International Journal of Innovations in Science & Technology
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813 research outputs found
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Evaluating Focal Mechanism of September 24,2013 Awaran Earthquake With Geospatial Techniques
Seismic records from IRIS (NIL, KBL, MSEY, KMI, QIZ, DGAR) were used to compute AWARAN September 24 2013 Earthquake\u27s focal mechanism. Earthquakes are one of the most drastic threats that are likely to cause heavy human casualties and can destroy entire cities within minutes. We processed the waveform data from 6 separate stations for the computation of displacement. The issues related to attenuation have been overcome by the use of low frequencies (0.05-0.1). The crustacean model that determines the tensor PREM model\u27s time is determined by minimizing the variance but produces a robust focal mechanism. Inverting the displacement data is applied to recover the moment tensor from the source, calculated the green feature with the reversal. GIS-based vectors of fault lines were abstracted by the digitization of regional tectonic lineaments and structural maps. We developed synthetic and observed surface shapes with a 100 percent dc correlation. Our understanding of the features of crustacean deformation and regional tectonics in the area will benefit from the resulting focus mechanisms. The measured earthquake focal mechanism is similar to a USGS agency hit, dip, and rake.
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Assessment of Service Quality And Efficiency of Bus Rapid Transit System
Transportation is an indistinguishable component of any society. Provision of luxury transportation at favorable rates to general public is the need of the day for societal comfort. Research has been done to assess the service and efficiency level of(Bus Rapid Transit)BRT system by evaluating initial parameters including passenger’s attitudes towards quality, safety, security, and service provided by Metro bus Lahore as well as identifying problems encountered by passengers. In Pakistan, local transportation play significant role for travelers to commute whereas the vast transportation system of Lahore and construction of Metro Bus Transit System with consideration to balance demands of traffic has provided safer, economical and secure public transport system to the people. This research has been carried out from Shahdara to Gujjumata. The questionnaire-based survey was conducted. which was comprised of questions according to problems, needs of passengers and indicators which were set to identify the service quality of Metro Bus. It is revealed from analysis that majority of people are satisfied from service quality, punctuality, accessibility and efficiency provided by BRT system. It is also observed that this service is user-friendly for physically impaired persons. Dissatisfaction level was also observed on low seating capacity in buses, security, safety of users on board. This research suggests concerned authority to improve, enhance current passenger services and provide better services so that current users can enjoy services and attract new passengers to use Metro bus as well as imply international best practices in Pakistan urban transport.
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Appraisal of Spatiotemporal Variations in Snow Cover Dynamics using Geospatial Techniques: A paradigm from Gilgit-Baltistan, Pakistan
Snow and glaciers in the mountain ranges of Hindu-Kush, Karakoram, and Himalayas (HKH), are supposed to be shrinking. Consequently, serious significances occur in respect of water accessibility for inhabitants of down streams. This investigation is an effort o identify the temporal variation in snow covers of Gilgit Baltistan (GB), northern Pakistan. For the calculation of the Normalized Difference Snow Index (NDSI) and estimation of snow-covered area (SCA), MODIS images for the period of 2000 to 2020 were used. Hunza, Astore, Gilgit, Diamir, Shyok, Ghanche, Skardu and Shigar are major sub-basins lying in GB with Hunza and Skardu being the mostly glaciated areas. Annual fluctuation in snow cover within GB was 10 to 80%. In accumulation season, from December to February, snow cover was almost 80% while in melting season, from July to September this area was reduced to 65-75%. The maximum and minimum Snow-Covered Area (SCA) detected in 2009 was almost 57687.85 km2 and 12083.40 km2 respectively. These results show fluctuations in SCA within the time duration of the last two decades.
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Active Surface deformation from DEM Based Surface Dynamics in Upstream of Mangla Reservoir and eastern Potwar Plateau
Digital Elevation Model (DEM) acquired by Shutter Radar Topographic Mission (SRTM) is useful to compute Surface Dynamics (SDs) including, Drainage Density (DD), Topographic Relative Relief (TRR), Iso Base-Levels (IBL) and Topographic Vertical Dissection (TVD). It provides detailed information about the lithology based on erosional boundaries as well as delineation of active tectonic scarps. It confers a well-built connection among diverse stream Strahler ordering and the localized erosive or neotectonics conditions in an actively deforming topography. These techniques are rapid, proficient, and consistent to demarcate tectonic control even along or over the similar lithologies. This investigation appraises the eroding and uplifting landforms along upstream of Mangla reservoir in lower Jhelum valley. The aim is to delineate margins for lithological demarcation and to distinguish whether these are affected by neotectonics or not. We noticed unusual localbase-level inconsistency that may be related to the well-known active tectonic expressions.
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Investigation of Surface Deformation in Lower Jehlum Valley and Eastern Potwar using SRTM DEM
This study describes the surface deformation in lower Jehlum and eastern Potwar using remotely sensed Shutter Radar Topographic Mission (SRTM) Digital Elevation Model (DEM) to identify regional uplift rates. Mapping of active surface deformations help to predict seismic hazards. DEMs are the fundamental input factors that identify the surface geometry and its belongings. These belongings include stream offset, elevation, and slope breaks within a contributing area. This study provides an evidence of tectonic activity and its impact on regional drainage network using SRTM DEM. Various indices including concavity and steepness were computed using power law in steady state conditions. We prepared the drainage network map of the study site showing uplift rates in mm/year. The deflection in stream network proves the existence of active fault in this region which controls the local drainage network. The results prove the relative uplift along Main Boundary Thurst (MBT) and the impact of active tectonic on evolving young organs.
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Monitoring the Spatial Structure of Land Values in Lahore Metropolitan Area
Spatio-temporal variations in assessment of land values play a vital role in better urban planning and policy making. This study focuses on spatial structures of land values in Lahore metropolitan area by using different spatial and statistical techniques. The comparative analysis of land values for the years 2012 & 2018 is generated which is useful for planners, investors, and policy makers. The research is descriptive but explanatory in nature to show correlation between independent variables (real land values) and dependent variables (interpolated land values). The interpolation techniques which have the highest correlation coefficient, were used further processing. The inter category shift based on interpolation maps for comparison shows categorical shift which is useful for investors in future. The results indicate that the land values are higher in Central Business District and Gulberg Zone because of highly active business zone which increases the demand of the land which is ultimately increasing the value of land in Lahore metropolitan area.
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Synthesis of NiO/ZnO Nanoparticles using 2 Propanol Solvent and their Applications for Methylene Blue Degradation
The nanoparticles play a significant role in fabrication process which are used at large scale in various fields e.g., sensors, electronics drug delivery, optics, catalysis and in water purification process. Nanoparticles (NiO/ZnO) were synthesized using solgel technique. In this method, 2-propanol was taken to analyze the particle size. Fourier Transform Infrared Spectroscopy (FT-IR) confirmed the presence of ZnO/NiO. Ultraviolet Visible (UV) data recorded a band gap for ZnO that was 4.1 eV while UV spectrum of methylene blue demonstrated a decrease in concentration of methylene blue while using NiO/ ZnO as catalyst.
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Generation of Digital Surface Model (DSM) USING UAV/ QUADCOPTER
Satellite imageries are being used as primary source of information due to their vast coverage and high temporal resolution. Unnamed Aerial Vehicle (UAV) is being used these days because of its accuracy, autonomous flights, cost effectiveness and rapid overview of data. UAV provides a fully or partially autonomous image acquiring platform which is devoid of any manned flight controller. In this research Phantom 3 advanced Quadcopter was used for an image acquisition plan for generation of Digital Surface Model (DSM). Two designs were drawn through this workflow for the reconstruction of Department of Space Science and technology in university of Punjab. For the first design 3D quadcopter is hovered at the height of 120 feet (37 meters) which covered an area of 83 x 130 meter, frontal and sidewise overlapping is 80%, and the camera is kept at an angle of 70° for the double grid type pattern. For second mission design a circular flight is taken to obtain images at the height of 27meters with coverage area of (107 x 106) meter, 45° camera angle and 10° circular angle. For reconstruction of urban area, quadcopter is hovered at relatively greater height of 210 feet (64 meters), following the double grid pattern. In order to attain desired GST, the camera is flown at a constant height over the Area of Interest (AOI). The highly overlapped images obtained using Phantom 3, advanced Quadcopter are then processed using Pix4d software for processing of images. Initially, the common points of adjacent images are matched automatically. After matching similar points, additional geographic information of coordinates and z-value of elevation associated with it is generated in 3D space by sparse point cloud. Then a detailed 3D model along the precise geo location is obtained using dense point cloud. A study surface area and its texture are generated using 3D mesh. Finally, a desired 3D surface model is accurately generated containing desired AOI. The results are analyzed using UAV imagery to generate high resolution DSM. DSM for construction of urban area of Department of Space Science was generated at a very high resolution of 3.55cm and 1.8cm respectively. The accuracy of geo locations can be improved by using GPS loggers or by taking the GCPs. It is suggested by many authors that 3D surface model of reconstruction of building is quite accurate geographically and geometrically, after the comparison of bundle block adjustments, Ground Sampling Distance (GSD) value, 3D matching and average point cloud density of DSM. Thus, the 3D surface models are used in parameters, features extraction and estimation of values including depth and elevation values, in texturing, 3D data collection for 3D visualizations, 3D roof tops and building facades and contour maps and orthodox photos.
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Hazardous Effluents and their Impacts on Human Health: Future of Industrial Boom
Industries, being commercial productive units perform as manufacturing agents to produce large quantity of goods to cater the needs of increasing population. Manufacturing units use raw material and goods to deliver the final product. The findings of this research are consistent and reliable. The study area mainly consists of three types of industries including iron and steel, chemical and fertilizer and plastic industry. The hazardous waste generated by industries in Pakistan was computed as 1 lac tons per day and more than 10 thousand tons/day in Lahore. These wastes played a vital role in the degradation of environment. In addition, various harmful gases such as fluoride, carbon monoxide and dust were released by these industries which mixed with fog and caused smog that resulted in respiratory diseases and the Lahore remained in smog for last 3 years. The air quality declined to alarming level because of the dust produced by these industries. Air pollution leads to skin problems, and respiratory diseases among residents living in outskirts of these industries. In this research it is estimated that industrial emission is more dangerous than any other emissions. From the year 2008 to 2019 the harmful emissions were categorized as 43% by transport sector, 25% by industries, 20% by agricultural sector and 22% by power sector. Proper planning and management is required to secure the safety of environment from the adverse effects of industries.
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Remote Sensing Evaluation of Neotectonics in Potwar Plateau Lesser Himalyas Pakistan
The Potwar plateau was developed in subduction zone of lower Himalayan fold and thrust in the North West region. This study identifies topographic deformation and neotectonics activity using Digital Evaluation Model (DEM). The SRTM DEM having resolution of 90 m analyzes active tectonics in local drainage network. Standard algorithms and geomorphic indices are used to extract isobase maps, concavity, steepness and relative rates of uplift. The steepness index indicates the elevation of Potwar region. The variable rates of uplift, indicates surface deformation in different regions of Potwar plateau. Isobase maps indicate lithological distinctions and structures under the influence of neotectonics using geological maps. Landsat satellite imagery was used to indicate neotectonics activity over the spatial drainage network and streams corresponding to the longitudinal river profile analysis