386 research outputs found

    Supersonic Flutter of Laminated Curved Panels

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    Supersonic flutter analysis of laminated composite curved panels is investigated using doubly-curved, quadrilateral, shear flexible, shell element based on field-consistency approach. The formulation includes transverse shear deformation, in-plane and rotary inertias. The aerodynamic force is evaluated using two-dimensional static aerodynamic approximation for high supersonic flow. Initially, the model developed here is verified for the flutter analysis of flat plates. Numerical results are presented for isotropic, orthotropic and laminated anisotropic curved panels. A detailed parametric study is carried out to observe the effects of aspect and thickness ratios, number of layers, lamination scheme, and boundary conditions on flutter boundary

    Theoretical & Experimental Studies on Vibration & Damping of Fibre-Reinforced Cantilever Laminates.

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    In this paper, vibration and damping analyses  of glass fibre-reinforced laminated composite cantilever beams and plates are studied using C1 finite element using shear deformation theory and alsothrough experiments. The formulation in the theoretical model includes in-plane and rotary inertiaterms. The governing equations for the complex eigenvalue problem based on complex elastic moduliare formulated. The solutions are obtained using QR algorithm. Parametric study is carried out tohighlight; the effects of lay-up and ply-angle of the laminates. A limited number of experimentalinvestigafions on cantilever laminates are conducted for obtaining the natural frequenciqs, dampingfactor and frequency responses. The comparison between the theoretical and the experimfntal resultsshows good agreement

    An AI framework for Change Analysis and Forecast Modelling of Temporal Series of Satellite Images

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    The study focuses on change analysis and predicting future LULC map of capital city of Karnataka state, India. The chosen study area is more prone to urbanisation and greatly affected by population in recent years. Spatial-temporal data from 1989-2019 are considered. LULC classes comprise of Water bodies, Urban, Forest, Vegetation and Openland. An optimal LULC maps from 1989 to 2019 obtained by deep neural network technique are used to perform change analysis which would mainly give the change LULC map with number and percentage of change pixels. According to the analysis performed major change as environmental affecting factor was noticed between 2009 and 2019 where in urban with the area of 189.3861 sq. km remain unchanged and noticeable transitions from other LULC classes to urban. Later, time series classification was performed using Cellular Automata, Cellular Automata-Neural Networks, techniques to predict the LULC map of 2024. Among these CA-NN outperformed with an average kappa coefficient of 0.83. Also, this was validated with projected LULC map of 2024 provided by USGS

    Management of lateral end clavicle fractures-using lateral clavicle locking plate: a prospective study

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    Background: Lateral end clavicle fractures are one of the common upper limb fractures. They constitute 21–28% of all clavicle fractures. Of these 10–52% is displaced fractures. The management of fractures of lateral end clavicle remains debated and challenging. The objectivbe of this study is to evaluate the functional outcome following surgical treatment of unstable/displaced (Neer type II lateral clavicle fractures, and acromio-clavicular joint dislocations Rockwood grade III to V) lateral end clavicle fractures using lateral clavicle locking plate.Methods: It is a prospective study conducted in the orthopaedics department of GSL Medical College and General Hospital for a period of 3 years (April 2016 to March 2019) among a total of 60 patients.Results: About 23 (38.3%) belonged to 41–50 years age group, followed by 16 (26.7%) to 31–40 years age group and 13 (21.7%) to >51 years age group and 8 (13.3%) to 18–30 years age group. The time from trauma to surgery ranged from 0-15 days with a mean of 5 days and the mean operating time was 41 minutes ranging between 23-70 minutes. Mean duration to union was 13.33±2.126 weeks and the mean Constant Murley score was 88.56. Functional outcome at 6 months follow up was excellent in 8 (13.3%), good in 37 (61.7%), fair in 13 (21.7%) and poor in 2 (3.3%) patients.Conclusions: Although there is no consensus as to a “gold standard” fixation method for unstable distal clavicle fractures, satisfactory outcomes could be obtained using the lateral clavicle locking plate resulting in sufficient stabilization and good functional outcome

    Chemotherapy of malaria IV. Synthesis of 4-(Guanidylphenylamino) quinolines

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    Penetration of Projectiles in Composite Laminates

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    This paper deals with the prediction of the penetration phenomenon of a cylindro-conical impactor on the ke;labepoxy-laminated composites using C eight-nded serendipity q&drilateral finite elementbased on first-order shear deformation theory (FSDT). Local as well as global deformations during impact is considered in the evaluation of indentation, penetration, and perforation phases. Local strainsduring impact have been evaluated using the hypothesis made from the available experimental observations of bulging during penetration. A detailed parametric study, considering various projectilesand target plate variables, has been carried out to find their effect on the response of the plate, and ballistic parameters, such as ballistic limit and absorbed energy

    Chemotherapy of bacterial infections. Part VIII. Synthesis of carboxylic acid derivatives of 2-sulphanilamidothiazole

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    FLUKA Monte Carlo for Basic Dosimetric Studies of Dual Energy Medical Linear Accelerator

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    General purpose Monte Carlo code for simulation of particle transport is used to study the basic dosimetric parameters like percentage depth dose and dose profiles and compared with the experimental measurements from commercial dual energy medical linear accelerator. Varian Clinac iX medical linear accelerator with dual energy photon beams (6 and 15 MV) is simulated using FLUKA. FLAIR is used to visualize and edit the geometry. Experimental measurements are taken for 100 cm source-to-surface (SSD) in 50 × 50 × 50 cm3 PTW water phantom using 0.12 cc cylindrical ionization chamber. Percentage depth dose for standard square field sizes and dose profiles for various depths are studied in detail. The analysis was carried out using ROOT (a DATA analysis frame work developed at CERN) system. Simulation result shows good agreement in percentage depth dose and beam profiles with the experimental measurements for Varian Clinac iX dual energy medical linear accelerator
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