Tarkvaravahendi loomine soojussalvestuse paagi parameetrite arvutamiseks
Laen...
Kuupäev
2023
Kättesaadav alates
14.09.2023
Autorid
Ajakirja pealkiri
Ajakirja ISSN
Köite pealkiri
Kirjastaja
Eesti Maaülikool
Abstrakt
Seoses taastuvenergiaallikate üha laialdasema kasutuselevõtuga muutub energia tootmise
ja tarbimise tasakaalustamine järjest suuremaks probleemiks. Paljudes maailma
piirkondades on suurima tootmispotentsiaaliga taastuvenergia allikateks tuule- ja
päikeseenergia, mille tootmisvõimsus ei ole juhitav. Selle probleemi üheks võimalikuks
lahenduseks on energia, sealhulgas soojusenergia, salvestamine. Töö eesmärgiks oli luua
veebirakendus, mis aitaks kasutajal soojussalvesti projekteerimisel või soetamisel leida
parim lahendus oma vajaduste rahuldamiseks. Antud töös antakse ülevaade erinevate
energiaallikate puhul enim kasutatavatest energia salvestamise tehnoloogiatest, nende
eelistest ja puudustest. Põhjalikumalt on käsitletud erinevaid võimalusi soojusenergia
salvestamiseks. Loodud veebirakenduse struktuuri määrab HTML, välimuse
parandamiseks on kasutatud CSS-i ja JavaScript vastutab kasutaja sisenditele
reageerimise, sisestatud andmete töötlemise ja tulemuste kuvamise eest. Rakendus
võimaldab faasimuutuseta ja faasimuutusega soojussalvestustust kasutava salvesti puhul
valida erinevate soojussalvestusmaterjalide vahel, leida sobiv paagi ruumala ning uurida
erinevate isolatsioonimaterjalide mõju soojusenergia kulule, leida paagi jahtumisaeg.
Rakendust võib juba selle praegusel kujul praktikas kasutada, kuid on veel mitmeid
võimalusi selle täiendamiseks, mis muudaksid rakenduse veelgi paindlikumaks ja
kasutajasõbralikumaks.
Due to the increasing use of renewable energy sources, balancing energy demand with energy production is becoming an ever more serious problem. In many regions of the world, the most abundant sources of renewable energy are wind and solar energy, whose production capacity is not manageable. One possible solution to this problem is energy storage, including thermal energy storage. The goal of this thesis was to create a web application that would help the user find the optimal solution when designing or purchasing a heat storage device. This work provides an overview of the most widespread energy storage technologies for different energy sources, their advantages, and disadvantages. The various options for storing thermal energy are discussed in more detail. The structure of the created web application is defined in HTML, CSS is used to improve its appearance, and JavaScript is responsible for responding to the user’s inputs, processing data, and displaying the results. The application helps its user choose between different heat storage materials, find a suitable tank volume, and investigate the effect of different insulation materials. It works for both sensible- and latent heat storage. The application is already completely functional, but it could be improved further, to make it more flexible and user-friendly.
Due to the increasing use of renewable energy sources, balancing energy demand with energy production is becoming an ever more serious problem. In many regions of the world, the most abundant sources of renewable energy are wind and solar energy, whose production capacity is not manageable. One possible solution to this problem is energy storage, including thermal energy storage. The goal of this thesis was to create a web application that would help the user find the optimal solution when designing or purchasing a heat storage device. This work provides an overview of the most widespread energy storage technologies for different energy sources, their advantages, and disadvantages. The various options for storing thermal energy are discussed in more detail. The structure of the created web application is defined in HTML, CSS is used to improve its appearance, and JavaScript is responsible for responding to the user’s inputs, processing data, and displaying the results. The application helps its user choose between different heat storage materials, find a suitable tank volume, and investigate the effect of different insulation materials. It works for both sensible- and latent heat storage. The application is already completely functional, but it could be improved further, to make it more flexible and user-friendly.
Kirjeldus
Bakalaureusetöö
Tehnika ja tehnoloogia õppekaval
Märksõnad
bakalaureusetööd, termodünaamika, energiasalvestus, modelleerimine
