<?xml version='1.0' encoding='UTF-8'?><rss version='2.0'><channel><title>Volume 13 Number 4 (April )</title>
		<link>http://ijaers.com/</link>
		<description>Open Access international Journal to publish research paper</description>
		<language>en-us</language>
		<date>April </date><item>
		<title>Comparative Analysis of Upper Body Shape for Chinese and Bangladeshi Women Based on 3D and 2D Measurements</title>
		<description>This study aims to compare
the upper body morphology of young Chinese and Bangladeshi women and to
evaluate whether existing garment sizing methods adequately accommodate
population specific upper body shape characteristics. An integrated
anthropometric approach combining three dimensional (3D) body scanning, two
dimensional (2D) image based measurement, and manual anthropometry was used to
obtain 16 upper body descriptors (dimensional, circumferential, thickness, and
angular) from women aged 18–30 years in China (n = 189) and Bangladesh (n =
20). Descriptive statistics, principal component analysis (PCA), factor
analysis, and K means clustering were applied to extract dominant morphological
factors and classify upper body shape types, which were then interpreted with
reference to national and international sizing criteria. In this sample of
young women, Chinese participants generally exhibited broader shoulders,
greater chest convexity, wider thoracic dimensions, and comparatively flatter
waist–hip profiles, whereas Bangladeshi participants tended to show more
sloping shoulders, thicker neck regions, reduced anterior chest projection,
deeper waists, and more prominent hips. Three principal components and three
upper body shape categories were identified in each population, but the key
contributing variables and the distribution of individuals across clusters
differed between countries. Current sizing systems cover most Chinese body
types in the sample, though they do not fully address extreme proportions,
while in Bangladesh, the lack of a unified national sizing standard appears to
be associated with greater size–shape mismatches. This research provides a
cross national, data driven comparison of female upper body morphology using
combined 3D and 2D measurement techniques and a shared set of upper body descriptors.
The results support the development of population adapted sizing systems and
body shape oriented garment design strategies aimed at improving apparel fit,
wearer comfort, and production efficiency.</description>
		<link>http://ijaers.com/detail/comparative-analysis-of-upper-body-shape-for-chinese-and-bangladeshi-women-based-on-3d-and-2d-measurements/</link>
		<author>Israt Jahan, Bingfei Gu, Nur E Nasiba, Shaik Faizur Rahman</author>
		<pdflink>http://ijaers.com/uploads/issue_files/1IJAERS-0320261-Comparative.pdf</pdflink>
                
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		<title>Verification of High Cycle Fatigue Analyses from the Literature by using Finite Element Software</title>
		<description>This work compares fatigue analysis results
presented in the literature with computational simulations performed using
finite element software. To this end, two fatigue cases with distinct geometric
configurations and loading conditions are analyzed. In the first case, the
loading is multiaxial, with sinusoidal variation and the presence of a non-zero
mean stress. In the second case, the loading presents alternating and mean
stresses that vary over time, and is analyzed by counting load cycles using the
Rainflow method. The results found in the literature for both cases, obtained
through conventional theoretical fatigue approaches, are compared with the
results of the computational simulations performed in this work using finite
element software. It can be noticed that the use of numerical simulation
computational tools offers great flexibility for the analysis of fatigue
problems with complex geometries and loadings. Furthermore, the use of
computational tools provides greater ease and speed in obtaining results,
contributing to the development of more efficient designs.</description>
		<link>http://ijaers.com/detail/verification-of-high-cycle-fatigue-analyses-from-the-literature-by-using-finite-element-software/</link>
		<author>Guilherme Depentor de Souza and Geraldo Creci</author>
		<pdflink>http://ijaers.com/uploads/issue_files/2IJAERS-0320266-Verification.pdf</pdflink>
                
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		<title>Multi-Objective Coordinated Scheduling of Virtual Power Plants for Economic, Low-Carbon, and Stability Objectives: A DOA-NSGAII Hybrid Optimization Strategy</title>
		<description>To achieve low-carbon, economical, and secure operation of power systems
under the “dual carbon” goals, virtual power plants (VPPs) serve as a key
technology for aggregating flexible resources such as distributed energy,
storage, and demand response, making multi-objective coordinated scheduling
critically important. However, the high dimensionality, multiple constraints,
and conflicting objectives of this problem pose challenges for traditional
optimization methods. Therefore, this paper proposes a hybrid intelligent
optimization framework based on an improved Dream Optimization Algorithm (DOA)
and the Non-dominated Sorting Genetic Algorithm (NSGA-II), termed DOA-NSGAII,
to solve the multi-energy scheduling problem of VPPs with objectives of
minimizing economic cost, carbon emissions, and peak-valley load difference. Through customized encoding, decoding, and
constraint-handling mechanisms, the framework integrates DOA’s global search
capability with NSGA-II’s multi-objective decision-making advantages.
Simulation experiments on the IEEE 14-bus system with three comparative schemes
show that, compared with the single-objective economic optimization scheme
(S1), the proposed multi-objective coordinated optimization scheme (S3)
achieves significant comprehensive benefits—reducing carbon emissions by 30.5% and
improving the peak-valley load difference by 12.0%—at the cost of only a
marginal 4.9% increase in economic cost. This study validates the effectiveness
of the DOA-NSGAII framework in solving complex engineering optimization
problems and provides a new approach for multi-objective intelligent scheduling
of VPPs.</description>
		<link>http://ijaers.com/detail/multi-objective-coordinated-scheduling-of-virtual-power-plants-for-economic-low-carbon-and-stability-objectives-a-doa-nsgaii-hybrid-optimization-strategy/</link>
		<author>Yu-Xuan Chen, Yan-Zuo Chang, Yan-Xiao Jia, Kai-Ming Chen, Zi-Rui He, Wen-Min Wen, Guan-Hong Xie, Hong-Rui Yang, Jie-Zhen Yang, Yong-Qing Wang, Zheng-Kuan Deng</author>
		<pdflink>http://ijaers.com/uploads/issue_files/3IJAERS-0320268-Multi-Objective.pdf</pdflink>
                
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		<title>Analysis of Wave Constants in the Laplace Equation Solution for Deep Water with Wave Amplitude or Wave Energy as Input</title>
		<description>In the velocity potential solution of the Laplace equation obtained using the separation of variables method, three wave constants arise: wavelength, wave period, and the wave constant  G. The wave constant  G  represents the rate of wave energy transmission. Unlike these constants, wave amplitude is not part of the solution constants but serves as an input parameter. Therefore, the wave constants should be expressed as functions of the wave amplitude. This study derives analytical expressions for wavelength, wave constant  G, and wave period in deep water with wave amplitude as the governing variable. The relationship between wavelength and wave amplitude is obtained using the Kinematic Free Surface Boundary Condition. The relationship between wave constant  G  and wave amplitude is derived from a modified Euler momentum conservation equation together with a wave amplitude function, which relates the three wave constants to the wave amplitude. The wave period is then determined using the equations for wave constant  G  and the wave amplitude function. After establishing the wave constants as functions of wave amplitude, the study further formulates wave amplitude as a function of wave energy. The resulting amplitude is then used to calculate the three wave constants. This approach can also be applied to analyze waves generated by ship motion, where the input energy corresponds to the ship’s kinetic energy. The method is further extended to long waves, particularly tsunamis and sneaker waves.</description>
		<link>http://ijaers.com/detail/analysis-of-wave-constants-in-the-laplace-equation-solution-for-deep-water-with-wave-amplitude-or-wave-energy-as-input/</link>
		<author>Syawaluddin Hutahaean</author>
		<pdflink>http://ijaers.com/uploads/issue_files/4IJAERS-03202699-Analysis.pdf</pdflink>
                
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		<title>Mechanical Structural Fatigue, Rainflow Virtual Power Plant, Dream Optimization Algorithm, Multi-Objective Optimization, NSGA-II.</title>
		<description>Aiming at the problems of the Long Short-Term
Memory network (LSTM) in time series modeling, such as hyperparameter
adjustment relying on experience, being prone to falling into local optimum,
and slow convergence speed, an LSTM model optimized by the Love Evolution
Algorithm (LEA), namely LEA-LSTM, is proposed. First, the gating mechanism and
time series processing principle of the LSTM network are elaborated, and the
influence of its core hyperparameters on model performance is analyzed. Second,
the LEA algorithm is introduced, and the adaptive optimization of the key
hyperparameters of LSTM is realized through the five-stage evolution mechanism
of encounter, stimulation, reflection, value and role, which solves the defect
of insufficient global search capability of traditional optimization
algorithms. Finally, the Jena Climate Dataset, a general time series dataset,
and scenario-specific dataset such as power load are used for performance
verification. The proposed model is compared with LSTM, PSO-LSTM, WOA-LSTM, BWO-LSTM
and IGWA-ADConv1D-LSTM models in three aspects: prediction accuracy,
convergence speed and robustness. The results show that the Mean Absolute Error
(MAE) of the LEA-LSTM model on the Jena Climate Dataset is reduced by 68.3%
compared with LSTM, and by 42.1%, 37.5% and 29.8% compared with PSO-LSTM,
WOA-LSTM and BWO-LSTM respectively; in the power load forecasting scenario, the
MAE is reduced by 18.6% compared with IGWA-ADConv1D-LSTM; the convergence speed
is increased by more than 35% compared with traditional optimized models, and
the coefficient of determination (R²) remains 99.1% even in small sample
scenarios.</description>
		<link>http://ijaers.com/detail/mechanical-structural-fatigue-rainflow-virtual-power-plant-dream-optimization-algorithm-multi-objective-optimization-nsga-ii/</link>
		<author>Wen-Min Wen, Yan-Zuo Chang, Jin-Ping Chen, Hong-Rui Yang, Yong-Qing Wang, Yu-Xuan Chen, Jie-Zhen Yang, Guan-Hong Xie, Zi-Rui He, Zheng-Kuan Deng, Kai-Ming Chen</author>
		<pdflink>http://ijaers.com/uploads/issue_files/5IJAERS-0420261.doc</pdflink>
                
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		<title>Research on Power Prediction Method for Distributed Photovoltaic Power Generation Systems Based on LSTM Optimized by Grey Wolf Optimizer</title>
		<description>Accurate prediction of the output power of
distributed photovoltaic (PV) systems is crucial for achieving efficient
renewable energy integration and ensuring stable grid operation. Given that the
power output of distributed PV systems is significantly influenced by
meteorological factors and exhibits strong randomness and volatility, this
study takes a distributed PV system in a region of Guangdong Province as the
research object and constructs a PV power generation calculation model based on
real meteorological data and system parameters. For the prediction approach,
traditional time series methods are first employed as a benchmark for
comparison. Subsequently, a GWO-LSTM model is proposed, in which the Grey Wolf
Optimizer (GWO) is used to optimize the hyperparameters of the Long Short-Term
Memory (LSTM) model. The experimental evaluation employs mean squared error
(MSE), root mean squared error (RMSE), and mean absolute error (MAE) as
performance metrics. The results indicate that the MSE of the GWO-LSTM model is
reduced by approximately 85% compared with traditional methods, while the RMSE
and MAE are reduced to around 38% and 33% of those of the traditional methods,
respectively. This model demonstrates significantly higher prediction accuracy
than conventional time series approaches, verifying the effectiveness and
superiority of using GWO to optimize LSTM hyperparameters in distributed PV
power forecasting.</description>
		<link>http://ijaers.com/detail/research-on-power-prediction-method-for-distributed-photovoltaic-power-generation-systems-based-on-lstm-optimized-by-grey-wolf-optimizer/</link>
		<author>Kai-Ming Chen, Yan-Zuo Chang, Yan-Xiao Jia, Yu-Xuan Chen, Hong-Rui Yang, Wen-Min Wen, Zi-Rui He, Jie-Zhen Yang, Yong-Qing Wang, Zheng-Kuan Deng, Guan-Hong Xie</author>
		<pdflink>http://ijaers.com/uploads/issue_files/6IJAERS-0420262-Research.pdf</pdflink>
                
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		<title>Research and Testing Results on the Ability of Certain Compounds to Reduce CS Gas Skin Irritation in Rabbits</title>
		<description>This study employs in vivo testing on rabbit
skin to evaluate the toxicity and detoxification efficacy of CS gas
(o-chlorobenzylidene malononitrile) based on the GHS 2025 standards (Globally
Harmonized System of Classification and Labelling of Chemicals, Eleventh
revised edition). Test samples were applied via direct dermal permeation to
monitor the progression of erythema and edema at fixed intervals of 24, 48, and
72 hours. The research combines experimental tear gas irritation models with
simple irritation tests to accurately determine safety profiles and injury
recovery capabilities. Results were determined through a standardized scoring
system, allowing for the classification of chemical hazard levels according to
international categories. The test samples demonstrated significant
effectiveness in reducing acute irritation symptoms caused by CS gas in rabbit
skin models. By monitoring erythema and edema indices, the irritation-reducing
active ingredients significantly shortened epithelial recovery time compared to
the control group. Observations at 24, 48, and 72 hours evidenced the ability
to soothe the skin, prevent widespread inflammation, and limit deep lesions
such as hyperkeratosis or alopecia. Comparison with GHS 2025 scales confirmed
that these test samples could lower irritation levels from Category 2 to
Category 3 or to a non-irritating status. This provides an important scientific
basis for confirming the practical application of these compounds in the safe
and effective treatment of lachrymatory agents. The research offers high
practical value by establishing a scientific and objective evaluation process
for irritation reduction in animal models. Strict application of the latest
international standards from GHS 2025 not only ensures accuracy in irritation
classification but also enhances the legal validity and reliability of testing
results in Vietnam. The efficacy of the test samples was clearly proven through
the rapid reduction of inflammatory reactions, erythema, and edema, opening
great prospects for developing specialized medical support products. This serves
as an important prerequisite for practical applications aimed at protecting
human health against potent irritants.</description>
		<link>http://ijaers.com/detail/research-and-testing-results-on-the-ability-of-certain-compounds-to-reduce-cs-gas-skin-irritation-in-rabbits/</link>
		<author>Le Duc Thien, Ho Minh Trung, Nguyen Manh Hieu, Nguyen Thi Phuong, Tran Van Cong, Le Thi Ha Trang</author>
		<pdflink>http://ijaers.com/uploads/issue_files/7IJAERS-0420264-Research.pdf</pdflink>
                
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		<title>Study of a small-scale system for water desalination and filtration: Reverse osmosis using renewable energy and physicochemical analysis of samples</title>
		<description>This article addresses
the study, development, and evaluation of a small-scale system for water
desalination and filtration, using reverse osmosis integrated with a renewable
hybrid energy system. The main objective of the research is to propose an efficient
and sustainable system for water treatment in areas facing water scarcity, with
a specific focus on the interior of the State of Sergipe, Brazil. The
methodology employed combines bibliographic research with experimental
research. Water samples were collected and analyzed from an artesian well
located in the municipality of Estância, between 2020 and 2022. Water quality
analyses were performed in a laboratory environment, before and after the
desalination process. The desalination system used employed a small-scale
reverse osmosis filter with a flow rate of 16 liters per hour. This water
processing system was integrated into a Hybrid Energy System (HES) that uses
photovoltaic solar and wind energy to operate the water pump, the cooling
system, and the reverse osmosis filter. Furthermore, the study included
modeling the energy production for the hydroelectric power plant, based on
historical wind speed and solar irradiance data from 1990 to 2020 in regions of
the State of Sergipe. The results of the water quality analyses demonstrated
the effectiveness of the desalination process. There was a considerable
reduction in chloride concentrations (from 50.13 mg/L to 3.71 mg/L) and sodium
(from 43.27 mg/L to 3.42 mg/L). The concentration of total dissolved solids
also decreased significantly (from 395.1 mg/L to 30.46 mg/L). Physicochemical
parameters such as total hardness (from 300 mg/L to 29.74 mg/L) and apparent
color (from 31.9 mg/L to 5.4 mg/L) showed drastic reductions and significant
improvement, respectively. The process did not alter the concentration of most
of the analyzed metals, sulfates, nitrites, and total selenium, with the
exception of manganese, which had its concentration reduced. The pH of the
water varied slightly from 7.84 to 6.00, but remained within the acceptable
limit for potability according to Brazilian legislation. Regarding the system&#039;s
energy demand, estimated at 57.6 kWh/month, the modeling demonstrated that the
average monthly photovoltaic energy production was sufficient to meet this
need. Wind energy production in the region was considered less viable due to
low production and high cost. In conclusion, the study validated the viability of
the desalination system under study, powered by renewable energy, as a
promising alternative to guarantee access to potable water in a sustainable way
in regions with water scarcity. The results in improving water quality and the
adequacy of renewable energy supply support the proposal.</description>
		<link>http://ijaers.com/detail/study-of-a-small-scale-system-for-water-desalination-and-filtration-reverse-osmosis-using-renewable-energy-and-physicochemical-analysis-of-samples/</link>
		<author>M. de O. Santos, R. A. Menezes Junior, M. M. da S. Sá, M. G. Nascimento, A. C. G. Fernandes, L. S. Gomes, M. da F. Santana, H. da S. Oliveira, L. C. M. Nascimento Júnior, P. C. de O. Queiroz</author>
		<pdflink>http://ijaers.com/uploads/issue_files/8IJAERS-0420266-Study.pdf</pdflink>
                
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		<title>The Decolonization of the Zone of Non-Being Through Language and the Case of the Question of Ethnic-Racial Relations in the Teaching of Brazilian Portuguese [BP]</title>
		<description>Attentive to the demands of the present time,
this qualitative, interpretative study aims to reflect on the decolonization of
the zone of non-being through language, taking as an example the issue of
ethnic-racial relations in the case of the teaching of Brazilian Portuguese
[BP] at this historical moment in which BRICS and the Global South emerge on
the horizon as means of dismantling the colonialities that sustain the old
world order with its abyssal line and its zone of non-being. This research is theoretically
anchored in Fanonian-inspired Decolonial Linguistics, also taking into account
the epistemologies of crossroads transplanted to these other shores of the
South Atlantic as a result of the slave trade sponsored by the European
colonial-mercantile enterprise, in addition to revisiting the discussion on
language, identity, citizenship, and nationality, carried out by Derrida in The
Monolingualism of the Other (1996). Thus, this reflective undertaking aims to
contribute to this alternative Linguistics that addresses the geopolitical
demands of the Global South, especially those related to a new linguistic
education capable of dealing with the issue of ethnic-racial relations
involving the dimension of language use in our decolonizing societies.</description>
		<link>http://ijaers.com/detail/the-decolonization-of-the-zone-of-non-being-through-language-and-the-case-of-the-question-of-ethnic-racial-relations-in-the-teaching-of-brazilian-portuguese-bp/</link>
		<author>Alex Pereira de Araújo</author>
		<pdflink>http://ijaers.com/uploads/issue_files/9IJAERS-04202610-The Decolonization.pdf</pdflink>
                
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		<title>Effect of Natural Dyes on Jute and Jute-Cotton Blended Fabrics: An Approach of Screen Printing</title>
		<description>The increasing demand for sustainable and non-toxic textile production has revived interest in natural dyes and biodegradable thickeners as eco-friendly alternatives to synthetic chemicals. This study presents the screen printing on jute-cotton blended fabric using three natural dyes such as turmeric (Curcuma longa), catechu (Acacia catechu), and manjistha (Rubia cordifolia) combined with natural thickener starch. The preliminary results reveal that catechu color performed well based on light fastness (grading 4 out of 5) properties compared to turmeric and manjistha. The rubbing fastness properties were found good in the Manjistha and catechu color applied printed fabric (grading 2-3) compared to turmeric. The GSM study of the catechu printed fabric shows the 35% dye uptake compared to raw jute-cotton blended fabric; 12.7 gm/m^2 was found in the unprinted fabric, whereas the printed fabric had 19.0 gm/m^2. The bursting strength of the raw jute-cotton blended fabric shows the average time frame 19.1 sec and within the average 400 KPa pressure, which is good enough according to the international standard value of bursting strength. The FTIR results showed that the reaction of the color with the raw fabric was at an extreme level. The most intense and complex spectrum was observed for the DP2 catechu sample (e), indicating the highest level of dye-fiber interaction. This is evident from the significant absorbance in the fingerprint region (900-600 cm^-1), where bending vibrations of aromatic and heterocyclic rings in the dye are usually recorded. The use of natural thickener (starch) maintained favorable properties, ensuring smooth screen printability and acceptable print definition.</description>
		<link>http://ijaers.com/detail/effect-of-natural-dyes-on-jute-and-jute-cotton-blended-fabrics-an-approach-of-screen-printing/</link>
		<author>Mir Akmam Noor Rashid, Shuranjan Sarkar, M. M. Alamgir Sayeed, Moslem Uddin, Ayesha Khatton</author>
		<pdflink>http://ijaers.com/uploads/issue_files/10IJAERS-0420265-Effectof.pdf</pdflink>
                
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		<title>Some Properties of Max-Min Composition</title>
		<description>This paper discusses several properties of
max-min composition, with particular emphasis on symmetry, max-min
transitivity, and inverse composition. Furthermore, the paper presents
mathematical proofs of these properties and verifies them through numerical
examples using a &amp;nbsp;order of
matrix.</description>
		<link>http://ijaers.com/detail/some-properties-of-max-min-composition/</link>
		<author>Kshetrimayum Mangijaobi Devi, T. Loidang Chanu</author>
		<pdflink>http://ijaers.com/uploads/issue_files/11IJAERS-0320262-Some.pdf</pdflink>
                
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		<title>Coastal Heritage Conservation Methods, a Visual-Based Pathological Assessment for Historic Masonry; A case study of Fort Williams</title>
		<description>Ghana&#039;s coastal forts and castles, including Fort Williams, suffer from severe decay due to marine exposure, rising damp, salt crystallization, biological growth, and past improper repairs. Systematic, low-cost diagnostic methods are needed for resource-limited heritage contexts. To diagnose the principal deterioration mechanisms of Fort Williams using a non-invasive visual assessment aligned with ICOMOS standards, and to propose a phased, evidence-based conservation framework. A four-phase visual protocol was applied: (1) systematic photographic survey, (2) pathology taxonomy and causal analysis, (3) intervention design guided by conservation ethics, and (4) monitoring plan. Deterioration types were recorded across all architectural spaces. The key mechanism is a self-reinforcing cycle: capillary rise, rain, and sea spray introduce moisture that dissolves salts; evaporation causes sub-florescence, generating crystallization pressure that cracks bricks and mortars, allowing more moisture ingress. Persistent dampness also supports algae, fungi, and moss, which retain further moisture. The most severe decay occurs at wall bases and in areas with poor ventilation or roof leaks. Interrupting moisture sources is the only way to break the deterioration loop. A phased intervention is proposed: (1) source control and monitoring (0-12 months), (2) desalination and biological cleaning (12-24 months), (3) lime mortar reinstatement and brick replacement (24-48 months), and (4) perpetual maintenance. Systematic visual assessment alone can produce robust conservation decisions, offering a replicable model for other coastal forts in Ghana and similar tropical environments. Future work must include laboratory salt analysis, long-term monitoring, and socio-economic integration.</description>
		<link>http://ijaers.com/detail/coastal-heritage-conservation-methods-a-visual-based-pathological-assessment-for-historic-masonry-a-case-study-of-fort-williams/</link>
		<author>Cephas Teyie, Han Weicheng</author>
		<pdflink>http://ijaers.com/uploads/issue_files/12IJAERS-0420269-Coastal.pdf</pdflink>
                
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		<title>Prediction of Heat Transfer Performance of Finned Tubes Using CFD and Random Forest</title>
		<description>To address the issues of high computational cost, long
calculation time, and complex parameter coupling in predicting the heat
transfer performance of finned structures, this study takes a typical finned
heat exchanger as the research object and adopts a combined approach of
numerical simulation and data-driven modeling. First, a three-dimensional model
of the finned structure is established based on the CFD method, and the heat
transfer performance under different structural parameters and operating conditions
is simulated to obtain a dataset. On this basis, a random forest algorithm is
introduced to develop a predictive model, in which geometric parameters and
operating conditions are used as input variables, and the heat transfer
coefficient is taken as the output target. By comparing the simulation results
with the predicted results, the effectiveness of the random forest model is
validated. The results indicate that the proposed method can significantly
reduce computational time while maintaining prediction accuracy, providing a
feasible approach for the optimal design of finned heat exchanger structures.</description>
		<link>http://ijaers.com/detail/prediction-of-heat-transfer-performance-of-finned-tubes-using-cfd-and-random-forest/</link>
		<author>Hong-Rui Yang, Yan-Zuo Chang, Yong-Sen Huang, Zi-Rui He, Wen-Min Wen, Yong-Qing Wang, Yu-Xuan Chen, Kai-Ming Chen, Jie-Zhen Yang, Guan-Hong Xie</author>
		<pdflink>http://ijaers.com/uploads/issue_files/13IJAERS-0420268-Prediction.pdf</pdflink>
                
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		<title>Investigation of Optical Gain Characteristics in GaInP/AlGaInP Nanoscale Heterostructures for Visible Light Emitters</title>
		<description>This paper presents the design and optical gain analysis of a Ga0.45In0.55P/AlGaInP nanoscale quantum well heterostructure for visible-light-emitting applications. The proposed structure consists of a 4 nm GaInP quantum well and 10 nm AlGaInP barrier layers grown on a GaAs substrate. The electronic band structure and carrier wave functions are analyzed using the k.p method to investigate carrier confinement and optical transition characteristics. The results confirm the formation of a type-I heterostructure, providing efficient confinement of electrons and holes within the active region. The optical gain spectrum exhibits a peak gain of approximately 4850 cm^-1 at 625 nm (1.985 eV), corresponding to the red region of the visible spectrum. The enhanced gain is attributed to strong quantum confinement and improved electron-hole recombination within the quantum well. The obtained results demonstrate the potential of the proposed GaInP/AlGaInP heterostructure for high-efficiency visible-light emitters, semiconductor lasers, and integrated photonic devices.</description>
		<link>http://ijaers.com/detail/investigation-of-optical-gain-characteristics-in-gainp-algainp-nanoscale-heterostructures-for-visible-light-emitters/</link>
		<author>Jayprakash Vijay, Divya Bhardwaj</author>
		<pdflink>http://ijaers.com/uploads/issue_files/14IJAERS-03202699-Investigation.pdf</pdflink>
                
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