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Design of Steam Turbine for Electric Power Production Using Heat Energy from Palm Kernel Shell

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Design of Steam Turbine for Electric Power Production Using Heat Energy from Palm Kernel Shell ( design-steam-turbine-electric-power-production-using-heat-en )

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B. Kareem et al. ble energy source for boiler firing. Practical implementation of the design can open a new horizon of enabling innovative means of private power generation to compliment the public supply. Further study focusing improvement in the areas of designing a sustainable gearing system to cater for overloads and insulating system to prevent heat loss should be considered. Acknowledgements Tetfund Nigeria is acknowledged for supporting this research under grant Ref: VCPU/TETFund/155. Conflicts of Interest The authors declare no conflicts of interest regarding the publication of this paper. References [1] Jarosław, M., Marian, P. and Krzysztof, K. (2009) Design Analysis of Turbines for Co-Generating Micro-Power Plant Working in Accordance with Organic Rankine’s Cycle. Polish Maritime Research, 16, 34-38. [2] Lakhoua, M.N. (2012) Causal Analysis and Calculation of the Steam Turbine Effi- ciency of a Thermal Power Plant. International Journal of Physical Sciences, 7, 5493-5497. [3] Kareem, B. and Babatunde, D.D. (2018) Optimization of Energy Content of Palm Kernel Shell (PKS) Using Modelling Approach. International Journal of Advance Industrial Engineering, 6, 111-117. [4] Oladosu, K.O. (2016) Optimization of Combustion of Palm Kernel Shell in a Grate Furnace for Superheated Steam Generation. Ph.D Thesis, Mechanical Engineering Department, Federal University of Technology Akure, Nigeria. [5] Kareem, B., Oladosu, K.O., Alade, A.O. and Durowoju, M.O. (2018) Optimization of Combustion Characteristics of Palm Kernel-Based Biofuel for Grate Furnace. In- ternational Journal of Energy and Environmental Engineering, 9, 457-472. https://doi.org/10.1007/s40095-018-0277-5 [6] Oladosu, K.O., Ajayeoba, A.O., Kareem B. and Akinnuli, B.O. (2018) Development and Cost Estimation for Sizing 5 Kw Palm Kernel Shell Steam Boiler. American Journal of Engineering Research (AJER), 7, 113-122. [7] Oladosu, K.O., Kareem, B., Akinnuli, B.O. and Asafa, T.B. (2017) Application of Computer Aided Design for Palm Kernel Shell Steam Boiler. Environment-Leonardo Electronic Journal of Practices and Technologies, 30, 87-104. [8] Oladosu, K.O., Kareem, B., Akinnuli, B.O. and Asafa, T.B. (2017) Development of Computer Program for Design of a Scalable Combustion Furnace Using Palm Ker- nel Shell as Heat Source. Acta Technica Corviniensis-Bulletin of Engineering, 1, 127-134. [9] Oladosu, K.O., Kareem, B., Akinnuli, B.O. and Asafa, T.B. (2016) Optimisation of Ash Yield from Combustion of Palm Kernel Shell and Selected Additives (Al2O3, CaO and MgO) Using D-Optimal Design. Leonardo Electronic Journal of Practices and Technologies, No. 28, 9-18. [10] Chandra, S.M.R. (2015) Design and Analysis of Steam Turbine Rotor. International Journal of Mechanical Engineering and Technology, 6, 195-201. DOI: 10.4236/jpee.2018.611009 124 Journal of Power and Energy Engineering

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