Alkanes as working fluids for high-temperature exhaust heat recovery of diesel engine using Organic Rankine Cycle X Shu, G., Li, X. Tian, H Tian, Liang, X, Wei, H., Wang Applied Energy 119, 204-217, 2014 | 258 | 2014 |
Vehicle Noise and Vibration Refinement X Wang Academic Press, ISBN: 9781845694975., 2014 | 213* | 2014 |
Point absorber wave energy harvesters: A review of recent developments E Al Shami, R Zhang, X Wang Energies 12 (1), 47, 2018 | 160 | 2018 |
Comparison and parameter optimization of a two-stage thermoelectric generator using high temperature exhaust of internal combustion engine X Liang, X Sun, H Tian, G Shu, Y Wang, X Wang Applied energy 130, 190-199, 2014 | 148 | 2014 |
An active seat suspension design for vibration control of heavy duty vehicles WWX Ning, D., Sun, S., Zhang, J., Du, H., Li Journal of Low Frequency Noise, Vibration & Active Control 35 (4), 264–278, 2016 | 119 | 2016 |
A multi degree of freedom piezoelectric vibration energy harvester with piezoelectric elements inserted between two nearby oscillators XWSJ H. Xiao Mechanical Systems and Signal Processing 68, 138–154., 2016 | 101 | 2016 |
Development of a Novel Knock Characteristic Detection Method for Gasoline Engines Based on Wavelet-denoising and EMD Decomposition XW F. Bi, T. Ma Mechanical Systems and Signal Processing 117, 517–536, 2019 | 91 | 2019 |
Effect of lubricating oil additive package on the characterization of diesel particles Y Wang, X Liang, G Shu, X Wang, J Bao, C Liu Applied Energy 136, 682-691, 2014 | 78 | 2014 |
A comprehensive review of the techniques on regenerative shock absorber systems R Zhang, X Wang, S John Energies 11 (5), 1167, 2018 | 77 | 2018 |
A dimensionless analysis of a 2DOF piezoelectric vibration energy harvester SJ H. Xiao, X. Wang Mechanical Systems and Signal Processing 58, 355–375., 2015 | 76 | 2015 |
Using the analytic network process (ANP) to determine method of waste energy recovery from engine X Liang, X Sun, G Shu, K Sun, X Wang, X Wang Energy Conversion and Management 66, 304-311, 2013 | 74 | 2013 |
Review on seat suspension system technology development A Heidarian, X Wang Applied Sciences 9 (14), 2834, 2019 | 69 | 2019 |
A parameter study and optimization of two body wave energy converters E Al Shami, X Wang, R Zhang, L Zuo Renewable energy 131, 1-13, 2019 | 69 | 2019 |
Acoustical characterisation of porous sound absorbing materials: a review L Egab, X Wang, M Fard International Journal of Vehicle Noise and Vibration 10 (1-2), 129-149, 2014 | 66 | 2014 |
A novel regenerative shock absorber with a speed doubling mechanism and its Monte Carlo simulation R Zhang, X Wang, Z Liu Journal of Sound and Vibration 417, 260-276, 2018 | 60 | 2018 |
A review and selection of engine waste heat recovery technologies using analytic hierarchy process and grey relational analysis HTXW X. Y. Liang, X. X. Wang, G. Q. Shu, H. Q. Wei Int. J. Energy Res 39, 453 – 471, 2015 | 58 | 2015 |
Reduction of low frequency vibration of truck driver and seating system through system parameter identification, sensitivity analysis and active control X Wang, F Bi, H Du Mechanical Systems and Signal Processing 105, 16-35, 2018 | 54 | 2018 |
A study of tyre cavity resonance and noise reduction using inner trim Z Mohamed, X Wang Mechanical Systems and Signal Processing 50, 498-509, 2015 | 54 | 2015 |
Parameter study and optimization of a half-vehicle suspension system model integrated with an arm-teeth regenerative shock absorber using Taguchi method R Zhang, X Wang Mechanical Systems and Signal Processing 126, 65-81, 2019 | 53 | 2019 |
A study of the effects of increasing the degrees of freedom of a point-absorber wave energy converter on its harvesting performance E Al Shami, X Wang, X Ji Mechanical Systems and Signal Processing 133, 106281, 2019 | 47 | 2019 |