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A Quantitative Study on the Requirement for Additional Inertia in the European Power System until 2050 and the Potential Role of Wind Power
Christos Agathokleous, Jimmy Ehnberg.
April 25, 2023 (v1)
Keywords: emulated inertia, European power system, frequency response, inertia support, synthetic inertia.
A significant amount of conventional power plants in the European power system is anticipated to be replaced by solar and wind power in the future. This may require alternative sources for inertia support. The purpose of the paper is to learn about the consequences on the frequency deviation after a fault in the European power system when more wind and solar are introduced and when wind is considered as a possible provider of inertia. This study quantifies the expected maximum requirement for additional inertia in the future European power system up to 2050. Furthermore, we investigated the possibility of wind power to meet this additional need by providing emulated inertia. The European power system of the EU-28 countries has been clustered to the five synchronous grids, UCTE, Nordic, UK, Baltic and Irish. The future European energy mix is simulated considering twelve different scenarios. Production units are dispatched according to their expected environmental impacts, which closely... [more]
Promoting Energy Efficiency in the Built Environment through Adapted BIM Training and Education
Ali Alhamami, Ioan Petri, Yacine Rezgui, Sylvain Kubicki.
April 25, 2023 (v1)
Subject: Environment
Keywords: building information modelling (BIM), digital construction, energy efficiency (EE), skills, training.
The development of new climate change policies has increased the motivation to reduce energy use in buildings, as reflected by a stringent regulatory landscape. The construction industry is expected to adopt new methods and strategies to address such requirements, focusing primarily on reducing energy demand, improving process efficiency and reducing carbon emissions. However, the realisation of these emerging requirements has been constrained by the highly fragmented nature of the industry, which is often portrayed as involving a culture of adversarial relationships and risk avoidance, which is exacerbated by a linear workflow. Recurring problems include low process efficiency, delays and construction waste. Building information modelling (BIM) provides a unique opportunity to enhance building energy efficiency (EE) and to open new pathways towards a more digitalised industry and society. BIM has the potential to reduce (a) waste and carbon emissions, (b) the endemic performance gap,... [more]
Electrical Energy Demand Forecasting Model Development and Evaluation with Maximum Overlap Discrete Wavelet Transform-Online Sequential Extreme Learning Machines Algorithms
Mohanad S. Al-Musaylh, Ravinesh C. Deo, Yan Li.
April 25, 2023 (v1)
Subject: Energy Policy
Keywords: energy security, MODWT, OS-ELM, predictive model for electricity demand, sustainable energy management systems, time-series forecasting, wavelet transformation.
To support regional electricity markets, accurate and reliable energy demand (G) forecast models are vital stratagems for stakeholders in this sector. An online sequential extreme learning machine (OS-ELM) model integrated with a maximum overlap discrete wavelet transform (MODWT) algorithm was developed using daily G data obtained from three regional campuses (i.e., Toowoomba, Ipswich, and Springfield) at the University of Southern Queensland, Australia. In training the objective and benchmark models, the partial autocorrelation function (PACF) was first employed to select the most significant lagged input variables that captured historical fluctuations in the G time-series data. To address the challenges of non-stationarities associated with the model development datasets, a MODWT technique was adopted to decompose the potential model inputs into their wavelet and scaling coefficients before executing the OS-ELM model. The MODWT-PACF-OS-ELM (MPOE) performance was tested and compared w... [more]
Decision Support System to Implement Units of Alternative Biowaste Treatment for Producing Bioenergy and Boosting Local Bioeconomy
Christos Vlachokostas, Charisios Achillas, Ioannis Agnantiaris, Alexandra V. Michailidou, Christos Pallas, Eleni Feleki, Nicolas Moussiopoulos.
April 25, 2023 (v1)
Keywords: bioenergy, decision support system, efficiency of bio-resources, multi-criteria analysis, Sustainability.
Lately, the model of circular economy has gained worldwide interest. Within its concept, waste is viewed as a beneficial resource that needs to be re-introduced in the supply chains, which also requires the use of raw materials, energy, and water to be minimized. Undeniably, a strong link exists between the bioeconomy, circular economy, bioproducts, and bioenergy. In this light, in order to promote a circular economy, a range of alternative options and technologies for biowaste exploitation are currently available. In this paper, we propose a generic methodological scheme for the development of small, medium, or large-scale units of alternative biowaste treatment, with an emphasis on the production of bioenergy and other bioproducts. With the use of multi-criteria decision analysis, the model simultaneously considers environmental, economic, and social criteria to support robust decision-making. In order to validate the methodology, the latter was demonstrated in a real-world case stud... [more]
Co-Pyrolysis of Beet Pulp and Defecation Lime in TG-MS System
Radosław Slezak, Liliana Krzystek, Piotr Dziugan, Stanisław Ledakowicz.
April 25, 2023 (v1)
Keywords: beet pulp, char, defecation lime, flammable gasses, kinetics, pyrolysis, tar.
The process of pyrolysis of beet pulp, a by-product after the extraction of raw sugar from sugar beet, with the addition of defecation lime was studied in a thermobalance coupled with a mass spectrometer. The beet pulp pyrolysis process took place completely at 600 °C, and the resulting char, tar and gas were characterized by higher heating values of 23.9, 21.6 and 7.77 MJ/kg, respectively. The addition of the defecation lime to beet pulp caused both an increase in the char production yield and a decrease in the tar production yield. At the same time, the higher heating value of char and tar decreased along with the increase of defecation lime added to the sample. The deconvolution of derivative thermogravimetric (DTG) curves allowed us to identify the basic components of beet pulp, for which the activation energy by isoconversion method was calculated. The 20 wt.% addition of defecation lime caused an increase of the activation energy by about 18%. Further increase in the defecation l... [more]
A Case Study of LightStay (2010−2017)—Hilton’s Corporate Responsibility Management System
Piotr Zientara, Paulina Bohdanowicz-Godfrey, Claire Whitely, Grzegorz Maciejewski.
April 25, 2023 (v1)
Subject: Environment
Keywords: energy and environmental indicators, energy saving, environmental knowledge, hotels, sustainability performance measurement system.
This paper focuses on Hilton’s proprietary sustainability performance measurement system (SPMS) called LightStay (2010−2017). It draws on the case-study method and relies on three principal sources of information: in-house documents, a questionnaire completed by users of LightStay and interviews conducted with external experts. Specifically, the paper traces the system’s evolution and highlights its distinctive features, exploring the challenges and trade-offs related to the design and workings of an SPMS in a hotel multinational. The study shows, among other things, how LightStay, using an internationally approved methodology of data collection, calculation, metrics and benchmarking, compares a hotel’s predicted and actual environmental performance. It concludes by arguing that LightStay is a holistic platform that not only integrates precise measurement of the firm’s environmental effects with its business operations and strategic goals but also acts as a repository of sustainability... [more]
Planning Under Uncertainty Applications in Power Plants Using Factored Markov Decision Processes
Alberto Reyes, L. Enrique Sucar, Pablo H. Ibargüengoytia, Eduardo F. Morales.
April 25, 2023 (v1)
Keywords: Markov decision processes, planning under uncertainty, power plants.
Due to its ability to deal with non-determinism and partial observability, represent goals as an immediate reward function and find optimal solutions, planning under uncertainty using factored Markov Decision Processes (FMDPs) has increased its importance and usage in power plants and power systems. In this paper, three different applications using this approach are described: (i) optimal dam management in hydroelectric power plants, (ii) inspection and surveillance in electric substations, and (iii) optimization of steam generation in a combined cycle power plant. For each case, the technique has demonstrated to find optimal action policies in uncertain settings, present good response and compilation times, deal with stochastic variables and be a good alternative to traditional control systems. The main contributions of this work are as follows, a methodology to approximate a decision model using machine learning techniques, and examples of how to specify and solve problems in the ele... [more]
Remote Laboratory Testing Demonstration
Luigi Pellegrino, Carlo Sandroni, Enea Bionda, Daniele Pala, Dimitris T. Lagos, Nikos Hatziargyriou, Nabil Akroud.
April 25, 2023 (v1)
Keywords: CHIL, HIL, integrated laboratories, power system testing, real-time communication platform.
The complexity of a smart grid with a high share of renewable energy resources introduces several issues in testing power equipment and controls. In this context, real-time simulation and Hardware in the Loop (HIL) techniques can tackle these problems that are typical for power system testing. However, implementing a convoluted HIL setup in a single infrastructure can be physically impossible or can increase the time required to test a smart grid application in detail. This paper introduces the Joint Test Facility for Smart Energy Networks with Distributed Energy Resources (JaNDER) that allows users to exchange data in real-time between two or more infrastructures. This tool enables the integration of infrastructures, exploiting the synergies between them, and creating a virtual infrastructure that can perform more experiments using a combination of the resources installed in each infrastructure. In particular, JaNDER can extend a HIL setup. In order to validate this new testing concep... [more]
Advancement of Segmented Cell Technology in Low Temperature Hydrogen Technologies
Indro Biswas, Daniel G. Sánchez, Mathias Schulze, Jens Mitzel, Benjamin Kimmel, Aldo Saul Gago, Pawel Gazdzicki, K. Andreas Friedrich.
April 25, 2023 (v1)
Keywords: degradation, electrolysis, fuel cell, Hydrogen, operando measurement.
The durability and performance of electrochemical energy converters, such as fuel cells and electrolysers, are not only dependent on the properties and the quality of the used materials. They strongly depend on the operational conditions. Variations in external parameters, such as flow, pressure, temperature and, obviously, load, can lead to significant local changes in current density, even local transients. Segmented cell technology was developed with the purpose to gain insight into the local operational conditions in electrochemical cells during operation. The operando measurement of the local current density and temperature distribution allows effective improvement of operation conditions, mitigation of potentially critical events and assessment of the performance of new materials. The segmented cell, which can replace a regular bipolar plate in the current state of the technology, can be used as a monitoring tool and for targeted developments. This article gives an overview of th... [more]
Measurements of Optical Properties of Smoke Particulates Produced from Burning Polymers and Their Implications
Ter-Ki Hong, Beom-Seok Roh, Seul-Hyun Park.
April 25, 2023 (v1)
Keywords: fire, light obscuration, mass specific extinction coefficient, polymer, smoke.
A series of cone calorimetry experiments and simultaneous gravimetric sampling and light extinction (GSLE) measurements were performed to determine the optical properties (light obscuration and extinction characteristics) of smoke particulates produced from burning polymers. The polymer selected in the present study was acrylonitrile-butadiene styrene (ABS), which has a moderate smoke yield during combustion, and unplasticized polyvinyl chloride (UPVC), which has a lower smoke yield than ABS. The experiments show that the measured light obscuration for UPVC smoke particles is much lower than that for ABS smoke particles because of the low rate of smoke production during combustion. Results from the simultaneous GSLE measurements demonstrate more clearly that UPVC smoke particles represent a lower efficiency of light obscuration on a per-unit smoke mass basis, resulting in a 41.3% reduction in a mass specific extinction coefficient compared to the ABS smoke particles. Numerical analysis... [more]
Finite-Element Simulation for Thermal Modeling of a Cell in an Adiabatic Calorimeter
José Eli Eduardo González-Durán, Juvenal Rodríguez-Reséndiz, Juan Manuel Olivares Ramirez, Marco Antonio Zamora-Antuñano, Leonel Lira-Cortes.
April 25, 2023 (v1)
Keywords: adiabatic calorimetry, finite-element method, heat capacity, heat transfer, numerical simulation.
This research obtains a mathematical formulation to determine the heat transfer in a transient state, in a calorimeter cell, considering an adiabatic system. The development of the cell was established and the mathematical model was transiently solved, which approximated the physical phenomenon under the cell operation. A numerical method for complex geometries was used to validate performance. The results obtained in the transient heat transfer in a cylinder under boundary and initial conditions were compared using an analytical solution and numerical analysis employing the finite-element method with commercial software. The study from the temperature distribution can afford, selection between a cylindrical and spherical geometry, design criteria that are generated by changing parameters such as dimension, temperature, and working fluids to develop an adiabatic calorimeter to measure the heat capacity in fluids. We show the mathematical solution with its initial and boundary condition... [more]
Phase-Shift PWM-Controlled DC−DC Converter with Secondary-Side Current Doubler Rectifier for On-Board Charger Application
Khairy Sayed, Ziad M. Ali, Mujahed Aldhaifallah.
April 25, 2023 (v1)
Keywords: current doubler rectifier, high-frequency link DC–DC converter, secondary phase-shift PWM control, soft-switching.
A novel circuit topology for an on-board battery charger for plugged-in electric vehicles (PEVs) is presented in this paper. The proposed on-board battery charger is composed of three H-bridges on the primary side, a high-frequency transformer (HFT), and a current doubler circuit on the secondary side of the HFT. As part of an electric vehicle (EV) on-board charger, it is required to have a highly compact and efficient, lightweight, and isolated direct current (DC)−DC converter to enable battery charging through voltage/current regulation. In this work, performance characteristics of full-bridge phase-shift topology are analyzed and compared for EV charging applications. The current doubler with synchronous rectification topology is chosen due to its wider-range soft-switching availability over the full load range, and potential for a smaller and more compact size. The design employs a phase-shift full-bridge topology in the primary power stage. The current doubler with synchronous rec... [more]
Green Walls, a Critical Review: Knowledge Gaps, Design Parameters, Thermal Performances and Multi-Criteria Design Approaches
Fabrizio Ascione, Rosa Francesca De Masi, Margherita Mastellone, Silvia Ruggiero, Giuseppe Peter Vanoli.
April 25, 2023 (v1)
Keywords: building performance, building simulation, energy retrofit, green walls, Sustainability, thermal behavior, urban quality.
The green wall is an engineered technology for stormwater management and climate change mitigation at the urban level. At the building scale, these energy efficiency measures are suitable for improving indoor comfort conditions and for reducing energy needs. Several guidelines are available about vertical greening systems, but these propose design parameters and performance evaluation criteria, often incomparable. In order to facilitate the implementation of proper technical standards, this paper proposes a critical review of more recent scientific investigations. All parameters for the design optimization are discussed as well as the achievable social and private benefits by taking into consideration the type of study (numerical or experimental), the climate conditions, the analysis period, all technical requirements of the green layer as well as of the back wall. The review underlines that a multi-criteria design approach is needed for green vertical systems. Thus, the paper is concl... [more]
Optimization of the TEGs Configuration (Series/Parallel) in Energy Harvesting Systems with Low-Voltage Thermoelectric Generators Connected to Ultra-Low Voltage DC−DC Converters
Flávio Morais, Pedro Carvalhaes-Dias, Luís Duarte, Anderson Spengler, Kleber de Paiva, Thiago Martins, Andreu Cabot, José Siqueira Dias.
April 25, 2023 (v1)
Subject: Optimization
Keywords: energy harvesting, energy measurement, series and parallel TEGs ensemble, thermoelectric generators, ultra-low voltage DC–DC converters.
Solar radiation and human activity generate ubiquitous temperature gradients that could be harvested by thermoelectric generators (TEGs). However, most of these temperature gradients are in the range of very few degrees and, while TEGs are able to harvest them, the resulting output voltages are extremely small (a few hundreds of mV), and DC−DC converters are necessary to boost them to usable levels. Impedance matching between TEGs and DC−DC converter plays a fundamental role in the energy harvesting efficiency. Therefore, it is essential to determine the output power of the system in different configurations, in order to decide on the optimum TEG connection. Here, we present an electronic circuit to measure the maximum power that can be harvested with low-voltage TEGs connected to a DC−DC converter. The developed circuit is an electronic controlled load that drains the maximum current from the output of the DC−DC converter while maintaining its output voltage at the maximum allowed val... [more]
Regional Study of Changes in Wind Power in the Indian Shelf Seas over the Last 40 Years
V. Sanil Kumar, Aswathy B. Asok, Jesbin George, M. M. Amrutha.
April 25, 2023 (v1)
Keywords: north Indian Ocean, ocean renewable energy, resource assessment, wind climate variability, wind energy.
Wind power variations at two heights (the surface level and turbine hub level) were investigated at 20 locations in the shelf seas of India using hourly fifth generation European Centre for Medium-Range Weather Forecasts (ECMWF) atmospheric reanalyses of the global climate (ERA5) data covering the last 40 years (1979 to 2018). The interannual and seasonal variability in wind power was studied. The wind power density, the exceedance probability of power density and the exploitable wind resources were examined. In the Indian shelf seas, the annual mean wind power density at 10 m above mean sea level varies from 82 to 353 W/m2. Wind power density at 110.8 m is 20% to 40% higher than at 10 m above mean sea level. The study shows that the shelf seas have an abundance of wind power, with wind speeds over 3 m/s during 90% of the time at locations 1 to 3, 12 and 13, with a high occurrence of exploitable wind energy above 0.7 × 103 kWh/m2. Among the locations studied, the most power-rich area w... [more]
Optimal Parameters of Volt−Var Function in Smart Inverters for Improving System Performance
Hyeong-Jin Lee, Kwang-Hoon Yoon, Joong-Woo Shin, Jae-Chul Kim, Sung-Min Cho.
April 25, 2023 (v1)
Subject: Optimization
Keywords: distribution system, Optimization, photovoltaic (PV), smart inverter, volt–var function.
This paper proposes a method to improve the performance of a distribution system by optimizing volt−var function of a smart inverter to alleviate the voltage deviation problem due to distributed generation connection. In order to minimize voltage deviation and line losses which represent the performance of a distribution system, this paper proposes an algorithm that optimally sets the parameters of the volt−var function. In the process of optimizing the parameters of the volt−var function, the algorithm proposed in this paper considers minimizing the contribution of the reactive power in order not to affect the output of the distributed generation. In order to apply to the field, the distribution system in South Korea considering the configuration and operation regulation was selected as a test model for algorithm verification. As a result, the system performance was successfully improved by optimally setting the volt−var function of the smart inverter which is an effective way to solv... [more]
Sedimentary and Diagenetic Features and Their Impacts on Microbial Carbonate Reservoirs in the Fourth Member of the Middle Triassic Leikoupo Formation, Western Sichuan Basin, China
Yuanchong Wang, Weimin Jiang, Hangyu Liu, Bo Liu, Haofu Zheng, Xiaobo Song, Qiongxian Wang, Wenkai Wang, Yong Li.
April 25, 2023 (v1)
Subject: Biosystems
Keywords: diagenesis, microbial carbonates, reservoir formation, sedimentation, the Middle Triassic Leikoupo Formation, the Western Sichuan Basin of SW China.
In recent years, the discovery of two gas fields in the fourth member of the Leikoupo Formation in the Western Sichuan Basin of SW China confirmed the exploration potential of microbial carbonates. The aim of the present study is to clarify the formation mechanism of the microbial reservoirs in the Leikoupo Formation. For this purpose, lithofacies, depositional environments, and diagenesis analyses were performed in samples collected from cores of 12 wells. The climate of study area was arid during Anisian time, and the water body was restricted. In such a climate, an evaporitic environment was developed, where ten types of lithofacies, dominated by microbial carbonates and gypsum rocks, were recognized. Thrombolites and stromatolites are the main high-quality reservoirs rock types in the fourth member of the Leikoupo Formation in the Western Sichuan Basin of SW China, which developed as microbial mounds, with reservoir space of microbial inter-clot pores, intra-clot pores, fenestral p... [more]
Optimization of a Small Wind Turbine for a Rural Area: A Case Study of Deniliquin, New South Wales, Australia
Nour Khlaifat, Ali Altaee, John Zhou, Yuhan Huang, Ali Braytee.
April 25, 2023 (v1)
Keywords: aerodynamic, computational fluid dynamics (CFD), Genetic Algorithm, horizontal-axis wind turbine (HAWT), Optimization.
The performance of a wind turbine is affected by wind conditions and blade shape. This study aimed to optimize the performance of a 20 kW horizontal-axis wind turbine (HAWT) under local wind conditions at Deniliquin, New South Wales, Australia. Ansys Fluent (version 18.2, Canonsburg, PA, USA) was used to investigate the aerodynamic performance of the HAWT. The effects of four Reynolds-averaged Navier−Stokes turbulence models on predicting the flows under separation condition were examined. The transition SST model had the best agreement with the NREL CER data. Then, the aerodynamic shape of the rotor was optimized to maximize the annual energy production (AEP) in the Deniliquin region. Statistical wind analysis was applied to define the Weibull function and scale parameters which were 2.096 and 5.042 m/s, respectively. The HARP_Opt (National Renewable Energy Laboratory, Golden, CO, USA) was enhanced with design variables concerning the shape of the blade, rated rotational speed, and pi... [more]
Decision-Making Process in the Circular Economy: A Case Study on University Food Waste-to-Energy Actions in Latin America
Laura Brenes-Peralta, María F. Jiménez-Morales, Rooel Campos-Rodríguez, Fabio De Menna, Matteo Vittuari.
April 25, 2023 (v1)
Keywords: AHP, anaerobic digestion, centralized waste valorization, composting, lifecycle thinking, side flow.
Economies have begun to shift from linear to circular, adopting, among others, waste-to-energy approaches. Waste management is known to be a paramount challenge, and food waste (FW) in particular, has gained the interest of several actors due to its potential impacts and energy recovery opportunities. However, the selection of alternative valorization scenarios can pose several queries in certain contexts. This paper evaluates four FW valorization scenarios based on anaerobic digestion and composting, in comparison to landfilling, by applying a consistent decision-making framework through a combination of linear programming, Life Cycle Thinking (LCT), and Analytic Hierarchy Process (AHP). The evaluation was built upon a case study of five universities in Costa Rica and portrayed the trade-offs between environmental impacts and cost categories from the scenarios and their side flows. Results indicate that the landfill scenario entails higher Global Warming Potential and Fresh Water Eutr... [more]
Special Issue of the 1st International Conference on Nanofluids (ICNf19)
Patrice Estellé, Leonor Hernández López, Matthias H. Buschmann.
April 25, 2023 (v1)
Subject: Materials
Keywords: applications, Energy, nanofluids, nanouptake, properties.
This editorial note is dedicated to the 1st International Conference on Nanofluids (ICNf19), which was organized under the auspices of Nanouptake COST Action in June 2019, in Castelló (Spain). After a brief report about the conference issues, the successful selected contributions to this Special Issue of Energies about the ICNf19 are introduced.
3D Structural Optimization of Zinc Phthalocyanine-Based Sensitizers for Enhancement of Open-Circuit Voltage of Dye-Sensitized Solar Cells
Takuro Ikeuchi, Ryota Kudo, Yu Kitazawa, Shogo Mori, Mutsumi Kimura.
April 25, 2023 (v1)
Subject: Optimization
Keywords: branched alkyl chain, dye-sensitized solar cell, open-circuit voltage, phthalocyanine.
We designed and synthesized two zinc phthalocyanine sensitizers (PcS27 and PcS28), substituted with branched or cyclic alkoxy chains, to investigate the structural effect of peripheral alkyl chains on the performance of dye-sensitized TiO2 solar cells. The bulky cyclic alkyl chains of PcS28 decreased the adsorption density of PcS28 on the TiO2 electrode, while the terminal branches of alkoxy chains of PcS27 did not influence the adsorption density in comparison to the previously published PcS20 with linear alkoxy chains. Under one sun conditions, PcS27 cells exhibited higher open-circuit voltage but a slightly lower energy conversion efficiency, 6.0% less than PcS20. These results suggest that the small alternation of alkoxy chains resulted in decreasing electron pushing ability of peripheral phenoxy units, giving lower short-circuit current.
Optimal Location-Reallocation of Battery Energy Storage Systems in DC Microgrids
Oscar Danilo Montoya, Walter Gil-González, Edwin Rivas-Trujillo.
April 25, 2023 (v1)
Subject: Optimization
Keywords: battery energy storage system, economic dispatch problem, mathematical optimization, nonlinear programming formulation, optimal reallocation of batteries.
This paper deals with the problem of optimal location and reallocation of battery energy storage systems (BESS) in direct current (dc) microgrids with constant power loads. The optimization model that represents this problem is formulated with two objective functions. The first model corresponds to the minimization of the total daily cost of buying energy in the spot market by conventional generators and the second to the minimization of the costs of the daily energy losses in all branches of the network. Both the models are constrained by classical nonlinear power flow equations, distributed generation capabilities, and voltage regulation, among others. These formulations generate a nonlinear mixed-integer programming (MINLP) model that requires special methods to be solved. A dc microgrid composed of 21-nodes with existing BESS is used for validating the proposed mathematical formula. This system allows to identify the optimal location or reallocation points for these batteries by im... [more]
Route Guidance Strategies for Electric Vehicles by Considering Stochastic Charging Demands in a Time-Varying Road Network
Yongxing Wang, Jun Bi, Chaoru Lu, Cong Ding.
April 25, 2023 (v1)
Keywords: electric vehicles, route guidance strategies, stochastic charging demands, time-varying road network.
Electric vehicles (EVs) are being increasingly adopted because of global concerns about petroleum dependence and greenhouse gas emissions. However, their limited driving range results in increased charging demands with a stochastic characteristic in real-world situations, and the charging demands should be attributed toward charging stations in time-varying road networks. To this end, this study proposes guidance strategies to provide efficient choice for charging stations and corresponding routes, and it includes the time-varying characteristic of road networks in problem formulation. Specifically, we propose two route guidance strategies from different perspectives based on the charging demand information. The first strategy focuses on the effects of the number of EVs on the charging stations’ operation, and the reachable charging stations with the fewest vehicles are selected as the heuristic suggested ones. The other strategy considers the travel cost of individual drivers and sele... [more]
Net-Metering Compared to Battery-Based Electricity Storage in a Single-Case PV Application Study Considering the Lithuanian Context
Joanna Aleksiejuk-Gawron, Saulė Milčiuvienė, Julija Kiršienė, Enrique Doheijo, Diego Garzon, Rolandas Urbonas, Darius Milčius.
April 25, 2023 (v1)
Keywords: Batteries, net-metering, photovoltaics.
Further increases in the number of photovoltaic installations in industry and residential buildings will require technologically and economically flexible energy storage solutions. Some countries utilize net-metering strategies, which use national networks as “virtual batteries.” Despite the financial attractiveness, net-metering faces many technological and economical challenges. It could also lead to the negative tendencies in prosumer behavior, such as a decrease in motivation for the self-consumption of photovoltaic (PV)-generated electricity. Batteries, which are installed on the prosumer’s premises, could be a solution in a particular case. However, the price for battery-based storage solutions is currently sufficiently unattractive for the average prosumer. This paper aimed to present a comparison of the economic and energy related aspects between net-metering and batteries for a single case study by considering the Lithuanian context. The net present value, degree of self-suffi... [more]
Computational Simulation and Dimensioning of Solar-Combi Systems for Large-Size Sports Facilities: A Case Study for the Pancretan Stadium, Crete, Greece
Dimitris Al. Katsaprakakis.
April 25, 2023 (v1)
Keywords: biomass heater, energy performance upgrade, rational use of energy, solar collectors, solar-combi systems, thermal storage.
The article examines the introduction of solar-combi systems in large-size sports facilities. The examined solar-combi systems consist of solar collectors, a biomass heater and thermal storage tanks. In a sense, they constitute hybrid thermal power plants. The full mathematical background is presented on the operation of such systems, along with a proposed operation algorithm, aiming at the maximization of the captured solar radiation. A case study is implemented for the coverage of the thermal energy needs for hot water production and swimming pools heating, met in the Pancretan Stadium, Crete, Greece. In this way, the article aims to indicate the technical and economic prerequisites that can guarantee the feasibility of the examined systems, highlighting the significant potential contribution of such systems towards the realization of energy transition plans from fossil fuels to renewables. The economic feasibility of the introduced system is based on the avoiding diesel oil and elec... [more]
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