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Applicerbar teknik för utvinning av energi ur regnkraft: En jämförelsestudie om framtidens energiutvinning
Linnaeus University, Faculty of Technology, Kalmar Maritime Academy.
Linnaeus University, Faculty of Technology, Kalmar Maritime Academy.
2019 (Swedish)Independent thesis Basic level (university diploma), 10 credits / 15 HE creditsStudent thesisAlternative title
Applicable Technology to absorb energy from rain power : A comparison study in the future of energy conversion (English)
Abstract [sv]

På grund av det rådande miljöhotet så bör fokus för forskning och utveckling i ämnet riktas åt att utnyttja så många förnybara energikällor som möjligt, samt även optimera dessa för största möjliga energiupptagning. Vind, vatten och solljus är välkända och väl utformade källor för energi. Huruvida vatten i form av regn kan utnyttjas och dess potential kommer studeras i det här arbetet.

Materialval och konstruktionslösningar står i centrum för arbetet. Vidare så studeras dess bakgrunder för utvinningsmetoderna och dess grundläggande principer tas upp för att skapa en bättre förståelse för möjligheterna att utnyttja tekniken.

Fortsättningsvis så har rådande potentiella användningsområden och kommande utmaningar diskuterats utförligt.

Abstract [en]

Because of the prevailing environmental threat, focus for research and development in the subject should aim towards taking advantage of as many renewable energy sources as possible aswell as optimizing them to convert as much energy as possible. All renewable energy must be utilized, but above all, also optimized. Wind, water and sunlight are well-known and well-designed sources of energy. Whether water in the form of rain can be utilized and its potential as a sustainable commercial method will be studied in this paper.

Material selection and design solutions are at the heart of the work. Furthermore, its backgrounds for the extraction methods are studied and its basic principles are addressed to create a better understanding of the possibilities of utilizing the technology.

Moreover, the current potential uses and future challenges have been discussed in detail.

Place, publisher, year, edition, pages
2019. , p. 21
Keywords [sv]
tribo, triboelektrisk, piezo, piezoelektrisk, PTFE, PVDF, Polytetrafluoreten, Polyvinylidene fluoride, FEP, Fluorerad etylen propylen, MT-TENG, Regnkraft, Energiupptagning ur regn, alternativ energikälla, miljövänlig energi
National Category
Energy Engineering
Identifiers
URN: urn:nbn:se:lnu:diva-83390OAI: oai:DiVA.org:lnu-83390DiVA, id: diva2:1317944
Subject / course
Energiteknik
Educational program
Marine Engineering Programme (4 years) with onboard practical training placement, 180 credits
Presentation
2019-05-21, 09:52
Supervisors
Examiners
Available from: 2019-05-27 Created: 2019-05-24 Last updated: 2019-05-27Bibliographically approved

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fulltext(424 kB)23 downloads
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Type fulltextMimetype application/pdf

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CiteExportLink to record
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