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Published in: Clean Technologies and Environmental Policy 7/2015

01-10-2015 | Original Paper

A process integration approach for design of hybrid power systems with energy storage

Authors: Nor Erniza Mohammad Rozali, Sharifah Rafidah Wan Alwi, Zainuddin Abdul Manan, Jiří Jaromír Klemeš, Mohammad Yusri Hassan

Published in: Clean Technologies and Environmental Policy | Issue 7/2015

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Abstract

Selection of energy storage technology in hybrid power systems (HPS) is vital due to the unique advantages and capabilities offered by different storage technologies. For an optimal operation, the efficient and economical storage system for an HPS should be selected. This work introduces a new systematic generic framework to determine the most cost-effective storage technology for an HPS. A Power Pinch Analysis tool called the AC/DC modified storage cascade table has been developed to optimise the HPS by considering various storage technologies. The economics of the various types of storage modes was analysed, taking into account the associated energy losses, among others. The method was applied to two case studies with different power trends to evaluate the effect of storage efficiencies and storage form on the performance of HPS. A superconducting magnetic storage system of 26.12 kWh capacity, that gives an investment payback period of 3.6 years, is the most cost-effective storage technology for the small-scale household system in Case Study 1. For the large-scale industrial application presented in Case Study 2, the Lead–Acid battery with a capacity of 15.38 MWh gives the lowest payback period (1.43 years).

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Literature
go back to reference Badran O, Mamlook R, Abdulhadi E (2012) Toward clean environment: evaluation of solar electric power technologies using fuzzy logic. Clean Technol Environ Policy 14(2):357–367CrossRef Badran O, Mamlook R, Abdulhadi E (2012) Toward clean environment: evaluation of solar electric power technologies using fuzzy logic. Clean Technol Environ Policy 14(2):357–367CrossRef
go back to reference Bandyopadhyay S (2013) 33 Applications of Pinch Analysis in the design of isolated energy systems. In: Klemeš JJ (ed) Handbook of Process Integration (PI). Woodhead Publishing, Cambridge, UK, pp 1038–1056. doi:10.1533/9780857097255.5.1038 CrossRef Bandyopadhyay S (2013) 33 Applications of Pinch Analysis in the design of isolated energy systems. In: Klemeš JJ (ed) Handbook of Process Integration (PI). Woodhead Publishing, Cambridge, UK, pp 1038–1056. doi:10.​1533/​9780857097255.​5.​1038 CrossRef
go back to reference Bayón L, Grau JM, Ruiz MM, Suárez PM (2013) Mathematical modelling of the combined optimization of a pumped-storage hydro-plant and a wind park. Math Comput Model 57(7–8):2024–2028CrossRef Bayón L, Grau JM, Ruiz MM, Suárez PM (2013) Mathematical modelling of the combined optimization of a pumped-storage hydro-plant and a wind park. Math Comput Model 57(7–8):2024–2028CrossRef
go back to reference Bolund B, Bernhoff H, Leijon M (2007) Flywheel energy and power storage systems. Renew Sustain Energy Rev 11(2):235–258CrossRef Bolund B, Bernhoff H, Leijon M (2007) Flywheel energy and power storage systems. Renew Sustain Energy Rev 11(2):235–258CrossRef
go back to reference Bradbury K (2010) Energy storage technology review. Duke University, Durham, North Carolina, USA Bradbury K (2010) Energy storage technology review. Duke University, Durham, North Carolina, USA
go back to reference Bureau of Energy Efficiency (2013) Electrical system. Ministry of Power, New Delhi, India Bureau of Energy Efficiency (2013) Electrical system. Ministry of Power, New Delhi, India
go back to reference Burger B, Ruther R (2005) Site-dependent system performance and optimal inverter sizing of grid-connected PV systems. In: Photovoltaic specialists conference, 2005. Conference record of the 31st IEEE, 3–7 Jan. 2005. p 1675 Burger B, Ruther R (2005) Site-dependent system performance and optimal inverter sizing of grid-connected PV systems. In: Photovoltaic specialists conference, 2005. Conference record of the 31st IEEE, 3–7 Jan. 2005. p 1675
go back to reference Commission European (2000) Energy storage: a key technology for decentralised power, power quality and clean transport. Information Day on Non-Nuclear Energy RTD, Brussels, Belgium Commission European (2000) Energy storage: a key technology for decentralised power, power quality and clean transport. Information Day on Non-Nuclear Energy RTD, Brussels, Belgium
go back to reference Crilly D, Zhelev T (2010) Further emissions and energy targeting: an application of CO2 emissions pinch analysis to the Irish electricity generation sector. Clean Technol Environ Policy 12(2):177–189CrossRef Crilly D, Zhelev T (2010) Further emissions and energy targeting: an application of CO2 emissions pinch analysis to the Irish electricity generation sector. Clean Technol Environ Policy 12(2):177–189CrossRef
go back to reference Elmegaard B, Brix W (2011) Efficiency of compressed air energy storage. DTU Technical University of Denmark, Lyngby, Denmark Elmegaard B, Brix W (2011) Efficiency of compressed air energy storage. DTU Technical University of Denmark, Lyngby, Denmark
go back to reference Esfahani IJ, Lee S, Yoo C (2015) Extended-power pinch analysis (EPoPA) for integration of renewable energy systems with battery/hydrogen storages. Renew Energy 80:1–14CrossRef Esfahani IJ, Lee S, Yoo C (2015) Extended-power pinch analysis (EPoPA) for integration of renewable energy systems with battery/hydrogen storages. Renew Energy 80:1–14CrossRef
go back to reference Gonzalez A, Gallachóir B, McKeogh E, Lynch K (2004) Study of electricity storage technologies and their potential to address wind energy intermittency in Ireland. Sustainable Energy Ireland. UCC Sustainable Energy Research Group, Dublin, Ireland Gonzalez A, Gallachóir B, McKeogh E, Lynch K (2004) Study of electricity storage technologies and their potential to address wind energy intermittency in Ireland. Sustainable Energy Ireland. UCC Sustainable Energy Research Group, Dublin, Ireland
go back to reference Guerrero-Lemus R, Martínez-Duart JM (2013) Electricity storage. In: Renewable energies and CO2. Springer, London, pp 307–333 Guerrero-Lemus R, Martínez-Duart JM (2013) Electricity storage. In:  Renewable energies and CO2. Springer, London, pp 307–333
go back to reference Hadjipaschalis I, Poullikkas A, Efthimiou V (2009) Overview of current and future energy storage technologies for electric power applications. Renew Sustain Energy Rev 13(6):1513–1522CrossRef Hadjipaschalis I, Poullikkas A, Efthimiou V (2009) Overview of current and future energy storage technologies for electric power applications. Renew Sustain Energy Rev 13(6):1513–1522CrossRef
go back to reference Hartmann N, Vöhringer O, Kruck C, Eltrop L (2012) Simulation and analysis of different adiabatic compressed air energy storage plant configurations. Appl Energy 93:541–548CrossRef Hartmann N, Vöhringer O, Kruck C, Eltrop L (2012) Simulation and analysis of different adiabatic compressed air energy storage plant configurations. Appl Energy 93:541–548CrossRef
go back to reference Hasan NS, Hassan MY, Majid MS, Rahman HA (2013) Review of storage schemes for wind energy systems. Renew Sustain Energy Rev 21:237–247CrossRef Hasan NS, Hassan MY, Majid MS, Rahman HA (2013) Review of storage schemes for wind energy systems. Renew Sustain Energy Rev 21:237–247CrossRef
go back to reference Hernandez-Torres D, Bridier L, David M, Lauret P, Ardiale T (2015) Technico-economical analysis of a hybrid wave power-air compression storage system. Renew Energy 74:708–717CrossRef Hernandez-Torres D, Bridier L, David M, Lauret P, Ardiale T (2015) Technico-economical analysis of a hybrid wave power-air compression storage system. Renew Energy 74:708–717CrossRef
go back to reference Ho WS, Khor CS, Hashim H, Macchietto S, Klemeš JJ (2013b) SAHPPA: a novel power pinch analysis approach for the design of off-grid hybrid energy systems. Clean Technol Environ Policy 16(5):957–970CrossRef Ho WS, Khor CS, Hashim H, Macchietto S, Klemeš JJ (2013b) SAHPPA: a novel power pinch analysis approach for the design of off-grid hybrid energy systems. Clean Technol Environ Policy 16(5):957–970CrossRef
go back to reference Ibrahim H, Ilinca A, Perron J (2008) Energy storage systems—characteristics and comparisons. Renew Sustain Energy Rev 12(5):1221–1250CrossRef Ibrahim H, Ilinca A, Perron J (2008) Energy storage systems—characteristics and comparisons. Renew Sustain Energy Rev 12(5):1221–1250CrossRef
go back to reference International Electrotechnical Commission (2011) Electrical energy storage. IEC Market Strategy Board, Geneva, Switzerland International Electrotechnical Commission (2011) Electrical energy storage. IEC Market Strategy Board, Geneva, Switzerland
go back to reference Jin JX, Chen XY (2012) Study on the SMES application solutions for smart grid. Phys Procedia 36:902–907CrossRef Jin JX, Chen XY (2012) Study on the SMES application solutions for smart grid. Phys Procedia 36:902–907CrossRef
go back to reference Klemeš JJ, Kravanja Z (2013) Forty years of heat Integration: pinch analysis (PA) and mathematical programming (MP). Curr Opin Chem Eng 2(4):461–474CrossRef Klemeš JJ, Kravanja Z (2013) Forty years of heat Integration: pinch analysis (PA) and mathematical programming (MP). Curr Opin Chem Eng 2(4):461–474CrossRef
go back to reference Klemeš JJ, Varbanov PS, Kravanja Z (2013) Recent developments in process integration. Chem Eng Res Des 91(10):2037–2053CrossRef Klemeš JJ, Varbanov PS, Kravanja Z (2013) Recent developments in process integration. Chem Eng Res Des 91(10):2037–2053CrossRef
go back to reference Komor P, Glassmire J (2012) Electricity storage and renewables for island power a guide for decision makers. International Renewable Energy Agency (IRENA), Bonn, Germany Komor P, Glassmire J (2012) Electricity storage and renewables for island power a guide for decision makers. International Renewable Energy Agency (IRENA), Bonn, Germany
go back to reference Liang J, Harley RG (2010) Pumped storage hydro-plant models for system transient and long-term dynamic studies. In: Power and energy society general meeting, 2010 IEEE, IEEE, p 1 Liang J, Harley RG (2010) Pumped storage hydro-plant models for system transient and long-term dynamic studies. In: Power and energy society general meeting, 2010 IEEE, IEEE, p 1
go back to reference Long Z, Zhiping Q (2009) Review of Flywheel Energy Storage System. In: Goswami DY, Zhao Y (eds) Proceedings of ISES world congress 2007. Springer, Berlin, Germany, pp 2815–2819. doi:10.1007/978-3-540-75997-3_568 Long Z, Zhiping Q (2009) Review of Flywheel Energy Storage System. In: Goswami DY, Zhao Y (eds) Proceedings of ISES world congress 2007. Springer, Berlin, Germany, pp 2815–2819. doi:10.​1007/​978-3-540-75997-3_​568
go back to reference Loughlin DH, Yelverton WH, Dodder RL, Miller CA (2013) Methodology for examining potential technology breakthroughs for mitigating CO2 and application to centralized solar photovoltaics. Clean Technol Environ Policy 15(1):9–20CrossRef Loughlin DH, Yelverton WH, Dodder RL, Miller CA (2013) Methodology for examining potential technology breakthroughs for mitigating CO2 and application to centralized solar photovoltaics. Clean Technol Environ Policy 15(1):9–20CrossRef
go back to reference Masjuki H, Jahirul M, Saidur R, Rahim N, Mekhilef S, Ping H, Zamaluddin M (2006) Energy and electricity consumption analysis of malaysian industrial sector. Wood Wood Prod 331:8 Masjuki H, Jahirul M, Saidur R, Rahim N, Mekhilef S, Ping H, Zamaluddin M (2006) Energy and electricity consumption analysis of malaysian industrial sector. Wood Wood Prod 331:8
go back to reference Mohammad Rozali NE, Alwi SRW, Manan ZA, Klemeš JJ, Hassan MY (2013a) Optimisation of pumped-hydro storage system for hybrid power system using power pinch analysis. Chem Eng Trans 35:85–90. doi:10.3303/CET1335014 Mohammad Rozali NE, Alwi SRW, Manan ZA, Klemeš JJ, Hassan MY (2013a) Optimisation of pumped-hydro storage system for hybrid power system using power pinch analysis. Chem Eng Trans 35:85–90. doi:10.​3303/​CET1335014
go back to reference Morandi A, Trevisani L, Negrini F, Ribani PL, Fabbri M (2012) Feasibility of superconducting magnetic energy storage on board of ground vehicles with present state-of-the-art superconductors. IEEE Trans Appl Supercond 22(2):5700106–5700106. doi:10.1109/tasc.2011.2177266 CrossRef Morandi A, Trevisani L, Negrini F, Ribani PL, Fabbri M (2012) Feasibility of superconducting magnetic energy storage on board of ground vehicles with present state-of-the-art superconductors. IEEE Trans Appl Supercond 22(2):5700106–5700106. doi:10.​1109/​tasc.​2011.​2177266 CrossRef
go back to reference Notton G, Lazarov V, Stoyanov L (2011) Analysis of pumped hydroelectric storage for a wind/PV system for grid integration. Ecol Eng Environ Prot 32:64–73 Notton G, Lazarov V, Stoyanov L (2011) Analysis of pumped hydroelectric storage for a wind/PV system for grid integration. Ecol Eng Environ Prot 32:64–73
go back to reference Nottrott A, Kleissl J, Washom B (2013) Energy dispatch schedule optimization and cost benefit analysis for grid-connected, photovoltaic-battery storage systems. Renew Energy 55:230–240CrossRef Nottrott A, Kleissl J, Washom B (2013) Energy dispatch schedule optimization and cost benefit analysis for grid-connected, photovoltaic-battery storage systems. Renew Energy 55:230–240CrossRef
go back to reference Ruddell A (2002) Investigation on storage technologies for intermittent renewable energies: evaluation and recommended R&D strategy. Chilton, Durham Ruddell A (2002) Investigation on storage technologies for intermittent renewable energies: evaluation and recommended R&D strategy. Chilton, Durham
go back to reference Schoenung SM, Hassenzahl W (2002) Long vs. short-term energy storage: sensitivity analysis. A study for the DOE energy storage systems program. Sandia report. SAND2007-4253. Unlimited release printed July. Sandia National Laboratories, Livermore Schoenung SM, Hassenzahl W (2002) Long vs. short-term energy storage: sensitivity analysis. A study for the DOE energy storage systems program. Sandia report. SAND2007-4253. Unlimited release printed July. Sandia National Laboratories, Livermore
go back to reference Schoenung SM, Hassenzahl W (2003) Long-vs. short-term energy storage technologies analysis. A life-cycle cost study. A Study for the DOE Energy Storage Systems Program, LivermoreCrossRef Schoenung SM, Hassenzahl W (2003) Long-vs. short-term energy storage technologies analysis. A life-cycle cost study. A Study for the DOE Energy Storage Systems Program, LivermoreCrossRef
go back to reference Schoppe C (2010) Wind and Pumped-Hydro Power Storage: Determining Optimal Commitment Policies with Knowledge Gradient Non-Parametric Estimation. Princeton University, USA Schoppe C (2010) Wind and Pumped-Hydro Power Storage: Determining Optimal Commitment Policies with Knowledge Gradient Non-Parametric Estimation. Princeton University, USA
go back to reference Seider WD, Seader JD, Lewin DR, Widagdo S (2010) Product and process design principles: synthesis analysis and evaluation. Wiley, San Francisco, USA Seider WD, Seader JD, Lewin DR, Widagdo S (2010) Product and process design principles: synthesis analysis and evaluation. Wiley, San Francisco, USA
go back to reference Sheikh MRI, Tamura J (2012) grid frequency mitigation using SMES of optimum power and energy storage capacity. In: Muyeen SM (ed) Wind energy conversion systems green energy and technology. Springer, London, UK, pp 337–363. doi:10.1007/978-1-4471-2201-2_14 CrossRef Sheikh MRI, Tamura J (2012) grid frequency mitigation using SMES of optimum power and energy storage capacity. In: Muyeen SM (ed) Wind energy conversion systems green energy and technology. Springer, London, UK, pp 337–363. doi:10.​1007/​978-1-4471-2201-2_​14 CrossRef
go back to reference Sterner M (2014) Global energy transition based on renewables and new storage technologies. 9th Conference on sustainable development of energy, Water and environment systems, plenary lecture SDEWES2014-0608 www.mediterranean2014.sdewes.org. Accessed 9 Oct 2014 Sterner M (2014) Global energy transition based on renewables and new storage technologies. 9th Conference on sustainable development of energy, Water and environment systems, plenary lecture SDEWES2014-0608 www.​mediterranean201​4.​sdewes.​org. Accessed 9 Oct 2014
go back to reference Succar S, Williams RH (2008) Compressed air energy storage: theory, resources, and applications for wind power. Princeton Environmental Institute Report 8, Princeton, USA Succar S, Williams RH (2008) Compressed air energy storage: theory, resources, and applications for wind power. Princeton Environmental Institute Report 8, Princeton, USA
go back to reference Sundararagavan S, Baker E (2012) Evaluating energy storage technologies for wind power integration. Solar Energy 86(9):2707–2717 Sundararagavan S, Baker E (2012) Evaluating energy storage technologies for wind power integration. Solar Energy 86(9):2707–2717
go back to reference The Arizona Research Institute for Solar Energy (2010) Study of compressed air energy storage with grid and photovoltaic energy generation. University of Arizona, Tucson, USA The Arizona Research Institute for Solar Energy (2010) Study of compressed air energy storage with grid and photovoltaic energy generation. University of Arizona, Tucson, USA
go back to reference Wan Alwi SR, Mohammad Rozali NE, Abdul-Manan Z, Klemeš JJ (2012) A process integration targeting method for hybrid power systems. Energy 44(1):6–10CrossRef Wan Alwi SR, Mohammad Rozali NE, Abdul-Manan Z, Klemeš JJ (2012) A process integration targeting method for hybrid power systems. Energy 44(1):6–10CrossRef
go back to reference Wan Alwi SR, Ong ST, Mohammad Rozali NE, Manan ZA, Klemeš JJ (2013) New graphical tools for process changes via load shifting for hybrid power systems based on Power Pinch Analysis. Clean Technol Environ Policy 15(3):459–472. doi:10.1007/s10098-013-0605-7 CrossRef Wan Alwi SR, Ong ST, Mohammad Rozali NE, Manan ZA, Klemeš JJ (2013) New graphical tools for process changes via load shifting for hybrid power systems based on Power Pinch Analysis. Clean Technol Environ Policy 15(3):459–472. doi:10.​1007/​s10098-013-0605-7 CrossRef
go back to reference Wilde D (2011) How can pumped-storage hydroelectric generators optimise plant operation in liberalised electricity markets with growing wind power integration?. University of Dundee, Scotland, UK Wilde D (2011) How can pumped-storage hydroelectric generators optimise plant operation in liberalised electricity markets with growing wind power integration?. University of Dundee, Scotland, UK
go back to reference Yang Z, Wang Z, Ran P, Li Z, Ni W (2014) Thermodynamic analysis of a hybrid thermal-compressed air energy storage system for the integration of wind power. Appl Therm Eng 66(1):519–527CrossRef Yang Z, Wang Z, Ran P, Li Z, Ni W (2014) Thermodynamic analysis of a hybrid thermal-compressed air energy storage system for the integration of wind power. Appl Therm Eng 66(1):519–527CrossRef
go back to reference Zhu J, Qiu M, Wei B, Zhang H, Lai X, Yuan W (2013) Design, dynamic simulation and construction of a hybrid HTS SMES (high-temperature superconducting magnetic energy storage systems) for Chinese power grid. Energy 51:184–192. doi:10.1016/j.energy.2012.09.044 CrossRef Zhu J, Qiu M, Wei B, Zhang H, Lai X, Yuan W (2013) Design, dynamic simulation and construction of a hybrid HTS SMES (high-temperature superconducting magnetic energy storage systems) for Chinese power grid. Energy 51:184–192. doi:10.​1016/​j.​energy.​2012.​09.​044 CrossRef
Metadata
Title
A process integration approach for design of hybrid power systems with energy storage
Authors
Nor Erniza Mohammad Rozali
Sharifah Rafidah Wan Alwi
Zainuddin Abdul Manan
Jiří Jaromír Klemeš
Mohammad Yusri Hassan
Publication date
01-10-2015
Publisher
Springer Berlin Heidelberg
Published in
Clean Technologies and Environmental Policy / Issue 7/2015
Print ISSN: 1618-954X
Electronic ISSN: 1618-9558
DOI
https://doi.org/10.1007/s10098-015-0934-9

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