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Authors:Saifullah Khalid, Anoop Kumar Pages: 1 - 7 Abstract: Ground and aerial movements may be restricted at an airport due to limited visibility caused by fog. Both of these could result in poorer throughput because of the safety considerations associated with tasks that have low visibility. As a result of the vastly increased number of aircraft that are now capable of landing and taking off in situations with extremely low surface visibility, the ultimate capacity limit may on occasion assure the safety of aircraft ground movement. Within the scope of this essay, a suggestion will be made on the development of a model. The usage of unmanned aerial vehicles (UAVs) will be attempted to control or eliminate fog to improve visibility. This will be done by disseminating sufficient material to absorb the moisture and gather the water droplets from the sky. PubDate: 2023-05-15 Issue No:Vol. 13, No. 1 (2023)
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Authors:Rucha D. Bhosale, Krishna T. Madrewar Pages: 8 - 15 Abstract: To increase handling and overall efficiency, the automobile industry is currently concentrating on the creation of lightweight vehicles. Vehicle weight must be reduced since large vehicles emit more hazardous gases like CO2 and SO2, which contribute to global warming. To find environmentally friendly lightweight vehicle alternatives, a lot of research is being done. Compressed air can be used as a power source for cars as one such alternative. The purpose of this study is to review the literature on compressed air technology, including any potential benefits and drawbacks for light-weight cars PubDate: 2023-09-21 DOI: 10.37591/.v13i1.1442 Issue No:Vol. 13, No. 1 (2023)
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Authors:R. Kasi Raman, S. Venkatesh, V. P. Varrun Neshanth Pages: 16 - 22 Abstract: This study presents an investigation on the performance characteristics of a hydraulic wind turbine with a variable accumulator. The aim of this research is to assess the feasibility and efficiency of utilizing hydraulic systems in wind energy conversion. The hydraulic wind turbine employs a variable accumulator, which allows for energy storage and regulation. By varying the accumulator’'s pressure and volume, the turbine’'s performance can be optimized to match the varying wind conditions. This approach offers the potential for increased energy capture and improved operational flexibility compared withto traditional wind turbines. In this investigation, a comprehensive mathematical model is developed to simulate the hydraulic wind turbine system. The model incorporates the turbine’'s aerodynamic behaviorbehavior, hydraulic components, and control strategies. Simulations are performed to evaluate the system’'s performance under various wind speeds and load conditions. PubDate: 2023-09-21 Issue No:Vol. 13, No. 1 (2023)
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Authors:Vinita Sahu, Khilesh Turkar, Mayank Verma, Sushant Banjare Pages: 23 - 36 Abstract: The topic of path, trajectory, and deviation calculators for bullets is of great importance in the field of ballistics and marksmanship. Accurately estimating the flight of a bullet and its deviation from the intended target is crucial for marksmen and ballistics enthusiasts. This thesis aims to design and implement a calculator that considers various factors that influence the flight of a bullet, such as its initial velocity, air resistance, gravitational pull, wind speed and direction, and the characteristics of the firearm and ammunition used. The results provided by the calculator will allow the user to estimate the path, trajectory, and deviation of a bullet and make necessary adjustments to ensure accuracy. This introduction sets the stage for the thesis and highlights the importance of the topic for marksmen and ballistics enthusiasts. With the help of this in future, we can accurately hit the target without any problem. Wwe can achiveachieve our target easily, and this will help to find the a solution recardingregarding the various environmental desputedispute. PubDate: 2023-09-21 Issue No:Vol. 13, No. 1 (2023)
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Authors:Devesh Bendale, Dhruva Bhutekar, Prasad Chaudhari, Gaurav Jadhav, Avinash Chavhan, Shishupal Yelgatte Pages: 37 - 43 Abstract: Robotics will be used in this project to control a machine-centric robot for a specific procedure, and an HMI screen will be created for the robot. This robot is specifically made for industrial pick-and-place operations. The desired application is operated by a four-axis delta robot. It has three drives and six motors, and when the drives and motors are coordinated, the manipulator moves in a robotically appropriate manner. The operator can instruct the robot both automatically and manually by employing the HMI. This machine will be utilisedutilized to pick up the item from a specific location and place it where it is needed. The project’'s goals are to comprehend a robot’'s mechanical construction as well as its characteristics, requirements, electrical system, and sensors. Studying communication networks and applications can help you comprehend how sensors and robot motion are synced. The primary task of the project will be to programme a robot in a user-friendly manner using technology in accordance with the designated application. Finally, developing and configuring the HMI screen for the robot. Testing and debugging the robotic model using third-party software, where the full robot can be remotely replicated, the programme is accessible, and the working of the robot can be examined. PubDate: 2023-09-21 Issue No:Vol. 13, No. 1 (2023)