Open Access
Issue |
E3S Web Conf.
Volume 165, 2020
2020 2nd International Conference on Civil Architecture and Energy Science (CAES 2020)
|
|
---|---|---|
Article Number | 04037 | |
Number of page(s) | 7 | |
Section | Civil, Architectural Engineering | |
DOI | https://doi.org/10.1051/e3sconf/202016504037 | |
Published online | 01 May 2020 |
- Chen Guorong. Xu Wentao. (2012) A new method for calculating temperature field of large volume concrete with cooling water pipe [J]. Computing physics.05:411-416. [Google Scholar]
- Yang Zhigang. ,Chen Weimin., Zhang Dong. (2012) Influence of self-weight application simulation method on working performance of high arch dam [J].Journal of Guangxi University (Natural Science Edition). 8(04):820-825. [Google Scholar]
- Lin Chunxi.,Zheng Jielian.,Huang Haidong. (2010) Experimental study on temperature calculation of concrete filled steel tube arch [J].Journal of Guangxi University(Natural Science Edition). 35(04):601-609. [Google Scholar]
- Jie Hongwei.,Chen Xiaolong. (2004) Research status and trend of cooling effect of concrete dam cooling water pipe [J].Journal of Qinghai University(Natural Science Edition). 22(05):27-31. [Google Scholar]
- Zhu Yueming.,Zhang Jianbin. (2002) Study on Temperature Control of Continuous Construction of Roller Compacted Concrete Dam by Using Cooling Water Pipes in High Temperature Period [J]. Journal of Hydraulic Engineering. 11:55-59. [Google Scholar]
- Zhu Bofang. (2003) Water-cooling equivalent heat conduction equation considering external temperature influence [J].Journal of Hydraulic Engineering. 1:49-54. [Google Scholar]
- Ding Huili.,Qin Jiaqiang. (2009) Discussion on temperature stress control method for mass concrete construction [J].Science and technology innovation report. 16:62-64. [Google Scholar]
- Wang Xingang. (2010) Research on layout scheme of mass concrete cooling water pipe based on MIDAS [J].Port Engineering Technology. 47(06):42-45. [Google Scholar]
- Yang Zhigang.,Wu Yingli.,Cheng Yingxin. (2008) Comparative Study on Overall and Block Dynamic Calculation Models for Dams and Power Plants of Hydropower Stations [J].People's Yangtze River. 39(24):41-43. [Google Scholar]
- Chen Airong.,Liu Wei. (2013) Study on cooling effect of mass concrete for bridge caps with cooling water pipes[J].Modern transportation technology. 10(03). [Google Scholar]
- Ma Junqi.,Wu Li. (2012) Application of cooling water pipe in foundation construction of mass concrete cold box [J].Shanxi Architecture. 38(04):132-134. [Google Scholar]
- Fairbairn., Eduardo M.R.,Silvoso.,Marcos M. (2012) Thermo-Chemo-Mechanical Cracking Assessment for Early-Age Mass Concrete Structures[J].EN. pp:30-35. [Google Scholar]
- Xiaoyuan Zhang.,Jianzhong Zhou.,Guangjing Cao. (2011) Optimal Decision Support System Design for Mass Concrete Dam Construction Equipment Matching Scheme[J].Energy Procedia. 11:271-277. [Google Scholar]
- Yang Zhigang., Li Tongchun., Yan Tianyou. (2009) Overview of the action mechanism and numerical simulation of hydraulic reinforced concrete[J]. Journal of China Three Gorges University(Natural Science Edition). 31(4):41-43. [Google Scholar]
Current usage metrics show cumulative count of Article Views (full-text article views including HTML views, PDF and ePub downloads, according to the available data) and Abstracts Views on Vision4Press platform.
Data correspond to usage on the plateform after 2015. The current usage metrics is available 48-96 hours after online publication and is updated daily on week days.
Initial download of the metrics may take a while.