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Journal of Energy Storage | Vol 81, 15 March 2024

Advanced exergo-economic analysis of an advanced adiabatic compressed air energy storage system with the modified productive structure analysis method and multi-objective optimization study. Dilek Nur Özen, Esra Hançer Güleryüz, Ayşe

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Journal of Energy Storage | Vol 36, April 2021

Energy, exergy, and exergoeconomic analysis of a polygeneration system driven by solar energy with a thermal energy storage tank for power, heating, and freshwater production. Zhang Xi, Soroush Eshaghi, Farshid Sardari. Article 102429. View PDF.

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Journal of Energy Storage | Vol 72, Part C, 25 November 2023

Studies of the hydrogen energy storage potentials of Fe- and Al-doped silicon carbide nanotubes (SiCNTs) by optical adsorption spectra analysis. Yahaya Saadu Itas, Razif Razali, Salisu Tata, Abubakr M. Idris, Mayeen Uddin Khandaker. Article 108534.

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Journal of Energy Storage | Vol 72, Part D, 30 November 2023

Different metal precursor based rapid synthesis of α-Ni (OH)2-type Ni-Co-Mn layered double hydroxides and its use as electrodes for high performance energy storage devices. Megha Goyal, Preeti Dahiya, Shubham Kumar, Rahul, Tapas Kumar Mandal. Article 108622. View

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Journal of Energy Storage | Vol 51, July 2022

Multi-time scale energy management of multi-microgrid systems considering energy storage systems: A multi-objective two-stage optimization framework. Ali Jani, Hamid Karimi, Shahram Jadid. Article 104554.

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Journal of Energy Storage | Vol 72, Part E, 30 November 2023

Thermal energy storage with PCMs: A comprehensive study of horizontal shell and multi-tube systems with finned design. Seyed Soheil Mousavi Ajarostaghi, Amirhossein Amirsoleymani, Müslüm Arıcı, Adel Dolati, Leyla Amiri. Article 108762.

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A review of battery energy storage systems and advanced battery

Energy storage systems (ESS) serve an important role in reducing the gap between the generation and utilization of energy, which benefits not only the power grid but also individual consumers. An increasing range of industries are discovering applications for energy storage systems (ESS), encompassing areas like EVs, renewable energy

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Physical Energy Storage Technology in Energy Revolution

Physical Energy Storage Technology in Energy Revolution. Abstract. Promoting the healthy development of energy storage technology and industry has great strategic significance on increasing the proportion of renewable energy, ensuring energy security, improving energy eficiency, and promoting the energy revolution.

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Journal of Energy Storage | Vol 74, Part A, 25 December 2023

Experimental and developed DC microgrid energy management integrated with battery energy storage based on multiple dynamic matrix model predictive control. Reza Sepehrzad, Javid Ghafourian, Atefeh Hedayatnia, Ahmed Al-Durrad, Mohammad Hassan Khooban. Article 109282.

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Thermo-economic performance of a compressed CO2 energy storage

An aboveground large-scale CCES system is reported with small volume of high pressure storage tank, removing the geographical restriction of the underground compressed gas energy storage. 2) The thermodynamic and economic coupling characteristics of CCES system are analyzed, with particular attentions on the optimum

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High-performance multifunctional energy storage-corrugated

The empty space of the corrugated core was used as an energy storage space, and the corrugated core was fabricated via 3D printing technology using a

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Distributed generation with energy storage systems: A case study

The distributed generation (DG), a typical decentralized energy system, is developed "on-site" or "near-site" to supply energy sources (i.e. cooling, heating and power) for individual users or communities with a potential to increase energy efficiencies and reduce air pollutant emissions dramatically [1].

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Effect of core-shell ratio on the thermal energy storage capacity of

As an energy storage material, PCMs are categorized into three different groups; organic materials, inorganic salts [8], and metals [9]. PCMs have a wide range of applications such as thermal insulation [10], heat transfer [11,12], solar energy utilization [13], and building materials [14], [15], [16].

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Energy storage technologies: An integrated survey of

Energy Storage Technology is one of the major components of renewable energy integration and decarbonization of world energy systems. It

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Enhanced dielectric energy storage properties in linear/nonlinear composites with hybrid-core

Polymer dielectrics for electrostatic capacitors possess well-recognized advantages, including ultrahigh power density, excellent processability, and unique sel Peng Yin, Peitao Xie, Qingyang Tang, Qifa He, Shuang Wei, Runhua Fan, Zhicheng Shi; Enhanced dielectric energy storage properties in linear/nonlinear composites with hybrid

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Energy storage under high-rate compression of single crystal

Under compressive deformation conditions held unchanged for sufficient strains, single crystal tantalum is predicted to asymptotically approach a state of steady flow in which the defect microstructure becomes statistically stationary. Energy storage ceases and the TQC approaches 1.0 in the same asymptotic limit. •.

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Journal of Energy Storage | Vol 66, 30 August 2023

30 August 2023. Previous vol/issue. Next vol/issue. Research Papers. Review Articles. Article from the Special Issue on Advances in Hybrid Energy Storage Systems and Their Application in Green Energy Systems; Edited by Ruiming Fang and Ronghui Zhang. Receive an update when the latest issues in this journal are published.

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Energy storage in long-term system models: a review of

Energy storage performance: better characterization of energy storage performance (e.g. operation-dependent efficiencies, degradation) in long-term system

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Core-shell nanomaterials: Applications in energy storage and

Due to the unique physical and chemical properties, core-shell structured nanomaterials have been widely used in energy storage and conversion. For instance, coating noble metal or metal oxides, as a monoatomic layer on the surface of non-noble metal-based nanocomposites ( e.g., Co, Fe or Ni), can produce cost effective and atomic

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Journal of Energy Storage | Vol 88, 30 May 2024

Enhanced energy management of DC microgrid: Artificial neural networks-driven hybrid energy storage system with integration of bidirectional DC-DC converter. Senthil Kumar Ramu, Indragandhi Vairavasundaram, Balakumar Palaniyappan, Ashok Bragadeshwaran, Belqasem Aljafari. Article 111562.

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High-performance multifunctional energy storage-corrugated lattice core

In this study, an energy storage multifunctional sandwich structure (ESMS) was designed to perform well-balanced and excellent multifunctional performance. The corrugated core sandwich structure was newly developed to prevent the degradation of mechanical properties even when lithium polymer (LiPo) batteries are integrated. The

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Overviews of dielectric energy storage materials and methods to

In this paper, we first introduce the research background of dielectric energy storage capacitors and the evaluation parameters of energy storage performance. Then, the

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Journal of Energy Storage | Vol 55, Part A, 1 November 2022

Thermodynamic, economic and environmental investigations of a novel solar heat enhancing compressed air energy storage hybrid system and its energy release strategies. Peng Ran, Yue Wang, Yase Wang, Zheng Li, Peng Zhang. Article 105423.

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Energy storage technologies: An integrated survey of

The purpose of Energy Storage Technologies (EST) is to manage energy by minimizing energy waste and improving energy efficiency in various processes [141]. During this process, secondary energy forms such as heat and electricity are stored, leading to a reduction in the consumption of primary energy forms like fossil fuels [ 142 ].

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Excellent energy storage performance for P (VDF-TrFE-CFE) composites by filling core

Polymer-based nanocomposites have been attracted much attention due to their great potential application in the fields of electrical engineering and power electronics. It is still one of the most hottest topics to further enhance the capacitive performances of dielectric films. The most common way to increase the energy density

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Journal of Energy Storage | Vol 71, 1 November 2023

Experimental and computational optimization of eco-friendly mortar blocks for high temperature thermal energy storage of concentrated solar power plants. Irene Ramón-Álvarez, Sergio Sánchez-Delgado, Ignacio Peralta, Antonio Caggiano, Manuel Torres-Carrasco. Article 108076.

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Significantly enhanced energy storage in core–shell structured poly(vinylidene fluoride-co-chlorotrifluoroethylene

Nanocomposite polymer materials are commonly used in energy storage devices on account of the excellent dielectric performance. However, there is a long-standing contradiction between dielectric constant and breakdown strength of nanocomposite. In this study, polyurea (PUA) is designed to in situ modify BaTiO3 (BT)

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Journal of Energy Storage | Vol 55, Part C, 25 November 2022

Chance-constrained model predictive control-based operation management of more-electric aircraft using energy storage systems under uncertainty. Xin Wang, Najmeh Bazmohammadi, Jason Atkin, Serhiy Bozhko, Josep M.

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Journal of Energy Storage | Vol 58, February 2023

Multi-objective optimization of a hybrid system based on combined heat and compressed air energy storage and electrical boiler for wind power penetration and heat-power decoupling purposes. Pan Zhao, Feifei Gou, Wenpan Xu, Honghui Shi, Jiangfeng Wang. Article 106353.

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Journal of Energy Storage | Vol 92, 1 July 2024

Energy management strategies and cost benefits analysis at electric vehicle parking lots incorporating photovoltaic energy generation and energy storage system. Fareed Ahmad, Imtiaz Ashraf, Atif Iqbal, Mohd Bilal, Dinesh M. Yadav. Article 112105. View PDF.

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Progress and prospects of energy storage technology research:

The results show that, in terms of technology types, the annual publication volume and publication ratio of various energy storage types from high to low are:

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Energy storage

OverviewHistoryMethodsApplicationsUse casesCapacityEconomicsResearch

Energy storage is the capture of energy produced at one time for use at a later time to reduce imbalances between energy demand and energy production. A device that stores energy is generally called an accumulator or battery. Energy comes in multiple forms including radiation, chemical, gravitational potential, electrical potential, electricity, elevated temperature, latent heat and kinetic. En

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Mobile energy storage technologies for boosting carbon neutrality

On the anode side, silicon, with abundant resources and an ultrahigh theoretical capacity of 4,200 mAh g −1 that is far beyond the 372 mAh g −1 of traditional graphite, is regarded as a promising choice for LIBs. 51 But the huge volume variation of Si (≈400%) upon Li + insertion/extraction causes severe pulverization and structural

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Energy storage in China: Development progress and business

The development of energy storage in China has gone through four periods. The large-scale development of energy storage began around 2000. From 2000 to 2010, energy storage technology was developed in the laboratory. Electrochemical energy storage is the focus of research in this period.

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A review of battery energy storage systems and advanced battery

An increasing range of industries are discovering applications for energy storage systems (ESS), encompassing areas like EVs, renewable energy storage, micro/smart-grid implementations, and more. The latest iterations of electric vehicles (EVs) can reliably replace conventional internal combustion engines (ICEs).

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Journal of Energy Storage | Vol 73, Part B, 10 December 2023

Enhancing frequency stability in diverse power systems with conventional and renewable energy sources based on an innovative LFC and controlled energy storage integration. Mohamed Khamies, Ahmed H.A. Elkasem, Mohamed H. Hassan, Salah Kamel. Article 108960. View PDF.

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Superior energy storage performances achieved in (Ba, Sr)TiO3-based bulk ceramics through composition design and Core

BSE images of polished surfaces for BSZT-BMN-x-T ceramics are illustrated in Fig. 1.All samples exhibit obvious heterostructure, with dark and bright contrast relating to BST-rich and BMN-rich regions according to EDS elemental mapping results (Figure S3); It is worth noting that there is a thin layer of the brightest contrast outside the

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