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Modeliranje vpliva DRI na porabo električne energije v EOP : diplomso delo
ID Žorž Zaviršek, Til (Author), ID Knap, Matjaž (Mentor) More about this mentor... This link opens in a new window

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Abstract
V diplomskem delu sem s pomočjo programa Excel izračunal masno in energijsko bilanco v elektroobločni peči. S temi podatki sem izračunal porabo električne energije glede na količino dodanega direktno reduciranega železa (DRI). DRI, ki ga imenujemo tudi deviški vložek, se vse pogosteje uporablja v proizvodnji jekla, saj je količina nečistoč v njem zanemarljiva in dosežemo večjo čistost jekla. Cilj diplomskega dela je bil ugotoviti, kako količina dodanega DRI vpliva na porabo električne energije v elektroobločni peči. V teoretičnem delu je naprej opisana elektroobločna peč in kako deluje, nato sledi opis razvoja peči in sodobni vnos energije. Predstavljen je tudi proces izdelovanja jekla in teorija izračuna masne in energijske bilance v peči ter opis oksidacije oziroma oksidacijskih reakcij, ki potekajo med procesom izdelave jekla. V eksperimentalnem delu sem predstavil način in postopek izračunavanja masne in energijske bilance s pomočjo programa Excel. Na podlagi teh podatkov sem izračunal končno porabo električne energije. V tabelah so prikazani podatki, ki sem jih uporabil za testni primer izračunov in za izračun masne in energijske bilance. Obe bilanci sem potreboval za izračun porabe električne energije. Vpliv DRI na porabo električne energije sem izračunal na tri različne načine, in sicer s spreminjanjem vrste starega železa, s spremembo deleža DRI in s spreminjanjem deleža ogljika v DRI. Rezultati izračunov so prikazani v obliki grafov in tabel. Iz te predstavitve se jasno vidijo razlike porabe električne energije glede na delež DRI in spreminjanje deleža ogljika v DRI. Na podlagi izračunanih podatkov v okviru diplomskega dela, lahko sklepamo, da je uporaba DRI bogatega z ogljikom ekonomsko upravičena, saj se porabi manj električne energije.

Language:Slovenian
Keywords:Direktno reduciranega železa (DRI) ali deviški vložek, ogljik, masna bilanca, energijska bilanca, oksidacija
Work type:Bachelor thesis/paper
Typology:2.11 - Undergraduate Thesis
Organization:NTF - Faculty of Natural Sciences and Engineering
Place of publishing:Ljubljana
Publisher:T. Žorž Zaviršek
Year:2024
Number of pages:XI, 32 f., 1 USB
PID:20.500.12556/RUL-154126 This link opens in a new window
UDC:669
COBISS.SI-ID:186262787 This link opens in a new window
Publication date in RUL:26.01.2024
Views:659
Downloads:52
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Secondary language

Language:English
Title:Modeling the impact of DRI on electricity consumption in EOP : diploma work
Abstract:
The diploma work presents a programme created with Excel to calculate the mass and energy balance of an electric arc furnace (EAF). Using the mass and energy balance data based on the amount and chemical composition of the added direct reduced iron (DRI), we calculated the electricity consumption of an EAF. Direct reduced iron is increasingly used in steel production as it contains hardly any impurities, resulting in higher steel purity. The aim of the work was to determine how the quantity and quality of the added DRI affects the electricity consumption in an electric arc furnace. In the theoretical part, the electric arc furnace and its operation are first described, followed by a description of the development of the furnace and modern energy use. The steelmaking process is also presented, together with the theory for calculating the mass and energy balance in the furnace and a description of the oxidation or oxidative reactions that take place during the steelmaking process. In the experimental part, the process of creating the Excel programme and the calculation process to determine the final electricity consumption are presented. The tables contain data used for the experimental calculations and the calculation of the mass and energy balances. Both balances were needed for the calculation of the electricity consumption. The influence of DRI on electricity consumption was calculated in three different ways. First, the type of scrap was varied, then the proportion of DRI and finally the proportion of carbon in the DRI. The results of the calculations are presented in the form of diagrams and tables. From this presentation, the differences in electricity consumption depending on the proportion of DRI and the changes in the carbon content in the DRI can be clearly seen. Based on the data calculated in the work, it can be concluded that the use of high-carbon DRI is economically justified because it consumes less electricity.

Keywords:DRI or direct reduced iron, carbon, mass balance, energy balance, oxidation

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