Ø Estimation of boundary condition on the furnace inner wall based on precise integration BEM without iteration. Bo Yu*, Chuang Xu, Weian Yao, Zeng Meng, International Journal of Heat and Mass Transfer, 2018: 122, 823-845.
Ø Identification of transient boundary conditions with improved cuckoo search algorithm and polynomial approximation. Haolong Chen, Bo Yu, Huanlin Zhou*, Zeng Meng, Engineering Analysis with Boundary Elements, 2018: 95, 124–141.
Ø An accurate and efficient reliability-based design optimization using the second order reliability method and improved stability transformation method. Meng, Z., Yang, D., Zhou, H., & Yu, B. Engineering Optimization, 2018: 50: 5,.
Ø A novel non-iterative inverse method for estimating boundary condition of the furnace inner wall. Bo Yu*, Weian Yao, Qiang Qao, Huanlin Zhou,Chuang Xu.International Communications in Heat and Mass Transfer, 2017: 87, 91-97.
Ø Shape identification for inverse geometry heat conduction problems by FEM without iteration. Huanlin Zhou*, Yushu Li, Bo Yu**, Haolong Chen. Numerical Heat Transfer, Part A: Applications, 2017: 1-14.
Ø A differential transformation boundary element method for solving transient heat conduction problems in functionally graded materials. Bo Yu*, Huan-Lin Zhou, Jun Yan, Zeng Meng. Numerical Heat Transfer, Part A: Applications, 2016: 70, 293-309.
Ø Geometry boundary identification of the furnace inner wall by BEM without iteration. Bo Yu *, Huan-Lin Zhou, Qiang Gao, Jun Yan. Numerical Heat Transfer, Part A: Applications: 2016, 69, 1253-1262.
Ø The natural boundary integral equation of the orthotropic potential problem. Huan-Lin Zhou*, Yu Tian, Bo Yu, Z. R. Niu. Engineering Analysis with Boundary Elements: 2016, 62, 186-192.
Ø Firefly algorithm combined with Newton method to identify boundary conditions for transient heat conduction problems. Huan-Lin Zhou*, Xing-Hang Zhao, Bo Yu*(Co-corresponding author), Hao-Long Chen, Zeng Meng. Numerical Heat Transfer, Part B: Fundamentals: 2016: 71(3), 253-269.
Ø The Calculation of Potential Derivatives by Using NBIE for Anisotropic Potential Problems. Huan-Lin Zhou*, Bu-Xi Bian, Yu Tian, Bo Yu, Z. R. Niu. Journal of Mechanics, 2016: 1-9.
Ø Precise time-domain expanding dual reciprocity boundary element method for solving transient heat conduction problems. Bo Yu*, Huan-Lin Zhou, Hao-Long Chen, Yu Tong. International Journal of Heat and Mass Transfer: 2015, 91, 110-118.
Ø Precise time-domain expanding BEM for solving non-fourier heat conduction problems. Bo Yu*, Weian Yao, Huanlin Zhou, Hao-Long Chen. Numerical Heat Transfer, Part B: Fundamentals:2015, 68, 511-532.
Ø Radial integration BEM for solving non-Fourier heat conduction problems. Weian Yao, H. X. Yao, Bo Yu*. Engineering Analysis with Boundary elements: 2015, 60, 18-26.
Ø A time-domain precise BEM for solving transient heat conduction problems with variable heat conductivities. Bo Yu, Weian Yao*, Xiaowei Gao. Boundary Elements and Other Mesh Reduction Methods XXXVI, WIT Press:2013.
Ø A precise time-domain expanding boundary-element method for solving three-dimensional transient heat conduction problems with variable thermal conductivity. Bo Yu, Weian Yao*. Numerical Heat Transfer, Part B: Fundamentals: 2014, 66, 422-445.
Ø A combined approach of RIBEM and precise time integration algorithm for solving transient heat conduction problems. Bo Yu, Weian Yao, Xiaowei Gao, Qiang Gao*.Numerical Heat Transfer, Part B: Fundamentals: 2014, 65, 155-173.
Ø A precise integration boundary element method for solving transient heat conduction problems with variable thermal conductivity. Bo Yu, Weian Yao, Qiang Gao*.Numerical Heat Transfer, Part B: Fundamentals: 2014, 65, 472-493.
Ø A precise integration boundary element method for solving transient heat conduction problems. Weian Yao (Tutor), Bo Yu, Xiaowei Gao, Qiang Gao*. International Journal of Heat and Mass Transfer: 2014, 78, 883-891.
Ø Radial integration BEM for one-phase solidification problems. Bo Yu, Weian Yao, Xiaowei Gao, Sheng Zhang*.Engineering Analysis with Boundary Elements: 2014, 39, 36-43.
Ø Adaptive Precise Integration BEM for Solving Transient Heat Conduction Problems. Bo Yu, Weian Yao*, Qiang Gao. International Conference on Computational Methods 1:2014, ISSN 2374-3948.
Ø 吴国鹏,徐闯,李英健,余波*.一种新的热源强度识别的非迭代方法研究[J].工程热物理学报,2020, 41 (9): 2233-2240.
Ø 余波*,吴月,聂川宝,高强. 动载荷识别的非迭代法研究[J]. 应用数学和力学, 2019,40(5): 473-489;
Ø 严俊,周焕林,余波,陈豪龙.基于改进布谷鸟算法的导热系数反演[J].合肥工业大学学报(自然科学版),2018,41(12):1667-1671+1677.
Ø 周焕林,严俊,余波,陈豪龙.识别含热源瞬态热传导问题的热扩散系数[J].应用数学和力学,2018,39(02):160-169.
Ø 周焕林,严俊,余波,陈豪龙.基于改进布谷鸟算法识别瞬态热传导问题的导热系数[J].计算物理,2018,35(02):212-220.
Ø 陈豪龙,周焕林,余波.瞬态热传导问题的精细积分-双重互易边界元法[J].应用力学学报,2017,34(05):835-841+1009.
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会议论文
Ø 陈豪龙,周焕林,余波. 非傅里叶热传导问题的微分转换双重互易边界元法[A]. 中国力学学会、北京力学会.力学与工程——数值计算和数据分析2019学术会议论文集[C].中国力学学会、北京力学会:北京力学会,2019:6.(出版日期2019.5,页码6)
Ø 肖雄,陈豪龙,余波,周焕林. 正交各向异性功能梯度材料瞬态热传导问题的精细时域展开双重互易边界元法[A]. 南方计算力学联络委员会、江苏省力学学会.第十一届南方计算力学学术会议(SCCM-11)摘要集[C].南方计算力学联络委员会、江苏省力学学会:中国力学学会,2017:1.(出版时间2017.10,页码1)
Ø 周焕林,田羽,余波,牛忠荣. 二维正交各向异性位势问题自然边界积分方程[A]. 中国力学学会、上海交通大学(SHANGHAI JIAO TONG UNIVERSITY).中国力学大会-2015论文摘要集[C].中国力学学会、上海交通大学(SHANGHAI JIAO TONG UNIVERSITY):中国力学学会,2015:1.
Ø 陈豪龙,余波,周焕林. 二维稳态带热源热传导问题边界形状识别[A]. 中国力学学会、上海交通大学(SHANGHAI JIAO TONG UNIVERSITY).中国力学大会-2015论文摘要集[C].中国力学学会、上海交通大学(SHANGHAI JIAO TONG UNIVERSITY):中国力学学会,2015:2.
Ø 余波,周焕林,陈豪龙. 功能梯度材料瞬态热传导问题中的精细时域展开边界元法[A]. 中国力学学会、上海交通大学(SHANGHAI JIAO TONG UNIVERSITY).中国力学大会-2015论文摘要集[C].中国力学学会、上海交通大学(SHANGHAI JIAO TONG UNIVERSITY):中国力学学会,2015:1.