FUOYE Journal of Engineering and Technology (FUOYEJET - Federal University Oye-Ekiti)
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Token Validation in Automatic Corpus Gathering for Yorùbá Language
Recent methodologies in machine translation depend on the availability of large language corpora. The web being the repository for text and other multimedia content becomes a viable source for such data. However, there is need for text cleaning, as a pre-processing step, since foreign words are inevitably part of the harvested text. Dictionary lookup approach can be adopted for languages with comprehensive lexicon while manual cleaning approach is applied in other cases. Developing a full-coverage lexicon for Yoruba language is a cumbersome task due to the fact that new words can be formed as a result of elision, assimilation and contraction. In this paper, the morphology of Yorùbá language was studied and modelled as a Finite State Machine which accepts a word and returns true if the goal state is reached and false otherwise. The FSM model was implemented in Java. A Yorùbá dictionary containing 10,443 distinct words in their base form (i.e. without diacritics) and English dictionary with 64,150 distinct words were parsed through the finite state machine. In addition, 58 web pages sourced from the internet were subjected to classification by the system. Classification of entries from the Yoruba dictionary as valid Yoruba words gave 99.99% accuracy while the classification of entries from the English dictionary as Non-Yoruba words gave 94.07% accuracy. Also, using the threshold of 90% valid Yoruba words in a webpage, all 58 webpages were correctly classified. Result obtained revealed that the approach can reliably be applied in automatic harvesting of Yoruba monolingual corpus from the internet
Development of a Manually Operated Hydraulic Press and Pull
A hydraulic press and pull machine comprising of a frame, cylinder and piston, two threaded studs, hydraulic pump and hose, pulling clamp and a workpiece support was designed, fabricated and evaluated. The machine is manually operated. The maximum shear force, maximum bending moment and maximum displacement of the machine workpiece support were determined as 74.9491N, 16.6335N-m and 4.367e3mm for a simulated load of 1000N. Maximum axial, bending and torsional stresses were also determined as 0.00359, 701998 and 0.00653N/m2 respectively. performance of the developed machine was determined using seven bearings of bore diameters 24, 30, 40, 50, 65, 80 and 100mm respectively, fitted into seven corresponding shafts with shaft deviation of ±0.001mm and dismantled afterwards using three different methods: traditional hammering, the developed manual hydraulic press and pull machine and already existing electrically powered hydraulic press. The results of the experiments showed that traditional hammering is the most time consuming method of mounting and dismounting force fits, followed by the use of the developed press-pull machine while electrically powered hydraulic presses are the fastest.The machine which was fabricated with local materials will reduce the time and stress associated with installation and removal of bearings, and other forms of force fits in machine assemblies. Hence, leading to an overall improvement in the standard of machines/equipment fabricated in Nigeri
Crack Mechanism of Different Concrete Grades under Compressive Loading: Application in Rigid Pavement
The growth of cracks in concretes under different loadings in various structures and their consequent diminishing effect on the lifespan of structures is an age long structural problem. This research investigates the influence of compressive loading on the crack mechanism of different concrete grades 1: 1 : 3 (M20), 1: 2: 4 (M15) and 1: 3: 6 (M10) using three brands of cements available in Nigeria namely Dangote (Type A), Elephant (Type B) and Bua (Type C). Particle Size Distribution (PSD), Aggregate Crushing Value (ACV), Aggregate Impact Value (AIV) was carried out on aggregates in accordance with relevant codes while; compressive test were performed on the hardened concrete while, the crack width was measured using microscopic technique. A Coefficient of uniformity (Cu) of 4.00, AIV of 46 % and an ACV of 47.7 % were obtained for the aggregate which are suitable for rigid pavements construction. Maximum compressive strength value of 24.96 N/mm2, 24.67 N/mm2 and 24.89 N/mm2 respectively was obtained for concrete M20 for Type A, Type B and Type C cement at the 28 day. A corresponding crack width of 0.97 mm, 0.89 mm and 0.93 mm was obtained while; a yield period of 57.66 sec, 58.33 sec and 53.33 was obtained respectively. Comparing with the International Organization for Standardization, concrete grade M20 any of the cement types is suitable for the construction of rigid pavements with heavy traffic volume while M15 is recommended for low traffic volume
Laminar Forced Convective Heat Transfer and Fluid Flow in a Finned Cylindrical Annulus
The purpose of this paper is to numerically investigate the effects of some geometric parameters and flow variables on heat transfer augmentation in annuli with equi-spaced internal longitudinal fins along the external walls. A fully developed flow and a constant thermal boundary condition of uniform heat flux at the walls of the pipe were assumed. Continuity, momentum and energy transport equations were adopted for the solutions of the problem. A Q-BASIC code was written based on the finite difference scheme generated. Numerical experiments were conducted to ascertain the effects of Reynolds number Re, radius ratio, R.R, Prandtl number Pr, fin height H, and pipe inclination, on the rate of heat transfer and fluid flow. The results obtained show that for 50 ≤ Re ≤ 500, total Nusselt number NuT increases with increase in Re while for Re > 500, there was no significant increase in NuT. Nusselt number, average velocity and bulk temperature of the fluid increase with increasingin the range 0° ≤ ≤ 75° but for the range 75°≤ ≤ 90° the effect is negligible. For R.R > 0.6, the heat transfer was observed to be almost independent of R; therefore for economic purposes, heat exchangers similar to the configuration studied should be run at a low pumping power. A numerical study was done to validate the program by test running it for the finless annuli for similar boundary conditions; the results obtained in the present work show the same trend as that of Kakac and Yucel
Estimation of serpentinite rock mass strength of Placetas - Cuba underground gold mine deposit
This study estimated the strength of the serpentinite rock mass of the underground gold mine “Oro Descanso” Placetas, Cuba. The rock mass was classified into its lithological group of massive, sheared serpentinite rocks and gabbros. The geo-technical information from the well log data obtained during drilling process (geological logs). The structural analysis was carried out through field observation and quantified by Geological Strength Index (GSI) of average values for massive serpentinite 60, sheared serpentinite 38 and gabbros 78. The generalized Hoek-Brown criterion with software programme, Rocklab 1.0, 2004 version was employed for the analysis and the determination of the rock mass local compressive strength (massive serpentinite = 1.733Mpa; sheared serpentinite = 0.464Mpa; gabbros = 10.354Mpa) and the global strength (massive serpentinite = 6.561Mpa, sheared serpentinite = 5.657Mpa and gabbros = 22.547Mpa). These estimated values characterize brittle type of failure mode and thus supports are recommended
A Review of the state-of-the-art Ubiquitous Multimedia Sensor Networks
The recent rise in the demand to incorporate multimedia contents such as audio/video and still images over Wireless Sensor Networks (WSNs) has led to the development of Wireless Multimedia Sensor Networks (WMSNs). Thus several new applications have arisen such as e-Health, environmental monitoring, video surveillance, automated transport systems, traffic control, smart cities and smart grids, home automation etc. The International Telecommunications Unit (ITU) recommendation Section for Ubiquitous Sensor Network (USN) presents the requirements for a platform to numerous number of life services and applications. This envisions a system that will connect all devices on the network ubiquitously with collaborative efforts of many small wireless multimedia and scalar sensors to heterogeneously provide a smart web. This requirement has thrown several new challenges to wireless sensor networks. In this paper, we have given a comprehensive discussion of the Wireless Multimedia Sensor Network (WMSNs) and Ubiquitous Sensor Networks (USNs) architectures and outlined their design challenges. The paper will give the reader a clear view of the researches that are ongoing in multimedia systems ubiquitous sensor networks, and shed the light on the current challenges and future trends. We also hope it will foster discussions and new research ideas among its researcher
Design of an Automatic Window Using a PIC Microcontroller and Stepper Motor
In this paper, the design of an automatic window is presented. The proposed window closes and opens automatically during and after a rainfall. The automatic system was developed with a focus on hospitals in order to allow medical staff and other supporting staff to concentrate on their primary responsibilities of taking care of patients. The system design includes a PIC16F877A microcontroller which gets activated when a moisture detector sensor sends a high logic signal to it. The microcontroller executes its embedded program by activating the stepper motor through a ULN2003 current-dependent integrated circuit (IC) chip resulting in stepwise control of the window. Hence, the window is automatically closed when rainfall is detected but opens and remains open when no rain is detected. We intend to extend our design to automatic opening and closing of the windows at others times in addition to during and after rainfall; for instance, window opening and closing every day at specific times in the morning and evening respectively
Thermal Performance of Improved Charcoal Stove as A Clean Development Mechanism Project – A Case Study of Bauchi
Improved cook stoves (ICS) are known to ensure efficiency in the use of traditional fuels, reduce smoke emission and associated health hazards during cooking and reduce cooking time. Another benefit of ICS is in mitigating the effects of climate change. This paper presents the thermal performance and achievable emission reductions by ICS for daily cooking in households aroundBauchi.It evaluatesan ICS using the International Workshop Agreement (IWA) which rates cook stoves on four indicators (Indoor emission, total emission, efficiency/fuel use and safety) each indicator is rated along five tiers (0: lowest performing to 4: highest performing).The evaluation focused on efficiency/fuel use. The benchmark values for thermal efficiency, fuel use and energy use are 35%, 0.310kg and 7928kJ.This shows that the ICS offers modest improvements in fuel use and it is rated as a tier 3 ICS. A carbon savings of can be achieved on an annual basis assuming all rural and urban households in Bauchi employ ICS for their daily cooking
Review of Technical Approaches to Face Recognition with Varying Pose and Illumination in Unconstrained Scenes
Difficulties inherent in human face recognition from unconstrained and motion characterized scenes are usually accounted for due to varying illumination and pose of subjects in the scenes. However, a number of technical approaches have been developed to manage these nuisance factors to make recognition possible and optimal. In this paper, a review of some technical approaches to face recognition challenged with varying illumination and pose is conducted. The logical soundness of each approach and limitations are investigated while a basis for a unified, more efficient and technically optimal approach is established
Optimisation of Media Components using Central Composite Design for Increased Citric Acid production from Yam Peels using Aspergillus niger
In this study, design of experiment (DOE) for response surface methodology (RSM) was used to analyse and optimise the compositions of the nutrient medium (calcium ion, peptone, ethanol and manganese ion) for citric acid production from yam peels via solid state fermentation (SSF) using Aspergillus niger. A four variable, central composite design (CCD) was used to develop a statistical model for the process while RSM was used to optimise it. The results obtained showed that the model was statistically significant (p<0.0001) and displayed a good fit with the experimental observations (R2 = 0.997). Citric acid production was significant at high levels of ethanol and calcium while the reverse was the case for manganese and peptone. The optimum values of ethanol, manganese, calcium and peptone were 7.0% v/v, 1.0 g/l, 0.1 g/l and 0.1 g/l respectively. Under these conditions, the citric acid concentration was obtained as 66 g/l. Validation of the statistical model showed an insignificant difference between experimental and model predicted results