Author:
Lobitos Orvin A.,Oliva Khenea D.,Doria Ruffa Mae A.,Porquillo Mavel Kate C.
Abstract
Fans are the most popular products despite the broad accessibility to air conditioners and coolers. There's a chance that using air conditioners more frequently to cool indoor areas will be a major contributor to greenhouse gas emissions worldwide. Using home fans to move indoor air can increase the temperature at which air conditionin g must be turned on to keep building occupants comfortable (Malik et al, 2022). Household fans are a great way of helping improve your home feel better because they reduce interior temperature, manage humidity, and offer energy-saving advantages. Programmers begin by using the Dynamo to create robotic outputs and other electronic and programming creations. Dynamo produces direct current electric power using electromagnetism. It is also known as a generator; however, the term generator usually refers to an alternator; which produces AC (alternating current). The rotating shaft rotates electromagnets surrounded by heavy copper coils wire inside generators. This creates a magnetic field which causes the electrons of the copper wire to move away from atom to atom that generates electricity. The voltage produced by a generator depends on the number of windings magnetic force and magnetic velocity turns. There are several steps involved in creating a fan with generated electricity harnessed from Dynamo. The first is to create a program that uses Dynamo to provide instructions that are programmed on the Dynamo board to facilitate user interaction.
Reference34 articles.
1. Adejumobi, Isaiah Adediji and ADEBISI, Oluwaseun Ibrahim and MATTI, & Shaeed Opeyem, (2017). Development of a Hybrid Solar- Dynamo Powered Charging System http://eprints.abuad.edu.ng/256/
2. Akshay N. Chakole, Vishal A. Dhotre, & P. V. Raut, (2019). Generation of Electrical Energy byDynamo.https://www.irjet.net/archives/V6/i1/IRJETV6I181.pdf?fbclid =IwA R3O vVfU _6_8ewJ3PL9VEVIQ-hDD0NQH_skmETPURA16b0l5D8oMOhI0wv0
3. Amit Seta, Paul J. Bushby, Anvar Shukurov, & Toby S. Wood, (2020). Saturation mechanism of the fluctuation dynamo at Pr M ≥1https://journals.aps.org/prfluids/abstractt /10.1103/P hysRevFluids.5.043702?fbclid=IwAR2oqmt2m5dSRRJTLJFED1hYSS46MNE2FXX6XrTKQSkbVLNtG3MoYs2dvYs
4. Andres E. Pantoja, James G. Storey, Rodney A. Badcock, Zhenan Jiang, Sinhoi Phang, & Chris W. Bumby, (2018). Output during Continuous Frequency Ramping of a Dynamo-Type HTS Flux Pump. https://ieeexplore.ieee.org/abstract/document/8258 876/authors#authors
5. Arunima Malik , Coen Bongers , Bonnie McBain , Olivier Rey-Lescure , Richard de