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DOI: 10.1016/J.RENENE.2021.03.053 Corpus ID: 233704782 Experimental and numerical investigation on a novel photovoltaic direct-driven ice storage air-conditioning system This paper presents cool-down, and steady state performance of a 76 W direct current
Ice thermal storage was first applied in PV directly driving refrigerator by Axaopoulos. 30 Results showed that refrigerator compressor was of variable speed and ice produce of the refrigerator reached 17 kg,
The results showed that the studied storage system can operate the air conditioning system for 4 h during night period. Yongfeng et al. [17] had experimentally tested and compared two operational
Energy requirement For a cold storage room of 39.64 m 3 size, there is a need of an AC unit with 2 refrigeration ton (7.03 kW) Design and adaptability of photovoltaic air conditioning system based on office buildings Sol. Energy, 202 (2020), pp.
This paper applied the POET framework to analyze and identify possible energy efficiency activities that may reduce energy costs in HVAC cooling systems with
A new concept of grid electrical energy saving in air conditioning by PCM cool storage acted as air precooler before entering evaporator including sizing of photovoltaic modules as energy source was presented.RT18-HC PCM bed with 0.24 m thickness saved 13.84
"In hot climates, this system would fit perfectly, not only to replace battery storage, but also to provide air conditioning through the chilled water circulation," Hai Al-Alami said. "The
The energy storage devices used in conjunction with a photovoltaic solar energy system is a lead-acid battery. The heat induces in the battery because of some phenomena due to electrochemical reactions during typical charging/discharging cycles [
The energy matching of PV driven air conditioners is influenced by building load demand and PV generation. Phase change material based thermal energy storage applications for air conditioning: review Appl. Therm. Eng., 214 (2022), Article 118832, 10.1016/j
In this paper, the study of a photovoltaic/thermal system (PVT) module with an integrated thermal energy storage system in the form of phase change material (PCM) to supply energy for the vapor absorption cycle to
The performance of photovoltaic direct-drive ice storage air conditioning system is evaluated from the aspects of operation efficiency and operation stability in this paper. The operation efficiency includes PV-to-compressor Power Efficiency (PPE), Refrigerator Energy Efficiency Ratio (EER) and System Coefficient of Performance (COP).
Phase change material thermal energy storage is a potent solution for energy savings in air conditioning applications. Wherefore thermal comfort is an essential aspect of the human life, air conditioning energy usages have soared significantly due to extreme climates, population growth and rising of living standards.
With the rapid development of a social economy, the yearly increase in air conditioning load in the winter and summer seasons may bring serious challenges to the safe and economic operation of the power grid during the peak period of electricity consumption. So, how we reasonably adjust the set temperature of air conditioning so
The contribution of this paper is the implementation of Benders decomposition methods to reduce the computation complexity of this large-scale mixed integer linear programming problem. The objective of this engineering problem is to determine the size of a battery energy storage system and number of photovoltaic (PV) panels to be installed in a
In this paper, a standalone photovoltaic/wind turbine/adiabatic compressed air energy storage based hybrid energy supply system for rural mobile base station is proposed. The energies from renewable sunlight and wind are the primary power sources and the adiabatic compressed air energy storage system acts as the energy
Stearic acid is selected as the primary phase-change material for the thermal energy storage system as it exhibits the most suitable properties with a high latent heat of fusion capacity for optimum energy storage at the required temperatures. 2.1 Photovoltaic Module with Coolant Circuit
In addition, virtual thermal energy storage was also a demand response resource that cannot be ignored. By utilizing the dynamic thermal storage characteristics of the pipe network, Sun et al. [23] realized the thermoelectric decoupling in the CHP system, thus improving the flexibility and economy of the system.
The excess photovoltaic power is sent to the LAES unit for air compression and liquefaction, and the electric energy is converted into the air energy for storage. When the output power from the PV system is not enough to meet the building''s electricity demand, the LAES unit releases the stored liquid air into the expansion
Under the double pressure of energy shortage and environmental pollution, ice thermal storage air-conditioning and photovoltaic air-conditioning has been applied in refrigeration field. In order to improve application scope and
In this paper, an ice storage air conditioning system (ISACS) driven by distributed photovoltaic energy system (DPES) was proposed.The theoretical calculations and experimental tests were analyzed
Firstly, the ice storage air conditioning system (ISACS) driven by distributed photovoltaic energy system (DPES) was proposed and the feasibility studies
In recent years, solar photovoltaic technology has experienced significant advances in both materials and systems, leading to improvements in efficiency, cost,
Cold thermal energy storage (CTES) is a cost-efficient storage approach for PV powered air-conditioning systems in tropical buildings. However, the feasibility
In this work, a grid connected photovoltaic solar air conditioning system is designed, mainly comprised of solar panel, controller, inverter, room air conditioner and other parts. Air conditioning systems rely mainly on solar photovoltaic power; achieve the effect of energy conservation and environmental protection.
Under the demand response at the time of use, the system was powered by building photovoltaic power generation. The thermostatically controlled load demand inside buildings was satisfied jointly by the phase
This review paper sets out the range of energy storage options for photovoltaics including both electrical and thermal energy storage systems. The
The cooling power of excess photovoltaic and off-peak grid power that is generated by the air conditioning compressor is stored in the thermal storage tank by freezing the pure
Feasibility analysis and feature comparison of cold thermal energy storage for off-grid PV air-conditioned buildings in the tropics Energy Conversion and Management, Volume 254, 2022, Article 115176 Liang Hu, , Huaican Liu
Firstly, the ice storage air conditioning system (ISACS) driven by distributed photovoltaic energy system (DPES) was proposed and the feasibility studies have been investigated in this paper.
and Numerical Investigation on a Novel Photovoltaic Direct-driven Ice Storage Air-conditioning Only small portion of electricity energy output of PV module is utilized for our designed cooling
Energy Management and Capacity Optimization of Photovoltaic, Energy Storage System, Flexible Building Power System Considering Combined Benefit Chang Liu 1, Bo Luo 1, Wei Wang 1, Hongyuan Gao 1, Zhixun Wang 2, Hongfa Ding
This work presents findings on utilizing the expansion stage of compressed air energy storage systems for air conditioning purposes. The proposed setup is an ancillary installation to an existing
For photovoltaic (PV) systems to become fully integrated into networks, efficient and cost-effective energy storage systems must be utilized together with intelligent demand side management. As the global solar photovoltaic market grows beyond 76 GW, increasing onsite consumption of power generated by PV technology will become
The integration of PV and energy storage in smart buildings and outlines the role of energy storage for PV in the context of future energy storage options. Acknowledgements The authors would like to acknowledge the European Union''s Horizon 2020 research and innovation programme under grant agreement No. 657466 (INPATH
This article presents a new sustainable energy solution using photovoltaic-driven liquid air energy storage (PV-LAES) for achieving the combined cooling, heating and power (CCHP) supply. Liquid air is used to store and generate
Experimental and numerical investigation on a novel photovoltaic direct-driven ice storage air-conditioning system. Kedong Han, J. Ji, +4 authors. Zhiying
Mature and inexpensive ice thermal storage was employed to replace battery bank in energy storage, and photovoltaic directly driven technology was also
Energy Conversion and Transmission Characteristics Analysis of Ice Storage Air Conditioning System Driven by Distributed Photovoltaic Energy System International Journal of Photoenergy 2016 ( 2016 ), 10.1155/2016/4749278
Thermal energy storage (TES) using phase change materials (PCMs) has received increasing attention since the last decades, due to its great potential for energy savings and energy management in the building sector. As one of the main categories of organic PCMs, paraffins exhibit favourable phase change temperatures for solar thermal
Sensitivity analysis and optimization of a compressed air energy storage (CAES) system powered by a photovoltaic plant to supply a building Sidiki Simpore*, François Garde, Mathieu David, Olivier Marc, Jean Castaing-Lasvignottes. 117, rue du Général Ailleret
3 · In order to meet the increasing demand for refrigeration and the current situation of energy shortage, this article proposes a new variable speed photovoltaic ice storage air conditioning system. The system does not require batteries and inverters, and fully utilizes solar energy to meet human needs.
[43] Xu Y. et al 2018 Experimental investigation of solar photovoltaic operated ice thermal storage air-conditioning system International Journal of Refrigeration 86 258-272 Crossref Google Scholar [44] Wang X. and Dennis M. 2015 Influencing factors on the energy saving performance of battery storage and phase change cold storage in
Many researches have carried out the related to PV-BES, it also proved the technical and economic feasibility of PV system with electric energy storage [52, 53]. Khan et al. [54]. conducted the evaluation of PV system with and without BES as energy storage
While Aghamohamadi et al. (2021) considered two-way energy trading with the grid operator, Alhaider and Fan (2018) and Zhou et al. (2018) only considered buying power from the grid operator when
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