Thursday, June 6, 2019

Electrical Engineering Essay Example for Free

Electrical Engineering EssayMr Rowley wanted a switch board for his new hotel, the Medina Palms in Watamu. It needed to cargo hold enough billet for lights, heat and air conditioning in all 50 separate villas, the pools filtration system, security cameras, and the hotels kitchens and bars tipple approximately 1000kVA from the national grid and directing it through hundreds of individual switches and control units built into one central console. I picked up my pencil- this was not an electrical engineering science exam at school instead of lounging at the beach with my friends, I had chosen to spend my summer at Specialised Power Systems (SPS), designing and edifice Mr. Rowleyss switchboard.As the engineers and I gathered around and started to draft designs for the switchboard, we quickly recognised several key issues. Mr Rowley wanted the switchboard to guard power capacitors to amplification general efficiency, and the capability to work coherently with generators and in vertors to account for the Kenyan grids frequent blackouts and power surges. Both capabilities are extremely important in Africa, not only for luxury hotels but also for the health of national infrastructure. By working on Mr. Rowleys luxury hotel, I could learn to pass the technical knowledge from study into real-world projects, such as expanding and improving the Kenyan national grid and bringing cost-efficient generators to rural areas.We set to work. Mr. Rowleys foremost requirement for his switchboard was to have a power-factor capacitor bank, which allowed me to explore in depth a component I first studied through my A-levels physical science classes, and one that is crucial to energy efficiency and modern electrical systems. Essentially, capacitors are used to store electrical charge. Mr. Rowleys requirement meant that his system, which normally drew 1000kVA from the grid, would have to be able to utilise 100kVA in order to account for the extra power occasionally needed t o start water pumps, electric lights, electronics and emergency equipment. as yet an additional multiplier, called the diverse factor (generally calculated to be 80%), is added to the equation to account for the fact that not every piece of equipment is required to turn on at once. We took the textbook equation to determine capacitor requirementsKW = cos X kVAcos =0.9 minimum requirementAnd calculated the Medina Palms item capacitor requirements KW = 0.8 X 500 = 400kVAr kVAr =1000kVA X 0.5 X 0.8 In order to build a system capable of handling 400kVAR, we determined that a bank of 8 connected 50kVAr power capacitors would be the best solution as a automatic unit. For a generator capability we fitted the control panels with Tem communicate Relays, devices that work in conjunction with Auto-Start-enabled generators to automatically supply power to the system in case of a power failure. By working with the generators at the Medina Palms, I learned skills that are critical to the infras tructure of Kenya.For example, only 30% of Kenya receives electricity from the national grids, and the grids are unreliable and confined to major cities. Generators can bring power and all its benefits to the rest of Kenya, and projects like the Medina Palms bring the technical skills and economies of scale that can make generator power accessible to the wider population. I hope to leverage my precedent study of A-level physics, experience with SPS, and future degree in Engineering to bring such modern, affordable electrical capabilities to Kenya.

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