Items where Author is "Ozoemena, Matthew"

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Number of items: 8.

Article

Ozoemena, Matthew, Cheung, Wai Ming and Hasan, Reaz (2018) Improving uncertainty analysis of embodied energy and embodied carbon in wind turbine design. International Journal of Advanced Manufacturing Technology, 94 (5-8). pp. 1565-1577. ISSN 0268-3768

Ozoemena, Matthew, Cheung, Wai Ming and Hasan, Reaz (2018) Comparative LCA of technology improvement opportunities for a 1.5 MW wind turbine in the context of an onshore wind farm. Clean Technologies and Environmental Policy, 20 (1). pp. 173-190. ISSN 1618-954X

Ozoemena, Matthew, Cheung, Wai Ming, Hasan, Reaz and Fargani, Haitem (2016) A hybrid Stochastic Approach for Improving Uncertainty Analysis in the Design and Development of a Wind Turbine. Procedia CIRP, 56. pp. 19-24. ISSN 2212-8271

Ozoemena, Matthew, Hasan, Reaz and Cheung, Wai Ming (2016) Analysis of technology improvement opportunities for a 1.5 MW wind turbine using a hybrid stochastic approach in life cycle assessment. Renewable Energy, 93. pp. 369-382. ISSN 0960-1481

Book Section

Ibude, Ikechukwu, Hasan, Reaz, Fargani, Haitem, Ozoemena, Matthew and Cheung, Wai Ming (2014) Sustainability analysis of Palm oil vs. Jatropha. In: Proceedings of the 12th International Conference on Manufacturing Research. Southampton Solent University, UK, pp. 265-270. ISBN 978-0-9926958-4-2

Conference or Workshop Item

Ozoemena, Matthew, Cheung, Wai Ming, Hasan, Reaz and Hackney, Philip (2014) A hybrid Data Quality Indicator and statistical method for improving uncertainty analysis in LCA of a small off-grid wind turbine. In: ARCOM Doctoral Workshop on Sustainable Urban Retrofit and Technologies, 19 June 2014, London South Bank University.

Ozoemena, Matthew, Cheung, Wai Ming, Hasan, Reaz and Hackney, Philip (2013) A Review of Life Cycle Assessment of Renewable Energy Systems. In: 11th International Conference on Manufacturing Research, 19 - 20 September 2013, Cranfield University.

Thesis

Ozoemena, Matthew (2016) Sustainability Assessment of Wind Turbine Design Variations: An Analysis of the Current Situation and Potential Technology Improvement Opportunities. Doctoral thesis, Northumbria University.

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