Zhang, et al. Engineering Optimization, 2024, 56(5): 645-663. [4] X. Sheng, Y.D. Xu, D.C. Huang, et al. Applied Sciences-Basel, 2022, 12(13): 6612. [5] X. Sheng, J.R. Zhang, Y.Q. Lu, et al. Case Studies in Thermal Engineering, 2021, 28: 101559. (Top期刊) [6] X. Sheng, X. Lu*, J.R. Zhang, et al. Engineering Optimization, 2021, 53(12): 2144-2163. [7] Y.D. Xu, K. Feng, X. Sheng, et al. IEEE Transactions on Industrial Informatics, 2024, 20(1): 73-84. (Top期刊) [8] Y.D. Xu, X.A. Yan, X. Sheng, et al. Reliability Engineering & System Safety, 226: 108714.(Top期刊) |