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Dianchao Wang
Dianchao Wang
Verified email at g.ecc.u-tokyo.ac.jp
Title
Cited by
Cited by
Year
Increasing efficiency of carbon dioxide sequestration through high temperature carbonation of cement-based materials
D Wang, T Noguchi, T Nozaki
Journal of Cleaner Production 238, 117980, 2019
1052019
An experimental study of vibration control of wind-excited high-rise buildings using particle tuned mass dampers
Z Lu, D Wang, SF Masri, X Lu
Smart Struct. Syst 18 (1), 93-115, 2016
1012016
Experimental parametric study on wind‐induced vibration control of particle tuned mass damper on a benchmark high‐rise building
Z Lu, D Wang, Y Zhou
The Structural Design of Tall and Special Buildings 26 (8), e1359, 2017
822017
Strategies to accelerate CO2 sequestration of cement-based materials and their application prospects
D Wang, J Xiao, Z Duan
Construction and Building Materials 314, 125646, 2022
642022
Fully utilizing carbonated recycled aggregates in concrete: Strength, drying shrinkage and carbon emissions analysis
J Xiao, H Zhang, Y Tang, Q Deng, D Wang, C Poon
Journal of Cleaner Production 377, 134520, 2022
622022
Investigation of the carbonation performance of cement-based materials under high temperatures
D Wang, T Noguchi, T Nozaki, Y Higo
Construction and Building Materials 272, 121634, 2021
392021
Properties investigation of recycled aggregates and concrete modified by accelerated carbonation through increased temperature
Z Lu, Q Tan, J Lin, D Wang
Construction and Building Materials 341, 127813, 2022
322022
Comparison study of vibration control effects between suspended tuned mass damper and particle damper
Z Lu, D Wang, P Li
Shock and Vibration 2014, 2014
312014
Sustainable 3D printed mortar with CO2 pretreated recycled fine aggregates
B Sun, Q Zeng, D Wang, W Zhao
Cement and Concrete Composites 134, 104800, 2022
172022
Investigation on the fast carbon dioxide sequestration speed of cement-based materials at 300° C–700° C
D Wang, T Noguchi, T Nozaki, Y Higo
Construction and Building Materials 291, 123392, 2021
172021
Energy analysis of particle tuned mass damper systems with applications to MDOF structures under wind-induced excitation
Z Lu, J Zhang, D Wang
Journal of Wind Engineering and Industrial Aerodynamics 218, 104766, 2021
152021
Effect of carbonation treatment on fracture behavior of low-carbon mortar with recycled sand and recycled powder
Y Tang, J Xiao, D Wang, M Zhang
Cement and Concrete Composites 142, 105178, 2023
102023
Mechanical properties of 3D printed mortar cured by CO2
D Wang, J Xiao, B Sun, S Zhang, CS Poon
Cement and Concrete Composites 139, 105009, 2023
82023
Study on the damping mechanisms of a suspended particle damper attached to a wind turbine tower
C Ma, Z Lu, D Wang, Z Wang
Wind. Struct 33, 103-114, 2021
82021
Mechanical properties of the composite sandwich structures with cold formed profiled steel plate and balsa wood core
F Zhang, Z Lu, D Wang, H Fang
Engineering Structures 300, 117256, 2024
72024
颗粒调谐质量阻尼器减震控制的数值模拟
鲁正, 陈筱一, 王佃超, 吕西林
振动与冲击 36 (3), 46-50, 2017
72017
Numerical simulation for vibration reduction control of particle tuned mass damper
L Zheng, C Xiaoyi, W Dianchao
Journal of Vibration and Shock 36 (3), 46-50, 2017
62017
Effect of accelerated carbonation of fully recycled aggregates on fracture behaviour of concrete
Y Tang, J Xiao, H Zhang, D Wang, M Zhang, J Zhang
Cement and Concrete Composites 148, 105442, 2024
52024
Evaluation of mechanical properties and anisotropy of 3D printed concrete at different temperatures
B Sun, P Li, D Wang, J Ye, G Liu, W Zhao
Structures 51, 391-401, 2023
42023
颗粒调谐质量阻尼系统对高层建筑风振控制的试验研究
鲁正, 王佃超, 吕西林
建筑结构学报 36 (11), 92-98, 2015
42015
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