Hybrid Renewable Energy Systems: Impact of thermal storage on systems optimal design and performance

被引:5
|
作者
Bartolucci, Lorenzo [1 ]
Cordiner, Stefano [1 ]
Mulone, Vincenzo [1 ]
Pasquale, Stefano [1 ]
Santarelli, Marina [1 ]
机构
[1] Univ Roma Tor Vergata, Dept Ind Engn, Via Politecn 1, I-00133 Rome, Italy
关键词
PREDICTIVE CONTROL; MANAGEMENT; INTEGRATION; BUILDINGS; ALGORITHM; BATTERY;
D O I
10.1063/1.5138749
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Hybrid Renewable Energy Systems (HRESs) can rely on the integration of multiple renewable and non-renewable energy sources. Those are effective means to increase the exploitation of local renewable energy sources in the Distributed Generation (DG) paradigm concept. The design of FIRES is usually performed matching load and production profiles in a long -to medium-term time horizon with the aim to optimize energy performance with respect to costs. In this work, a multi-objective parameter is defined to identify the optimal configuration of the hybrid system. Costs, renewable energy self-consumption and emission factors are included in the functional parameter to be targeted. Production and disposal emission factors are evaluated by means of a Life Cycle Analysis (LCA) for PV and batteries in order to show how this would affect the sizing of the FIRES. Moreover, the effects of a Thermal Energy Storage (TES) system on the performance and the design of a residential FIRES in analyzed when both electric and thermal loads are considered in the energy management strategy. A beneficial effect of the TES inclusion is observed, resulting in system downsizing at same energy and emission performance, as well as in a lower LCOE (Levelized Cost of Energy) and higher PV energy self-consumption.
引用
收藏
页数:10
相关论文
共 50 条
  • [21] Optimal dimensioning of renewable energy generation and storage systems
    Hackenberg, Annika
    Kappertz, Lars
    Rapol, Satish
    Solovievskyi, Viacheslav
    Bueskens, Christof
    ENERGY CONVERSION AND MANAGEMENT-X, 2024, 24
  • [22] Optimal design of negative emission hybrid renewable energy systems with biochar production
    Li, Lanyu
    Yao, Zhiyi
    You, Siming
    Wang, Chi-Hwa
    Chong, Clive
    Wang, Xiaonan
    APPLIED ENERGY, 2019, 243 : 233 - 249
  • [23] Energy storage systems in solar-wind hybrid renewable systems
    Awasthi A.
    Karthikeyan V.
    Das V.
    Rajasekar S.
    Singh A.K.
    Awasthi, Abhishek (abhishekawasthi761993@gmail.com), 1600, Springer Verlag (00): : 189 - 222
  • [24] Optimal design of hybrid energy systems incorporating stochastic renewable resources fluctuations
    Amusat, Oluwamayowa O.
    Shearing, Paul R.
    Fraga, Eric S.
    JOURNAL OF ENERGY STORAGE, 2018, 15 : 379 - 399
  • [25] An improved marine predators algorithm for the optimal design of hybrid renewable energy systems
    Houssein, Essam H.
    Ibrahim, Ibrahim E.
    Kharrich, Mohammed
    Kamel, Salah
    ENGINEERING APPLICATIONS OF ARTIFICIAL INTELLIGENCE, 2022, 110
  • [26] A dynamic MOPSO algorithm for multiobjective optimal design of hybrid renewable energy systems
    Sharafi, Masoud
    ElMekkawy, Tarek Y.
    INTERNATIONAL JOURNAL OF ENERGY RESEARCH, 2014, 38 (15) : 1949 - 1963
  • [27] Ancillary Services Provided by Hybrid Residential Renewable Energy Systems through Thermal and Electrochemical Storage Systems
    Bartolucci, Lorenzo
    Cordiner, Stefano
    Mulone, Vincenzo
    Santarelli, Marina
    ENERGIES, 2019, 12 (12)
  • [28] Hybrid Energy Storage Systems for Renewable Energy Integration: An Overview
    Rao, Sriram Prabhakara
    Ranganathan, Prakash
    Tomomewo, Olusegun Stanley
    2024 56TH NORTH AMERICAN POWER SYMPOSIUM, NAPS 2024, 2024,
  • [29] Optimal energy management system for the design of off grid hybrid renewable energy systems: A hybrid technique
    Annapandi, P.
    Ramya, R.
    Kotaiah, N. C.
    Rajesh, P.
    Subramanian, Arun
    JOURNAL OF INTELLIGENT & FUZZY SYSTEMS, 2023, 44 (02) : 2593 - 2614
  • [30] Optimisation and Integration of Hybrid Renewable Energy Storage Systems
    Eriksson, E. L. V.
    Gray, E. MacA
    INTERNATIONAL CONFERENCE ON SUSTAINABLE ENERGY ENGINEERING, 2017, 73