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Zhu's main works
1, Zhu, cooling calculation of mass concrete buried pipe with internal heat source, journal of water conservancy,1957,4: 87-106.

2. Zhu, Wang, Ding Baoying, Thermal Stress of Gravity Dam and Concrete Pouring Block, Journal of Hydraulic Engineering, 1964, 1: 30-34.

3. Zhu, Stress and displacement of heterogeneous viscoelastic body under mixed boundary conditions, Journal of Mechanics,1964,2:162-167.

4. Zhu, Rock Pressure of Underground Buildings in Viscoelastic Media, Journal of Institute of Hydropower Research, Vol.5, 1965: 83-96.

5. Zhu, Wang, Ding Baoying, Guo, Temperature Stress and Temperature Control of Hydraulic Concrete Structure, Water Conservancy and Electric Power Press, 1976.

6. Zhu, Thermal Stress of Foundation Beam, Mechanics, 1979, 3: 200-205.

7. Zhu, Thermal Stress of Dock Gate on Soft Soil Foundation, Journal of Hydraulic Engineering, 1980, 6: 23-33.

Zhu, Li Zhanmei, Optimization of hyperbolic arch dam, Journal of Hydraulic Engineering, 198 1, 2: 1 1-2 1. 9. Zhu, Implicit Method for Creep Stress Analysis of Concrete Structures, Journal of Hydraulic Engineering, 1983, 5: 40-46.

10, Zhu, Li zhanmei, Zhang, principle and application of structural optimization design, water conservancy and electric power press, 1984.

1 1, Zhu, on temperature load of arch dams, hydroelectric power generation,1984,2: 23-29.

12, Zhu, estimation of reservoir water temperature, Journal of Water Conservancy,1985,2:12-21.

13, Zhu, asynchronous long-term solution of unsteady temperature field by finite element partition, journal of water conservancy, 1985, 8: 46-52.

14, Zhu, calculation of thermal insulation capacity of mass concrete surface, journal of water conservancy,1987,2:18-26.

15, Zhu, Equivalent Heat Conduction Equation of Concrete Considering Cooling Effect of Water Pipe, Journal of Hydraulic Engineering, 199 1, 3: 28-34.

16, Zhu, temperature control and joint design of RCC arch dam, hydropower generation,1992,9:1-17.

17, Zhu, Jia Jinsheng, Li Yisheng, optimization of static and dynamic carrier type of arch dam. Journal of Structural Engineering, ASCE, Vol. 1 18,No.1/No.19921month, No.2996-30.

18, Zhu, parallel layer algorithm for simulated stress analysis of multi-story concrete structures, Journal of Hydropower, 1994, 3: 2 1-30.

19, Zhu,, temperature stress and temperature control of RCC gravity dam, water conservancy and hydropower technology,1996,4:18-25.

20. Zhu, Principle and Application of Finite Element (2nd Edition), China Water Resources and Hydropower Press, 1998.

2 1, Zhu,, The cracks at the head and the undercooling at the bottom hole of the normal concrete and RCC gravity dam in Tongcang, Water Resources and Hydropower Technology, 1998, 10: 14- 18.

Zhu, Temperature Stress and Temperature Control of Mass Concrete, Beijing: China Electric Power Press, 1999.

23. Zhu, Some Thoughts on Flood Control in China, Science and Technology Herald, 1999, 4: 53-54.

24. Zhu, research on dam construction technology of micro-expansive concrete, Journal of Hydropower, 2000,3:1-12.

25. Zhu, Study on Stress Control Standard of Arch Dam, Hydroelectric Power Generation, 2000, 12.

26. Zhu, Gao, Chen Zuyu, Li Yisheng, Arch Dam Design and Research, Beijing: China Water Resources and Hydropower Press, 2002.

27. Zhu, incremental calculation model of autogenous volume deformation of micro-expansive concrete, hydropower, 2003, 2.

28. Zhu, a new model for calculating adiabatic temperature rise of concrete and its back analysis, hydropower, 2003, 4.

29. Zhu, Strengthening the protection of concrete dam surface and ending the history of "no dam and no crack" as soon as possible, Hydropower, 2004, 3.

30, Zhu, On the label and strength grade of dam concrete, Water Conservancy and Hydropower Technology, 2005, 8.

3 1, Zhu,,, Xu Ping, Two Guiding Ideas and Two Practical Achievements of Magnesia Concrete Damming, Water Resources and Hydropower Science and Technology, 2005, 6.

32, Zhu, on the safety factor of cracks in concrete dams, Water Resources and Hydropower Science and Technology, 2005, 7.