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Records Added in March 2023
Records added in March 2023
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Showing records 12544 to 12568 of 12968. [First] Page: 1 499 500 501 502 503 504 505 506 507 Last
Investigation on Performance of Various Power Control Strategies with Bifilar Coil for Induction Surface Melting Application
Alagarsamy Sureshkumar, Ramachandiran Gunabalan, Pradeep Vishnuram, Sridhar Ramsamy, Benedetto Nastasi
March 1, 2023 (v1)
Keywords: asymmetric duty cycle control, bifilar coil, induction heating, metal melting, phase shift control, pulse density modulation, pulse duty cycle control, series resonant inverter, variable frequency control
In recent years, induction heating applications assisted by electronic power control have been very appealing. For melting applications, induction heating is widely used as it seems to be appropriate and provides higher efficiency, zero pollutants, non-contamination of material, etc. in comparison with conventional heating. The conventional variable frequency control scheme is not sufficient for melting applications because of its high switching loss, low efficiency, and lower heat rate. A superlative control technique is required to control the output power smoothly, for a high heating rate with minimum power loss, and to lower the number of components. In this paper, a capacitorless self-resonating bifilar coil is proposed for induction surface melting applications. The performance of the system in terms of modular losses, heat rate, and efficiency is analyzed for various power methods such as pulse duty cycle control, phase shift control, pulse density modulation control, and asymme... [more]
Research on Operation Optimization of LNG Submerged Pump System in LNG Receiving Terminals
Baoqing Wang, Kun Chen, Cheng Huang, Jinrui Zhao, Yaotong Zhang, Dequan Li, Lin Wang
March 1, 2023 (v1)
Subject: Optimization
Keywords: energy saving, LNG receiving terminal, LNG submerged pump, operation optimization
This paper focuses on improving the operating efficiency of the Liquified Natural Gas (LNG) submerged pump system in the LNG receiving terminals and achieve energy saving. The minimum input energy consumption of the LNG submerged pump system is taken as the objective function, and an optimization model for the operation of the LNG submerged pump system with variable frequency speed is established. LINGO18.0 optimization software is used to solve the model to get the optimal LNG submerged pump operation plan that satisfies the constraints. Taking a certain LNG receiving terminal as an example, the operation optimization of its LNG submerged pump system is carried out, and the input energy consumption of the system before and after optimization is compared. The results show that the use of variable frequency pumps can reduce the energy consumption of the LNG submerged pump system of LNG receiving terminals, and the optimization model can reduce the input power consumption of the system b... [more]
Multiple Power Supply Capacity Planning Research for New Power System Based on Situation Awareness
Dahu Li, Xiaoda Cheng, Leijiao Ge, Wentao Huang, Jun He, Zhongwei He
March 1, 2023 (v1)
Keywords: capacity configuration, carbon emission, inertia security region, multi-objective optimization, situation awareness, wind-photovoltaic-thermal power system
In the context of new power systems, reasonable capacity optimization of multiple power systems can not only reduce carbon emissions, but also improve system safety and stability. This paper proposes a situation awareness-based capacity optimization strategy for wind-photovoltaic-thermal power systems and establishes a bi-level model for system capacity optimization. The upper-level model considers environmental protection and economy, and carries out multi-objective optimization of the system capacity planning solution with the objectives of minimizing carbon emissions and total system cost over the whole life cycle of the system, further obtaining a set of capacity planning solutions based on the Pareto frontier. A Pareto optimal solution set decision method based on grey relativity analysis is proposed to quantitatively assess the comprehensive economic−environmental properties of the system. The capacity planning solutions obtained from the upper model are used as the input to the... [more]
IBM-LBM-DEM Study of Two-Particle Sedimentation: Drafting-Kissing-Tumbling and Effects of Particle Reynolds Number and Initial Positions of Particles
Xiaohui Li, Guodong Liu, Junnan Zhao, Xiaolong Yin, Huilin Lu
March 1, 2023 (v1)
Keywords: discrete element method, drafting-kissing-tumbling, immersed boundary method, lattice Boltzmann method, sedimentation
Particle sedimentation is a fundamental process encountered in various industrial applications. In this study, we used immersed boundary lattice Boltzmann method and discrete element method (IBM-LBM-DEM) to investigate two-particle sedimentation. A lattice Boltzmann method was used to simulate fluid flow, a discrete element method was used to simulate particle dynamics, and an immersed boundary method was used to handle particle−fluid interactions. Via the IBM-LBM-DEM, the particles collision process in fluid or between rigid walls can be calculated to capture the information of particles and the flow field more efficiently and accurately. The numerical method was verified by simulating settling of a single three-dimensional particle. Then, the effects of Reynolds number (Re), initial distance, and initial angle of particles on two-particle sedimentation were characterized. A specific focus was to reproduce, analyze, and define the well-known phenomenon of drafting-kissing-tumbling (DK... [more]
Numerical Simulation and Economic Evaluation of Wellbore Self-Circulation for Heat Extraction Using Cluster Horizontal Wells
Zhen Zhao, Guangxiong Qin, Huijuan Chen, Linchao Yang, Songhe Geng, Ronghua Wen, Liang Zhang
March 1, 2023 (v1)
Keywords: cluster wells, economic evaluation, heat extraction capacity, wellbore self-circulation
The heat extraction capacity of the self-circulation wellbore is usually small because of the limited heat exchange area. In the paper, the cluster horizontal well group technology was proposed to enhance the heat extraction capacity and decrease the unit cost. Based on the mathematical model of heat transfer, a numerical simulation model of wellbore self-circulation for heat extraction using cluster horizontal wells was established to study the influence of main factors on heat extraction capacity. The economic analysis of heat extraction and power generation was carried out according to the model of the levelized cost of energy. The results show that the enhancement of heat extraction capacity is limited after the injection rate exceeds 432 m3/d (1.59 MW/well). The inflection point of the injection rate can be determined as the design basis for injection-production parameters. When the thermal conductivity of formation increases from 2 to 3.5 W/(m·K), the heat extraction rate will in... [more]
Power Converter Solutions for Industrial PV Applications—A Review
Ievgen Verbytskyi, Mykola Lukianov, Kawsar Nassereddine, Bohdan Pakhaliuk, Oleksandr Husev, Ryszard Michał Strzelecki
March 1, 2023 (v1)
Keywords: cost factor, power converters, power loss, PV applications review
As the use of photovoltaics becomes more widespread, new technologies for more efficient energy generation, transmission, and distribution based on power electronics converters are being developed. The most common applications are grid-on, energy storage, hybrid, and high voltage gain applications. These applications impose several additional requirements in the design of power converters associated with the solar battery’s maximum power tracking and operation in a wide range of input currents and voltages. The practical realization of such solutions can be implemented on the basis of various topologies, which requires a preliminary application of criteria for assessing their effectiveness. The paper conducts a comparison of different topologies on power converters based on two parameters that describe their cost and power loss for various PV applications. For a straightforward study, these parameters are represented using the gain factor, which allows for an accurate comparison of the... [more]
Modeling, Simulation and Analysis of Intermediate Fixed Piezoelectric Energy Harvester
Yulong Wang, Yaran Lv, Baozhan Lv, Ying Zhang
March 1, 2023 (v1)
Keywords: electrical energy, energy harvester, intermediate fixed, piezoelectric unimorph circular diaphragm
To address the problem that piezoelectric energy harvesters are difficult to apply in certain environments, this paper establishes the theoretical study of the intermediate fixed disc piezoelectric energy harvester (IFDPEH) based on the unimorph under concentrated force. The reliability of the model was indirectly verified by numerical simulation and Computer-Aided Engineering (CAE) simulation. The effects of load, radius ratio (piezoelectric layer/intermediate support), thickness ratio (piezoelectric layer/total thickness), and elastic modulus ratio (substrate/piezoelectric layer) on electrical energy were studied. The results indicate that the radius/thickness ratios of the IFDPEH based on aluminum and beryllium bronze are 0.05/0.31 and 0.05/0.48, respectively. In addition, through parameter comparison, it is found that the most important parameters affecting IFDPEH power are radius ratio and large load. The results are demonstrated to be meaningful for broadening the application of... [more]
Load Spectrum Compilation Method of Hybrid Electric Vehicle Reducers Based on Multi-Criteria Decision Making
Jie Li, Chongyang Han, Weibin Wu, Ting Tang, Xiao Ran, Zefeng Zheng, Shunli Sun
March 1, 2023 (v1)
Keywords: fatigue life prediction, hybrid electric vehicle, load spectrum, multi-criteria decision making, rainflow counting, reducer
This article proposes a method for compiling the load spectra of reducers for hybrid electric vehicles. Selecting typical working conditions for real vehicle data collection, the load data under each typical working condition were divided into five categories according to the state of the power source and the data were preprocessed. The optimal sample loads for compiling load spectra were obtained based on a multi-criteria decision-making method, rainflow counting for optimal sample loads was performed according to different power source output patterns, non-parametric extrapolation was performed to obtain the full-life two-dimensional load spectrum after dimensionality reduction, and a full-life eight-level programmed load spectrum that could be used for bench tests was obtained. Using the programmed load spectrum and the extracted sample load as the load input, a fatigue life prediction simulation of the reducer gear of a hybrid electric vehicle was carried out. The reducer gear fati... [more]
Research on Intelligent Comprehensive Evaluation of Coal Seam Impact Risk Based on BP Neural Network Model
Kexue Zhang, Junao Zhu, Manchao He, Yaodong Jiang, Chun Zhu, Dong Li, Lei Kang, Jiandong Sun, Zhiheng Chen, Xiaoling Wang, Haijiang Yang, Yongwei Wu, Xingcheng Yan
March 1, 2023 (v1)
Keywords: BP neural network, coal bump, coal seam, comprehensive evaluation, impact risk, intelligent
Coal seam impact risk assessment is the premise of coal mine safety, which can reduce the occurrence of underground impact pressure accidents and directly affect the safety, coal production, economic and social benefits of coal mining enterprises. In order to evaluate the impact risk of coal seams more reasonably and comprehensively, and consider the weights of different influencing factors on the impact risk of coal seams, the neural network model is proposed to evaluate the impact risk of coal seams. Mining depth, impact tendency, geological structure and mining technology are selected as the influencing factors of coal seam impact risk. Each influencing factor contains different evaluation indices, a total of 18. The 18 evaluation indices and the impact risk level are normalized and quantified. The BP neural network model for evaluating coal seam impact risk level is established, and the impact risk of 2-1 coal seams in a mine in Inner Mongolia is comprehensively evaluated and analy... [more]
Unlocking the Flexibility of District Heating Pipeline Energy Storage with Reinforcement Learning
Ksenija Stepanovic, Jichen Wu, Rob Everhardt, Mathijs de Weerdt
March 1, 2023 (v1)
Subject: Optimization
Keywords: 4th generation district heating, combined heat and power economic dispatch, Markov decision process, mixed-integer nonlinear program, pipeline energy storage, Q-learning
The integration of pipeline energy storage in the control of a district heating system can lead to profit gain, for example by adjusting the electricity production of a combined heat and power (CHP) unit to the fluctuating electricity price. The uncertainty from the environment, the computational complexity of an accurate model, and the scarcity of placed sensors in a district heating system make the operational use of pipeline energy storage challenging. A vast majority of previous works determined a control strategy by a decomposition of a mixed-integer nonlinear model and significant simplifications. To mitigate consequential stability, feasibility, and computational complexity challenges, we model CHP economic dispatch as a Markov decision process. We use a reinforcement learning (RL) algorithm to estimate the system’s dynamics through interactions with the simulation environment. The RL approach is compared with a detailed nonlinear mathematical optimizer on day-ahead and real-tim... [more]
Review of Photovoltaic Power and Aquaculture in Desert
Thi Thu Em Vo, Seung-Mo Je, Se-Hoon Jung, Jaehyeon Choi, Jun-Ho Huh, Han-Jong Ko
March 1, 2023 (v1)
Keywords: aquaculture, aquaculture in desert, challenges, desert, possibilities, solar power
PV (photovoltaic) capacity is steadily increasing every year, and the rate of increase is also increasing. A desert area with a large equipment installation area and abundant solar radiation is a good candidate. PV power plants installed in the desert have advantages in themselves, but when combined with desert aquacultures, additional benefits can be obtained while compensating for the shortcomings of the aquaculture industry. The importance of the aquaculture industry is increasing, with aquaculture products approaching half of the total supply of marine products due to sea environmental pollution and reduced resources. Moreover, in deserts, where marine products are difficult to obtain, aquaculture is a good way to save marine products. However, one of the many problems that complicate the introduction of aquaculture in the desert is that it is difficult to supply and demand electricity because the site is not near a viable electric grid. However, combination with PV can solve this... [more]
Accelerated Stress Tests for Solid Oxide Cells via Artificial Aging of the Fuel Electrode
Daria Vladikova, Blagoy Burdin, Asrar Sheikh, Paolo Piccardo, Milena Krapchanska, Dario Montinaro, Roberto Spotorno
March 1, 2023 (v1)
Subject: Materials
Keywords: accelerated stress tests, artificial aging, impedance spectroscopy, redox cycling, solid oxide cells
Solid Oxide Cells (SOCs) are under intensive development due to their great potential to meet the 2030 targets for decarbonization. One of their advantages is that they can work in reversible mode. However, in respect to durability, there are still some technical challenges. Although the quick development of experimental and modeling approaches gives insight into degradation mechanisms, an obligatory step that cannot be avoided is the performance of long-term tests. Taking into account the target for a commercial lifetime is 80,000 h, experiments lasting years are not acceptable for market needs. This work aims to develop accelerated stress tests (ASTs) for SOCs by the artificial aging of the fuel electrode via redox cycling, which follows the degradation processes of calendar aging (Ni coarsening and migration). However, it can cause irreversible damage by the formation of cracks at the interface anode/electrolyte. The advantages of the developed procedure are that it offers a mild le... [more]
Review of Transparent and Semi-Transparent Building-Integrated Photovoltaics for Fenestration Application Modeling in Building Simulations
Joaquim Romaní, Alba Ramos, Jaume Salom
March 1, 2023 (v1)
Keywords: building simulation, photovoltaic, PV glazing, Renewable and Sustainable Energy, solar energy, transparent BIPV
Building-integrated photovoltaics (BIPV) have attracted interest due to their capacity to feasibly supply buildings with renewable power generation, helping to achieve net-zero or net-positive energy goals. BIPV systems include many different solutions depending on the application, the PV technology, and the envelope material they substitute. Among BIPV systems, the last two decades have seen a rising interest in transparent and semi-transparent BIPV (T- and ST-BIPV), which add features such as daylighting and solar radiation control. T- and ST-BIPV mainly consist of opaque PV cells embedded in fenestration systems (PV cladding), while most recent research considers semi-transparent PV cells (homogeneous PV glazing) with improved optical properties. The evaluation of T- and ST-BIPV systems in building performance is complex, as it needs to combine optical, thermal, electrical, and daylighting calculations. Therefore, adequate modeling tools are key to the development of these technolog... [more]
Adaptive Neural Network Global Nonsingular Fast Terminal Sliding Mode Control for a Real Time Ground Simulation of Aerodynamic Heating Produced by Hypersonic Vehicles
Xiaodong Lv, Guangming Zhang, Mingxiang Zhu, Huimin Ouyang, Zhihan Shi, Zhiqing Bai, Igor V. Alexandrov
March 1, 2023 (v1)
Keywords: adaptive neural network global nonsingular fast terminal sliding mode control, aerodynamic heating, hypersonic vehicles
This paper presents a strategy for a thermal-structural test with quartz lamp heaters (TSTQLH), combined with an ultra-local model, a closed-loop controller, a linear extended state observer (LESO), and an auxiliary controller. The TSTQLH is a real time ground simulation of aerodynamic heating for hypersonic vehicles to optimize their thermal protection systems (TPS). However, lack of a system dynamic model for the TSTQLH results in inaccurate tracking of aerodynamic heating. In addition, during the control process, the TSTQLH has internal uncertainties of resistance and external disturbances. Therefore, it is necessary to establish a mathematical model between controllable α(t) and measurable T1(t). An ultra-local model of model-free control plays a crucial role in simplifying system complexity and reducing high-order terms due to high nonlinearities and strong couplings in the system dynamic model, and a global nonsingular fast terminal sliding mode control (GNFTSMC) is added to an u... [more]
Experimental Study of the Effect of Air Filter Pressure Drop on Internal Combustion Engine Performance
Tadeusz Dziubak, Mirosław Karczewski
March 1, 2023 (v1)
Keywords: air filter pressure drop, engine power, hourly and specific fuel consumption, internal combustion engines, smoke opacity
The paper presents the problem of the effect of air filter pressure drop on the operating parameters of a modern internal combustion engine with compression ignition. A literature analysis of the results of investigations of the effect of air filter pressure drop on the filling, power and fuel consumption of carburetor and diesel engines with classical injection system was carried out. It was shown that each increase in the air filter pressure drop Δpf by 1 kPa results in an average decrease in engine power by SI 1−1.5% and an increase in specific fuel consumption by about 0.7. For compression ignition engines, the values are 0.4−0.6% decrease in power and 0.3−0.5% increase in specific fuel consumption. The values of the permissible resistance of the air filter flow Δpfdop determined from the condition of 3% decrease in engine power are given, which are at the level of 2.5−4.0 kPa—passenger car engines, 4−7 kPa—truck engines and 9−12 kPa—special purpose vehicles. Possibilities of decre... [more]
A Feasibility Study of Developing eLCV Shared Architecture in Taiwan
I-Hua Wei, Fu-Ming Wang, Chung-Hao Chang
March 1, 2023 (v1)
Subject: Energy Policy
Keywords: bass diffusion model, eLCV, shared architecture, vehicle electrification
Vehicle electrification has become an important strategy adopted worldwide, including in Taiwan, as a means to achieving net zero emissions. Taiwan is capable of building a whole light commercial vehicle and has technological strength in producing critical EV parts. This study applies the Bass diffusion model to assess the feasibility of developing eLCV shared architecture in Taiwan and estimates that the annual replacement demand for eLCVs could reach 20,221 units. This exceeds the threshold number of 5000 units, which could motivate the automakers to develop eLCV shared architecture. The simulation result shows that achieving full market penetration would take at least 13 years and would be highly correlated with policy support, the vehicle selling price and the battery pack price. The B2B model is a suitable way of introducing eLCVs into the logistics fleets. In the initial promotion phase, policy support and complementary measures would be needed, e.g., public sectors’ purchases, f... [more]
Experimental Investigation on Solar−Thermal Conversion and Migration Characteristics of Nanofluids
Haoyang Sun, Guiping Lin, Haichuan Jin, Ying Zhou, Kuiyuan Ma
March 1, 2023 (v1)
Keywords: migration characteristics, nanofluids, solar energy, solar–thermal conversion characteristics
Solar−thermal conversion and migration characteristics of nanofluids have attracted intensive attention recently. Due to the strong absorption of solar energy, solar collectors with nanofluids have wide applications in many areas including desalination and power generation. Researchers have mainly focused on the macroscopic performance of nanofluids in solar collectors, but the nanoparticles’ migration characteristics with vapor during phase transformation have not been further investigated. Therefore, an experimental investigation on solar−thermal conversion characteristics of nanofluids and migration characteristics with vapor during phase transformation was conducted in this work, in order to verify the enhancement effect of nanoparticles on solar energy absorption and explore the nanoparticles’ migration behavior with vapor. It was found that part of Ag nanoparticles migrate out of the nanofluids with generated vapor by boiling nanofluids, and most of the nanoparticles remained in... [more]
Smart Grid as a Key Tool for the Future of Electrical Distribution Networks
Vitor Fernão Pires, Ilhami Colak, Fujio Kurokawa
March 1, 2023 (v1)
A new paradigm has appeared in the electricity sector with the rapid development of new renewable energy sources, storage systems, information and communication technologies, and ways of integrating distributed energy sources [...]
Variation Characteristic Analysis of Water Content at the Flow Channel of Proton Exchange Membrane Fuel Cell
Lu Zhang, Yongfeng Liu, Pucheng Pei, Xintong Liu, Long Wang, Yuan Wan
March 1, 2023 (v1)
Keywords: accuracy, flow channel, Proton Exchange Membrane Fuel Cells, water content, WCR model
The performance of proton exchange membrane fuel cells (PEMFCs) is directly affected by the nonlinear variations in water content. To study the variation in water content and its effect on PEMFC performance, the water condensation rate (WCR) model is established, which determines the proportional relationship between evaporation and condensation rates in terms of the switch function, and the two-phase flow evolution and pressure drop are considered as well. The WCR model is imported into Fluent software through a user-defined function for simulation, and the test system is established under different operating conditions. Then, the contours of H2O molar concentrations and polarization curves are analyzed and compared. The results show that the condensation rate value of the cathode channel is from 1.05 to 1.55 times higher than that of the anode channel. The WCR model can predict the variation in water content and improve the accuracy of the performance calculation by from 9% to 31%. T... [more]
Pressure Drop Optimization of the Main Steam and Reheat Steam System of a 1000 MW Secondary Reheat Unit
Yanfeng Li, Jingru Liu, Guohe Huang
March 1, 2023 (v1)
Subject: Optimization
Keywords: 1000 MW secondary reheat unit, main steam and reheat steam system, pressure drop optimization
The pressure drop of a main steam and reheat steam system should be optimized during the design and operation of a thermal power plant to minimize operation costs. In this study, the pressure drop of the main steam pipe and reheat steam pipe of a 1000 MW secondary reheat unit are optimized by modulating the operation parameters and the cost of operation is explored. Optimal pipe specifications were achieved by selecting a bend pipe and optimizing the pipe specifications. The pressure loss of the main steam pipeline was optimized to 2.61% compared with the conventional pressure drop (5%), the heat consumption of steam turbine was reduced by about 0.63 kJ/(kW·h), the standard coal consumption was minimized by about 0.024 g/(kW·h), and the total income in 20 years is approximated to be CNY 217,700. The primary reheat system was optimized to 4.88%, the steam turbine heat consumption was reduced by about 7.13 kJ/(kW·h), the standard coal consumption decreased by about 0.276 g/(kW·h), and th... [more]
Risk Management of Island Petrochemical Park: Accident Early Warning Model Based on Artificial Neural Network
Guiliang Li, Bingyuan Hong, Haoran Hu, Bowen Shao, Wei Jiang, Cuicui Li, Jian Guo
March 1, 2023 (v1)
Keywords: BP neural network, early warning model, island petrochemical park, PSO, warning indicator system
Island-type petrochemical parks have gradually become the ‘trend’ in establishing new parks because of the security advantages brought by their unique geographical locations. However, due to the frequent occurrence of natural disasters and difficulties in rescue in island-type parks, an early warning model is urgently needed to provide a basis for risk management. Previous research on early warning models of island-type parks seldom considered the particularity. In this study, the early warning indicator system is used as the input parameter to construct the early warning model of an island-type petrochemical park based on the back propagation (BP) neural network, and an actual island-type petrochemical park was used as a case to illustrate the model. Firstly, the safety influencing factors were screened by designing questionnaires and then an early warning indicator system was established. Secondly, particle swarm optimization (PSO) was introduced into the improved BP neural network t... [more]
Teaching Power-Sector Models Social and Political Awareness
Anna Garcia-Teruel, Yvonne Scholz, Wolfgang Weimer-Jehle, Sigrid Prehofer, Karl-Kiên Cao, Frieder Borggrefe
March 1, 2023 (v1)
Keywords: complexity management, energy system, energy transition, framework scenarios, power-sector model, socioeconomic scenarios, uncertainty reduction
Energy-system scenarios are widely used to relate the developments of the energy supply and the resulting carbon-emission pathways to political measures. To enable scenario analyses that adequately capture the variability of renewable-energy resources, a specialised type of power-sector model (PSM) has been developed since the beginning of this century, which uses input data with hourly resolution at the national or subnational levels. These models focus on techno-economic-system optimisation, which needs to be complemented with expert socioeconomic knowledge in order to prevent solutions that may be socially inacceptable or that oppose political goals. A way to integrate such knowledge into energy-system analysis is to use information from framework scenarios with a suitable geographical and technological focus. We propose a novel methodology to link framework scenarios to a PSM by applying complexity-management methods that enable a flexible choice of base scenarios that are tailored... [more]
Machine Learning for Prediction of Heat Pipe Effectiveness
Anish Nair, Ramkumar P., Sivasubramanian Mahadevan, Chander Prakash, Saurav Dixit, Gunasekaran Murali, Nikolai Ivanovich Vatin, Kirill Epifantsev, Kaushal Kumar
March 1, 2023 (v1)
Keywords: effectiveness, exchanger, heat pipe, Machine Learning
This paper details the selection of machine learning models for predicting the effectiveness of a heat pipe system in a concentric tube exchanger. Heat exchanger experiments with methanol as the working fluid were conducted. The value of the angle varied from 0° to 90°, values of temperature varied from 50 °C to 70 °C, and the flow rate varied from 40 to 120 litres per min. Multiple experiments were conducted at different combinations of the input parameters and the effectiveness was measured for each trial. Multiple machine learning algorithms were taken into consideration for prediction. Experimental data were divided into subsets and the performance of the machine learning model was analysed for each of the subsets. For the overall analysis, which included all the three parameters, the random forest algorithm returned the best results with a mean average error of 1.176 and root-mean-square-error of 1.542.
Numerical Simulation of Hydrate Decomposition during the Drilling Process of the Hydrate Reservoir in the Northern South China Sea
Lei Zhang, Yu Zhang, Chang Chen, Xiao-Sen Li, Zhao-Yang Chen
March 1, 2023 (v1)
Keywords: drilling fluid temperature, drilling process, hydrate decomposition, salinity, secondary hydrate formation
The process of drilling in natural gas hydrate reservoirs in sea areas involves problems such as hydrate decomposition and wellbore instability. To study the response behaviors of a reservoir during the drilling process, a two-dimensional numerical model of drilling fluid invading a hydrate reservoir in a cylindrical coordinate system was established to simulate the processes of heat and mass transfer, gas−liquid two-phase flow, and hydrate formation and decomposition in the hydrate reservoir during the drilling process. Based on the hydrate reservoir at station W17, Shenhu area of the South China Sea, the physical property response of the hydrate reservoir under different drilling fluid temperatures and salinity values was studied. The simulation results showed that during the drilling process, the temperature and pressure of the reservoir respond rapidly in a large area, further promoting the hydrate decomposition in the reservoir around the wellbore and leading to secondary hydrate... [more]
Optimization of Demand Response and Power-Sharing in Microgrids for Cost and Power Losses
Kalim Ullah, Quanyuan Jiang, Guangchao Geng, Rehan Ali Khan, Sheraz Aslam, Wahab Khan
March 1, 2023 (v1)
Keywords: ABC, demand response, microgrid, Optimization, power-sharing, smart grid
The number of microgrids within a smart distribution grid can be raised in the future. Microgrid-based distribution network reconfiguration is analyzed in this research by taking demand response programs and power-sharing into account to optimize costs and reduce power losses. The suggested method determined the ideal distribution network configuration to fulfil the best scheduling goals. The ideal way of interconnecting switches between microgrids and the main grid was also identified. For each hour of operation, the ideal topology of microgrid-based distribution networks was determined using optimal power flow. The results were produced with and without the use of a demand response program and power-sharing in each microgrid. Different load profiles, such as residential, industrial, commercial, and academic, were taken into account and modified using appropriate demand response programs and power-sharing using the Artificial Bee Colony algorithm. Various scenarios were explored indep... [more]
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