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- 2016
-
Mark
Silent Timber Build - Development of low frequency vibroacoustic prediction tools for lightweight wooden constructions
(2016) 2016 World Conference on Timber Engineering, WCTE 2016
- Chapter in Book/Report/Conference proceeding › Paper in conference proceeding
-
Mark
Modelling guidelines for simulating low frequency vibroacoustic performance in wooden T-junctions
(2016) 2016 World Conference on Timber Engineering, WCTE 2016
- Chapter in Book/Report/Conference proceeding › Paper in conference proceeding
- 2015
-
Mark
The effect of modelling acoustic media in cavities of lightweight buildings on the transmission of structural vibrations
- Contribution to journal › Article
-
Mark
Numerical Prediction Tools for Low-Frequency Sound Insulation in Lightweight Buildings
- Chapter in Book/Report/Conference proceeding › Book chapter
-
Mark
Psycho-vibratory evaluation of timber floors - Towards the determination of design indicators of vibration acceptability and vibration annoyance
- Contribution to journal › Article
-
Mark
Modeling walking on a lightweight wooden floor
(2015) 44th International Congress and Exposition on Noise Control Engineering, INTER-NOISE 2015 p.6263-6270
- Chapter in Book/Report/Conference proceeding › Paper in conference proceeding
- 2014
-
Mark
Characterisation of an elastomer for noise and vibration insulation in lightweight timber buildings
- Contribution to journal › Article
-
Mark
Determination of vibration acceptability and annoyance design indicators for human response to wooden-floor vibrations
(2014) 43rd International Congress on Noise Control Engineering: Improving the World Through Noise Control, INTERNOISE 2014
- Contribution to conference › Paper, not in proceeding
-
Mark
Challenges for acoustic calculation models in "silent timber build", Part 1- FEM
(2014) 43rd International Congress on Noise Control Engineering: Improving the World Through Noise Control, INTERNOISE 2014 p.4424-4429
- Chapter in Book/Report/Conference proceeding › Paper in conference proceeding
- 2013
-
Mark
Vibrations in Lightweight Buildings - Perception and Prediction
(2013)
- Thesis › Licentiate thesis