Supercritical Carbon Dioxide (s-CO2) Power Cycle for
Supercritical CO2 power cycles have been deeply investigated in recent years. However, their potential in waste heat recovery is still largely
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Supercritical CO2 power cycles have been deeply investigated in recent years. However, their potential in waste heat recovery is still largely
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In this paper, we review various studies on the current LNG cold energy utilization systems, including power generation, air separation, desalination, cryogenic carbon dioxide capture,
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The combination of renewable energy and liquefied natural gas (LNG) cold energy can effectively improve energy utilization efficiency and
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Condensation heat recovery is a way to save energy and reduce carbon emissions. For the auto-cascade refrigeration cycle system, increasing the heat r
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Thermochemical energy storage system based on metal hydrides is an attractive option due to cyclic stability and high energy storage density. In the present study a novel cascade
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A new concept called the cascade Rankine cycle to cold energy recovery for power generation is proposed [183]. Results show, the more number of stages the more net power output and efficiencies.
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The performance of the Cascade thermal storage system as compared to the non-cascade system is way more efficient. Hussam et al. (2020) explains the importance of storing
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In this study, a conceptual-evaluation study of a SOFC-based cascade cycle integrated with TIG and TEG is presented and discussed under the effective parameters. The introduced
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This study presents a Two-Scenario Cascade Utilization (MSCU) model aimed at the secondary application of retired electric vehicle batteries to mitigate energy scarcity and curb
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A large amount of energy is consumed in the liquefaction process of LNG and is normally disposed through heat exchange with seawater in the regasification process. In this study, a cascade
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Compared with the other four cascade waste heat recovery systems, the proposed CCHP system greatly improves the thermodynamic performance and reduces the unit energy cost rate and
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At present, the recovery and utilization of LNG cold energy attracts more and more scholar''s attention. Kanbur et al. [7] reviewed several different LNG cold energy utilization systems,
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A cascade thermochemical storage with internal condensation heat recovery is proposed. This cascade design improves the energy and exergy
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This approach alleviates the pressure on battery recycling processes and effectively reduces the overall cost of energy storage systems, thereby promoting the circular use of resources
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The results indicate that compared to direct recycling, the three cascade utilization scenarios of energy storage, communication base stations and low-speed power supply all show environmental benefits.
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Using energy cascade theory and energy conservation theory to design a cold energy cascade utilization system that includes air separation, dry ice making, horizontal two-stage Rankine
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Abstract In the present study, an innovative cascade absorption refrigeration (CAR) system for recovering low-grade waste heat is proposed. Based on the simulation results, the
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In this paper, a novel design integrating boil off gas and gasoline vapor recovery, liquid air energy storage and parallel Rankine cycle is proposed to recover cold energy of LNG in different
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Based on the principle of cascade waste heat recovery from waste incineration flue gas whilst considering system safety and efficiency, this study
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Final project report and presentation comprising description of project, literature review, data management, LCA modelling technique (including main assumptions and equations), LCA and
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This paper presents energy storage as a pathway of cascade utilization, incorporating cascade utilization enterprises (energy storage stations) as decision-making entities.
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In this paper, we establish energy-hub networks as multi-energy systems and present model-predictive cascade mitigation control (MPC) scheme within the framework of energy
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The novelty of this study is in the development and modeling of a combined cascade system for waste heat recovery from the flue gases of a powerful electric arc furnace (EAF), which
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And improvements during the use phase determine the environmental benefits of the cascade system. In this work, multi-objective optimization and LCA are combined to provide a viable
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Cascade utilization of energy storage represents a significant evolution in how we manage energy resources in a world increasingly reliant on
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Abstract Compression-absorption cascade refrigeration cycle (CACRC) combined with vapor-compression refrigeration and absorption refrigeration cycle attracts great interest due to the
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The post-pandemic energy crisis and ever-increasing environmental degradation necessitate researchers to scrutinize refrigeration systems, major contributors to these issues, for
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In summary, this paper proposes an improved particle swarm optimization algorithm, which combines the adaptive weight algorithm and the principle of simulated annealing, and then
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Cascade utilization is the most promising solution for efficient recovery of industrial waste heat. In this paper, a combined cooling and power (CCP) system including an organic Rankine cycle
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Life-cycle impact assessment of innovative cascade PCM based thermal energy storage solutions Project Description The thermal energy storage (TES) is a key component of concentrated solar
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