Browse
Subjects
Records with Subject: Energy Systems
Showing records 5162 to 5186 of 9566. [First] Page: 1 204 205 206 207 208 209 210 211 212 Last
An Overview of the Classification, Production and Utilization of Biofuels for Internal Combustion Engine Applications
Omojola Awogbemi, Daramy Vandi Von Kallon, Emmanuel Idoko Onuh, Victor Sunday Aigbodion
March 9, 2023 (v1)
Keywords: biodiesel, biofuel, emission, feedstock, transesterification, transportation, utilization
Biofuel, a cost-effective, safe, and environmentally benign fuel produced from renewable sources, has been accepted as a sustainable replacement and a panacea for the damaging effects of the exploration for and consumption of fossil-based fuels. The current work examines the classification, generation, and utilization of biofuels, particularly in internal combustion engine (ICE) applications. Biofuels are classified according to their physical state, technology maturity, the generation of feedstock, and the generation of products. The methods of production and the advantages of the application of biogas, bioalcohol, and hydrogen in spark ignition engines, as well as biodiesel, Fischer−Tropsch fuel, and dimethyl ether in compression ignition engines, in terms of engine performance and emission are highlighted. The generation of biofuels from waste helps in waste minimization, proper waste disposal, and sanitation. The utilization of biofuels in ICEs improves engine performance and mitig... [more]
Research on Exhaust Emissions in Dynamic Operating States of a Combustion Engine in a Real Driving Emissions Test
Monika Andrych-Zalewska, Zdzislaw Chlopek, Jerzy Merkisz, Jacek Pielecha
March 9, 2023 (v1)
Keywords: combustion engine, dynamic operating states, exhaust emissions, Real Driving Emissions
The paper describes the method of investigations of exhaust emissions from a combustion engine under operation classified in terms of its dynamic states. In this paper, the engine operating states are determined through the vehicle driving under actual traffic conditions in the RDE (Real Driving Emissions) test. Based on the recorded tracings of the vehicle velocity, the engine states were classified as static for the acceleration of the absolute value lower than the adopted classification limit. Besides, the authors analyzed the engine operating states for the positive as well as negative acceleration. For the adopted engine operating states, zero-dimensional characteristics of the emission intensity for individual exhaust components were determined (average value, coefficient of variation). The influence of the analyzed operating states on the emission of individual exhaust components was assessed. The greatest increase in the intensity of the emission of nitrogen oxides was observed... [more]
Combining Dual Fluidized Bed and High-Temperature Gas-Cooled Reactor for Co-Producing Hydrogen and Synthetic Natural Gas by Biomass Gasification
Yangping Zhou, Zhengwei Gu, Yujie Dong, Fangzhou Xu, Zuoyi Zhang
March 9, 2023 (v1)
Keywords: biomass gasification, GoBiGas, high-temperature gas-cooled reactor, HTR-BiGas, HTR-PM, integrated energy systems, mass and energy balances, nuclear flexibility
Biomass gasification to produce burnable gas now attracts an increasing interest for production flexibility in the renewable energy system. However, the biomass gasification technology using dual fluidized bed which is most suitable for burnable gas production still encounters problems of low production efficiency and high production cost. Here, we proposed a large-scale biomass gasification system to combine dual fluidized bed and high-temperature gas-cooled reactor (HTR) for co-production of hydrogen and synthetic natural gas (SNG). The design of high-temperature gas-cooled reactor biomass gasification (HTR-BiGas) consists of one steam supply module to heat inlet steam of the gasifier by HTR and ten biomass gasification modules to co-produce 2000 MWth hydrogen and SNG by gasifying the unpretreated biomass. Software for calculating the mass and energy balances of biomass gasification was developed and validated by the experiment results on the Gothenburg biomass gasification plant. Th... [more]
Use of Renewable Energy Sources in the European Union and the Visegrad Group Countries—Results of Cluster Analysis
Elżbieta Kacperska, Katarzyna Łukasiewicz, Piotr Pietrzak
March 9, 2023 (v1)
Keywords: cluster analysis, European Union, renewable energy sources, Sustainability, Visegrad Group
Increasing the use of renewable energy sources is one of the strategic objectives of the European Union. In this regard, it seems necessary to answer the question: which of the member countries are the most effective in its implementation? Therefore, the main goal was to distinguish groups of European Union countries, including the Visegrad Group, differing in the use of renewable energy sources in transport, electricity, heating and cooling (based on cluster analysis). All members of the EU were determinedly selected for research on 1 February 2020 (27 countries). The research period embraced the years 2009−2019. The sources of materials were the literature on the topic and data from Eurostat. Descriptive, tabular, graphical methods and cluster analysis were used in the presentation and analysis of materials. In 2019 wind and hydro power accounted for two-thirds of the total electricity generated from renewable sources. In 2019, renewable energy sources made up 34% of gross electricit... [more]
Unloading Bays as Charging Stations for EFV-Based Urban Freight Delivery System—Example of Szczecin
Stanisław Iwan, Mariusz Nürnberg, Artur Bejger, Kinga Kijewska, Krzysztof Małecki
March 9, 2023 (v1)
Keywords: charging infrastructure, charging stations, electric freight vehicle (EFV), electric vehicle (EV), electro-mobility, unloading bays, urban freight transport (UFT)
The problem of urban logistics operations in the context of their impact on the environment has become the key challenge. Due to that, there has been a growing interest in increasing the use of alternative fuels, including electro-mobility. However, an important barrier to the utilisation of electric freight vehicles (EFVs) is their travel range and battery capacity. The paper is focused on the idea of EFV utilisation improvement by implementation of charging stations in unloading bays. First, the Authors analysed the efficiency of chosen vehicles during daily work. Next, the potential improvement of their travel range was analysed, considering the short-time charging processes carried out during delivery operations, using the charging systems provided in unloading bays. Moreover, the concept of wireless chargers utilisation was proposed as a challenge for future work. According to the analysis, utilisation of unloading bays equipped with short-time battery chargers could improve signi... [more]
Editorial to the Special Issue “AI Applications to Power Systems”
Tek-Tjing Lie
March 9, 2023 (v1)
This Special Issue consists of the successful invited submissions to Energies on the very topical subject area of “AI applications to power systems”.
Power System Stabilizer Tuning Algorithm in a Multimachine System Based on S-Domain and Time Domain System Performance Measures
Predrag Marić, Ružica Kljajić, Harold R. Chamorro, Hrvoje Glavaš
March 9, 2023 (v1)
Keywords: multi-machine stability, participation analysis, PSS tuning, s-domain analysis, time-domain analysis
One of the main characteristics of power systems is keeping voltages within given limits, done by implementing fast automatic voltage regulators (AVR), which can raise generator voltage (i.e., excitation voltage) in a short time to ceiling voltage limits while simultaneously affecting the damping component of the synchronous generator electromagnetic torque. The efficient way to increase damping in the power system is to implement a power system stabilizer (PSS) in the excitation circuit of the synchronous generator. This paper proposes an enhanced algorithm for PSS tuning in the multimachine system. The algorithm is based on the analysis of system participation factors and the pole placement method while respecting the time domain behavior of the system after being subdued with a small disturbance. The observed time-domain outputs, namely active power, speed, and rotor angle of the synchronous generator, have been classified and validated with proposed weight functions based on the mi... [more]
The Effect of Detoxification of Lignocellulosic Biomass for Enhanced Methane Production
Katarzyna Kotarska, Wojciech Dziemianowicz, Anna Świerczyńska
March 9, 2023 (v1)
Keywords: Biofuels, enzymatic hydrolysis, lignocellulosic biomass, simultaneous fermentation
The aim of this research is to examine the effect of lignocellulosic biomass detoxification on the efficiency of the methane fermentation process. Both for corn straw and rye straw, the methane yield was expressed per volume of fermentation medium and per mass of volatile solids (VS) added. Lignocellulosic biomass was subjected of thermo-chemical and enzymatic sequential pretreatments. It was found that methane yield was higher by 22% when using the detoxification process. In these variants, CH4 yield was 18.86 L/L for corn straw and 17.69 L/L for rye straw; while methane yield expressed per mass of VS added was 0.31 m3/kg VS for corn straw and 0.29 m3/kg VS for rye straw. The inclusion of a detoxification step in pretreatments of biomass lignocellulosic increases the degree of organic substance decomposition and enhances methane yield. The results show that a two-step pretreatment, alkaline/enzymatic with a detoxification process, is necessary for the effective generation of high meth... [more]
Review of Zero Energy Building Concept-Definition and Developments in Latin America: A Framework Definition for Application in Panama
Miguel Chen Austin, Katherine Chung-Camargo, Dafni Mora
March 9, 2023 (v1)
Keywords: nZEB, NZEB, residential sector, tropical climate, Zero Energy Buildings
In recent decades, European countries have developed concepts, definitions, and construction technologies for Zero Energy Building (ZEB) that are effective and correspond to their specific climates. Latin American countries are still trying to find adequate solutions which respond to the local climatic, cultural, social, technical, and economic context. As such, this paper aims to establish the basis of the minimum energy efficiency and the renewable threshold for the definition of ZEB in order to better understand the application in Panama, based on assessing the energy regulations implemented in Panama. To achieve this aim, a review concentrated on the concept-definition and implementation adopted by Latin American countries is presented first before the paper converges into defining a framework for application in Panama. Finally, a case-study-based theoretical framework proposing a ZEB definition for Panama is discussed. The results of this study showed a net primary energy balance,... [more]
Ground Source and Sewage Water Source Heat Pump Systems for Block Heating and Cooling Network
Min-Hwi Kim, Deuk-Won Kim, Gwangwoo Han, Jaehyeok Heo, Dong-Won Lee
March 9, 2023 (v1)
Keywords: coefficient of performance, curve fitting, ground source, heat pump, sewage water source
The demand for district heating and cooling systems in block units with a heat pump that utilizes various unused energy sources for energy supply has been increasing. This study investigated experimentally the ground source heat pump (GSHP) and sewage water source heat pump (SWSHP) facilities used in block cooling and heating networks. Then, a heat pump performance prediction model was derived for utilization in future designs. Operational data for heating and cooling energy supply from an experimental site were investigated for the period between 2018 and 2020. During the cooling season, the coefficient of performance (COP) of the GSHP was approximately 4.1, and that of the SWSHP was approximately 2.9. The cooling performance of the SWSHP gradually decreased because of the fouling. The COP of the GSHP and SWSHP during the heating season was approximately 3.6 and 3.4, respectively. The results also demonstrated that, if fouling in the SWSHP can be prevented or reduced, the acquired COP... [more]
Heat Exchangers in Carnot Batteries: Condensation and Evaporation in a Reversible Device
Daniel Steger, Christoph Regensburger, Jenny Pham, Eberhard Schlücker
March 9, 2023 (v1)
Keywords: Carnot battery, heat exchangers, heat pump, organic Rankine cycle, reversible condensation–evaporation, thermal imaging camera
The combined heat pump−organic Rankine cycle is a thermal−electrical storage concept which allows the reversible use of components in both operation modes (loading and unloading the storage). This saves in terms of investment costs but also creates challenges during design and operation. A heat exchanger is an expensive component destined to be used for the reversible purposes of a heat pump condenser and an organic Rankine cycle evaporator. In this study, the operation of such an apparatus was evaluated based on an analytical model, experimental data and thermal imaging. This study shows that the model can predict the filling of the apparatus distinguished by liquid, vapour and the two-phase region. The thermal imaging supports the model and gives the location of the regions. Connecting both methods, a valid statement about the current condition of the heat exchanger is possible. Due to very small pinch points, the apparatus is not efficiently used in the investigated modes. Extending... [more]
Fault-Ride-Through Approach for Grid-Tied Smart Transformers without Local Energy Storage
Justino Rodrigues, Carlos Moreira, João Peças Lopes
March 9, 2023 (v1)
Keywords: balanced faults, fault ride through, hybrid AC/DC network, smart transformer, unbalanced faults
The Smart Transformer (ST) is being envisioned as the possible backbone of future distribution grids given the enhanced controllability it provides. Moreover, the ST offers DC-link connectivity, making it an attractive solution for the deployment of hybrid AC/DC distribution grids which offer important advantages for the deployment of Renewable Energy Sources, Energy Storage Systems (ESSs) and Electric Vehicles. However, compared to traditional low-frequency magnetic transformers, the ST is inherently more vulnerable to fault disturbances which may force the ST to disconnect in order to protect its power electronic converters, posing important challenges to the hybrid AC/DC grid connected to it. This paper proposes a Fault-Ride-Through (FRT) strategy suited for grid-tied ST with no locally available ESS, which exploits a dump-load and the sensitivity of the hybrid AC/DC distribution grid’s power to voltage and frequency to provide enhanced control to the ST in order to handle AC-side v... [more]
Clustering Analysis of Energy Consumption in the Countries of the Visegrad Group
Michał Gostkowski, Tomasz Rokicki, Luiza Ochnio, Grzegorz Koszela, Kamil Wojtczuk, Marcin Ratajczak, Hubert Szczepaniuk, Piotr Bórawski, Aneta Bełdycka-Bórawska
March 9, 2023 (v1)
Keywords: clustering analysis, energy productivity, EU, k-means, sectors analysis
The main purpose of this paper is to assess energy consumption with a breakdown into main sectors of the countries that belong to the Visegrad Group. The specific objectives aim to determine changes in energy absorption, its productivity, structure by sectors and to show the similarities of the Visegrad Group countries to the other EU states in terms of the sectoral energy absorption structure. All members of the Visegrad group, i.e., Poland, Hungary, Slovakia and the Czech Republic, were purposefully selected for the study as of 31 December 2018. The research period covered the years 1990−2018. The sources of gathered information were the literature on the subject and OECD data. The following methods were used for the analysis and presentation of materials: explanations, tabular and graphical depictions, descriptive statistics, dynamics indicators, and cluster analysis performed with the following methods: k-means, hierarchical agglomerative clusters and DIvisive ANAlysis (DIANA). The... [more]
The Selection of the Most Cost-Efficient Distributed Generation Type for a Combined Cooling Heat and Power System Used for Metropolitan Residential Customers
Jaemin Park, Haesung Jo, Insu Kim
March 9, 2023 (v1)
Keywords: absorption chiller, combined cooling heat and power, distributed generation, microturbine
Distributed generation (DG) using renewable energy sources is of widespread interest. For example, modern centralized conventional fossil fuel power generation commonly adds DG using renewable energy resources to the grid. Therefore, in these changes, it is necessary to optimize renewable energy systems to increase energy efficiency and reduce emissions. In previous studies, meta-heuristic algorithms were used to optimize DG location and capacity, but different types of DG systems and integrated energy hub conditions were not considered. Determining the most effective DG type for an integrated energy hub is critical. Accordingly, this study presented a methodology for selecting the most cost-efficient DG for metropolitan residential customers of energy hubs. In this paper, we model energy hubs for residential customers and the most cost-efficient DG type using MATLAB and HOMER software, considering microturbine (MT), photovoltaic (PV), wind turbine, and fuel cell (FC) power sources. Fo... [more]
Recent Advances in Ammonia Combustion Technology in Thermal Power Generation System for Carbon Emission Reduction
Hookyung Lee, Min-Jung Lee
March 9, 2023 (v1)
Keywords: ammonia, carbon-free fuel, carbon-neutral, coal-fired boiler, combustion, gas turbine
With the formation of an international carbon-neutral framework, interest in reducing greenhouse gas emissions is increasing. Ammonia is a carbon-free fuel that can be directly combusted with the role of an effective hydrogen energy carrier, and its application range is expanding. In particular, as research results applied to power generation systems such as gas turbines and coal-fired power plants have been reported, the technology to use them is gradually being advanced. In the present study, starting with a fundamental combustion research case conducted to use ammonia as a fuel, the application research case for gas turbines and coal-fired power plants was analyzed. Finally, we report the results of the ammonia-air burning flame and pulverized coal-ammonia-air co-fired research conducted at the authors’ research institute.
Frequency Control of Large-Scale Interconnected Power Systems via Battery Integration: A Comparison between the Hybrid Battery Model and WECC Model
Roghieh Abdollahi Biroon, Pierluigi Pisu, David Schoenwald
March 9, 2023 (v1)
Keywords: battery energy storage system, decentralized control, distributed control, hybrid control, inter-are oscillations, Optimization
The increasing penetration of renewable energy sources in power grids highlights the role of battery energy storage systems (BESSs) in enhancing the stability and reliability of electricity. A key challenge with the renewables’, specially the BESSs, integration into the power system is the lack of proper dynamic models and their application in power system analyses. The control design strategy mainly depends on the system dynamics which underlines the importance of the system accurate dynamic modeling. Moreover, control design for the power system is a complicated issue due to its complexity and inter-connectivity, which makes the application of distributed control to improve the stability of a large-scale power system inevitable. This paper presents an optimal distributed control design for the interconnected systems to suppress the effects of small disturbances in the power system employing utility-scale batteries based on existing battery models. The control strategy is applied to t... [more]
Energy Conservation Behaviors and Awareness of Polish, Czech and Ukrainian Students: A Case Study
Zofia Gródek-Szostak, Mateusz Malinowski, Marcin Suder, Klaudia Kwiecień, Stanisław Bodziacki, Magdalena D. Vaverková, Alżbeta Maxianová, Anna Krakowiak-Bal, Urszula Ziemiańczyk, Hrihorii Uskij, Karolina Kotulewicz-Wisińska, Rafał Lisiakiewicz, Agata Niemczyk, Anna Szeląg-Sikora, Marcin Niemiec
March 9, 2023 (v1)
Keywords: energy conservation, energy consumption, higher education, management
Energy education of the younger generation, who are the future decision makers, investors, consumers, scientists, or skilled labor force in new energy technologies, is crucial for the future of Europe and the world. However, beyond the long-term goals of energy education policies, the short-term effects on energy conservation and the promotion of renewable energy sources are equally as important. The main purpose of the paper is to identify and analyze the behavior of students (who study the issues related to energy saving and RES), in terms of energy conservation. The conducted analysis focused on examining and comparing the scope of responses of the surveyed students in individual countries, especially in the Czech Republic, Poland, and Ukraine. The survey was carried out using the computer-assisted web interview (CAWI). Descriptive and graphical methods were used to present the results. Statistical analysis of the collected data included basic measures of descriptive statistics and... [more]
Adsorption of Carbon Dioxide, Methane, and Nitrogen on Zn(dcpa) Metal-Organic Framework
Rui P. P. L. Ribeiro, Isabel A. A. C. Esteves, José P. B. Mota
March 9, 2023 (v1)
Keywords: Adsorption, biogas, Carbon Capture, framework flexibility, gas storage, MOF, Zn(dcpa)
Adsorption-based processes using metal-organic frameworks (MOFs) are a promising option for carbon dioxide (CO2) capture from flue gases and biogas upgrading to biomethane. Here, the adsorption of CO2, methane (CH4), and nitrogen (N2) on Zn(dcpa) MOF (dcpa (2,6-dichlorophenylacetate)) is reported. The characterization of the MOF by powder X-ray diffraction (PXRD), thermogravimetric analysis (TGA), and N2 physisorption at 77 K shows that it is stable up to 650 K, and confirms previous observations suggesting framework flexibility upon exposure to guest molecules. The adsorption equilibrium isotherms of the pure components (CO2, CH4, and N2), measured at 273−323 K, and up to 35 bar, are Langmuirian, except for that of CO2 at 273 K, which exhibits a stepwise shape with hysteresis. The latter is accurately interpreted in terms of the osmotic thermodynamic theory, with further refinement by assuming that the free energy difference between the two metastable structures of Zn(dcpa) is a norma... [more]
Comparative Analysis of Performance, Emission, and Combustion Characteristics of a Common Rail Direct Injection Diesel Engine Powered with Three Different Biodiesel Blends
K. M. V. Ravi Teja, P. Issac Prasad, K. Vijaya Kumar Reddy, N. R. Banapurmath, Manzoore Elahi M. Soudagar, Nazia Hossain, Asif Afzal, C Ahamed Saleel
March 9, 2023 (v1)
Keywords: cashew nutshell seed oil, combustion, common rail direct injection, emissions, jackfruit seed and Jamun seed oil, performance
Biodiesel is a renewable energy source which is gaining prominence as an alternative fuel over fossil diesel for different applications. Due to their higher viscosity and lower volatility, biodiesels are blended with diesel in various proportions. B20 blends are viable and sustainable solutions in diesel engines with acceptable engine performance as they can replace 20% fossil fuel usage. Biodiesel blends are slightly viscous as compared with diesel and can be used in common rail direct injection (CRDI) engines which provide high pressure injection using an electronic control unit (ECU) with fuel flexibility. In view of this, B20 blends of three biodiesels derived from cashew nutshell (CHNOB (B20)), jackfruit seed (JACKSOB (B20)), and Jamun seed (JAMNSOB (B20)) oils are used in a modified single-cylinder high-pressure-assisted CRDI diesel engine. At a BP of 5.2 kW, for JAMNSOB (B20) operation, BTE, NOx, and PP increased 4.04%, 0.56%, and 5.4%, respectively, and smoke, HC, CO, ID, and C... [more]
A Hybrid Maximum Power Point Tracking Method without Oscillations in Steady-State for Photovoltaic Energy Systems
Chih-Chiang Hua, Yu-Jun Zhan
March 9, 2023 (v1)
Keywords: genetic algorithm (GA), maximum power point tracking (MPPT), partial shaded conditions (PSC), PV system
This paper proposes a hybrid maximum power point tracking (MPPT) method with zero oscillation in steady-state by combining genetic algorithm (GA) and perturbation and observation (P&O) method. The proposed MPPT can track the global maximum power point (GMPP) fast for a photovoltaic (PV) system even under partial shaded conditions (PSC). The oscillations around the GMPP are eliminated and the power loss can be reduced significantly. In addition, the proposed MPPT can make the PV system operate at the highest efficiencies under various atmospheric conditions. During the MPP tracking, the system will oscillate around the MPPs, resulting in unnecessary power loss. To solve the problem, the artificial intelligence (AI) algorithms, such as PSO, Bee Colony optimization, GA, etc., were developed to deal with this issue. However, the problem with the AI algorithm is that the time for convergence may be too long if the range of the MPP search space is large. In addition, if the atmospheric condi... [more]
Dynamic Spillovers and Asymmetric Spillover Effect between the Carbon Emission Trading Market, Fossil Energy Market, and New Energy Stock Market in China
Dan Nie, Yanbin Li, Xiyu Li
March 9, 2023 (v1)
Keywords: asymmetric spillover effect, carbon emission allowance price, carbon emission trading, coal price, connectedness network, crude oil price, natural gas price, new energy
In 2020, China proposed the goal of achieving carbon emission peaks by 2030 and carbon neutrality by 2060. For China, whose energy consumption structure has long been dominated by fossil energy, carbon trading and new energy are crucial for the realization of the emission target. By establishing a connectedness network model, this paper studies the static and dynamic spillovers between the Hubei carbon trading market, new energy stock market, crude oil market, coal market, and natural gas market in China, and draws the following conclusions: (1) the static spillover index of the carbon−energy−stock system is 3.57% and the dynamic spillover index fluctuates between 7.67% and 22.62%, indicating that the spillover effect of the system is low; (2) for the whole system, whether from a static or dynamic perspective, the carbon market always plays the role of net information receiver, while new energy is the net information transmitter; (3) the new energy stock market and the coal market alwa... [more]
Duct Attachment on Improving Breaking Wave Zone Energy Extractor Device Performance
Krisna Adi Pawitan, Hideki Takebe, Hanley Andrean, Shuji Misumi, Jun Fujita, Tsumoru Shintake
March 9, 2023 (v1)
Keywords: coastal engineering, Renewable and Sustainable Energy, structural response, wave energy converter
A challenging wave energy converter design that utilized the denser energy part of the nearshore breaking wave zone to generate electricity was introduced in 2016 by Shintake. The Okinawa Institute of Science and Technology Graduate University’s project aims to take advantage of breaking wave energy to harness electricity. The 2016 version of the device consisted only of a bare turbine and power generator. Early exploration of the design recorded short periods and high impact wave pressures were experienced by the structure, with the turbine unable to harvest energy effectively. Additional structure to not only reduce incoming impact pressure but also increase the duration of water flow through the turbine was needed. These are the main reasons behind incorporating the duct attachment into the design. This paper show that the duct is capable of halving the impact pressure experienced by the turbine and can increase the energy exposure by up to 1.6 times the bare turbine configuration.... [more]
Study on the Relationship between Combustion Parameters and Cylinder Head Vibration Signal in Time Domain
Shaobo Ji, Yang Li, Guohong Tian, Rongze Ma, Minglei Shu, Shiqiang Zhang, Wenbin Yu, Xin Lan, Yong Cheng
March 9, 2023 (v1)
Keywords: combustion information estimation, combustion pressure, FEM analysis, vibration signal
Combustion-related characteristic parameters, such as the start of combustion (SoC) and the timing of the peak pressure increase rate (PIR), can be used as the feedback signals for the closed-loop control of combustion. A dynamic Finite Element Method (FEM) model was firstly developed to confirm the closely related time period between combustion pressure and vibration. On this basis, a fast processing method was developed to estimate the timings of SoC and the peak PIR in the closely related time period. This method was verified on a twelve-cylinder heavy-duty diesel engine at various engine speed and load. Results showed that the maximum deviation of the two parameters were within 2 °CA and 1.5 °CA, respectively, which suggested that the proposed method had an adequate accuracy.
Solar Photovoltaic Investment Changes across China Regions Using a Spatial Shift-Share Analysis
Ruxu Sheng, Juntian Du, Songqi Liu, Changan Wang, Zidi Wang, Xiaoqian Liu
March 9, 2023 (v1)
Keywords: regional analysis, solar photovoltaic investment, spatial shift-share analysis
Solar photovoltaic (PV) has become the fastest-growing new energy in China and one of the main contributors to China’s clean energy transition. From 2013 to 2019, China’s solar PV installed capacity grew from 15,890 MW to 204,180 MW, increasing by 11.85 times. To explore solar PV investment changes across China regions, we use spatial shift-share analysis model to decompose solar PV investment changes from 2013 to 2019 into four components: national energy investment growth effect (NEG), national energy investment structure effect (NES), neighbor−nation solar PV investment competitive effect (NNC), and region−neighbor solar PV investment competitive effect (RNC). Based on the decomposition results, we find that the value of NNC of most western provinces is negative for the entire period, while the NNC of most central and eastern provinces is in the middle and lower range. There is little difference in RNC among these regions. While comparing the influence caused by the four effects, NN... [more]
OC6 Phase Ib: Floating Wind Component Experiment for Difference-Frequency Hydrodynamic Load Validation
Amy Robertson, Lu Wang
March 9, 2023 (v1)
Keywords: difference frequency, floating wind, nonlinear hydrodynamics, OC6, validation, wave basin
A new validation campaign was conducted at the W2 Harold Alfond Ocean Engineering Laboratory at the University of Maine to investigate the hydrodynamic loading on floating offshore wind substructures, with a focus on the low-frequency contributions that tend to drive extreme and fatigue loading in semisubmersible designs. A component-level approach was taken to examine the hydrodynamic loads on individual parts of the semisubmersible in isolation and then in the presence of other members to assess the change in hydrodynamic loading. A variety of wave conditions were investigated, including bichromatic waves, to provide a direct assessment of difference-frequency wave loading. An assessment of the impact of wave uncertainty on the loading was performed, with the goal of enabling validation with this dataset of numerical models with different levels of fidelity. The dataset is openly available for public use and can be downloaded from the U.S. Department of Energy Data Archive and Portal... [more]
Showing records 5162 to 5186 of 9566. [First] Page: 1 204 205 206 207 208 209 210 211 212 Last
(0.07 seconds)
[Show All Subjects]

[0.1 s]