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Title:Developing a dynamic supply chain for renewable electric power distribution: a case study for Egypt : doctoral dissertation
Authors:ID Hassanin, Islam (Author)
ID Knez, Matjaž (Mentor) More about this mentor... New window
ID Muneer, Tariq (Comentor)
Files:.pdf DOK_Hassanin_Islam_2025.pdf (10,84 MB)
MD5: 51553AA7F4F49D82BD8FAE53B2101506
 
.zip DOK_Hassanin_Islam_2025.zip (10,83 MB)
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Language:English
Work type:Doctoral dissertation
Typology:2.08 - Doctoral Dissertation
Organization:FL - Faculty of Logistic
Abstract:The global pursuit of sustainable energy underscores the urgent need to secure reliable energy supplies while mitigating environmental degradation, pollution, and biodiversity loss. Renewable energy, particularly solar and wind power, offers a viable path toward energy security and sustainability. However, its effective integration requires optimized supply chain management addressing generation and distribution challenges. This study investigates the dynamics of renewable energy supply chains with a focus on Egypt, a country with high renewable potential but continued reliance on fossil fuels. Egypt’s growing population, industrial expansion, and strategic location as a regional energy hub amplify the urgency to develop an efficient renewable energy framework. Despite ambitious targets set under the Integrated Sustainable Energy Strategy (ISES) 2035, systemic inefficiencies persist, including inadequate storage, fragmented distribution networks, and an underdeveloped downstream supply chain. Using system dynamics modeling, the research constructs a simulation of Egypt’s downstream renewable electricity supply chain to capture nonlinearities, feedback loops, and policy interactions over time. The model integrates technical, economic, environmental, and social dimensions, supported by empirical data from stakeholder surveys and national statistics. Causal Loop Diagrams and Stock-and-Flow Diagrams were developed using VENSIM to test three different scenarios reflecting varying solar–wind energy mixes. Scenario analysis (2023–2035) reveals that while Egypt’s government plan performs best in energy efficiency and emission reduction, a balanced mix provides greater resilience, economic stability, and social inclusion. The findings highlight that optimized supply chain design, especially in downstream logistics, is essential for improving grid stability, minimizing losses, and enhancing regional energy equity. The study also employs GIS-based spatial analysis to identify optimal locations that minimize transmission costs and align renewable generation with infrastructure. This integration of spatial and system dynamic modeling offers a comprehensive decision-support framework for policymakers. The model enables scenario testing and performance forecasting, supporting data-driven energy planning and investment prioritization. Policy recommendations include extending the ISES strategic horizon beyond 2035, introducing risk-sharing mechanisms, strengthening public-private partnerships, and adopting adaptive tariff and subsidy frameworks to sustain financial viability. The research also proposes incorporating carbon pricing and stricter emission regulations to accelerate Egypt’s energy transition and attract private sector engagement. The study contributes theoretically by integrating system dynamics and geospatial analytics into renewable energy modeling, empirically by incorporating survey-based insight data, and practically by providing a dynamic decision-support tool for Egypt’s renewable energy sector. While focused on electricity from a solar–wind hybrid system, future research should extend the model to include other renewable sources, upstream and production processes, and expanded social and environmental indicators such as per capita CO₂ emissions.
Keywords:distribucija, električna energija, oskrbovalna veriga, sistemska dinamika
Place of publishing:Maribor
Place of performance:Maribor
Publisher:I. Hassanin
Year of publishing:2025
Number of pages:LIX, 305 str., 71 str. pril.
PID:20.500.12556/DKUM-95742 New window
UDC:502.174.3:658(043.3)
COBISS.SI-ID:276033027 New window
Publication date in DKUM:22.04.2026
Views:196
Downloads:22
Metadata:XML DC-XML DC-RDF
Categories:FL
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Licences

License:CC BY-NC-SA 4.0, Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International
Link:http://creativecommons.org/licenses/by-nc-sa/4.0/
Description:A Creative Commons license that bans commercial use and requires the user to release any modified works under this license.
Licensing start date:17.10.2025

Secondary language

Language:Slovenian
Title:Razvoj dinamične dobavne verige za distribucijo obnovljive električne energije: študija primera za Egipt : doktorska disertacija
Abstract:Globalno prizadevanje za trajnostno energijo poudarja nujno potrebo po zagotavljanju zanesljive oskrbe z energijo, hkrati pa blaženju okoljske degradacije, onesnaževanja in izgube biotske raznovrstnosti. Obnovljivi viri energije, zlasti sončna in vetrna energija, ponujajo izvedljivo pot do energetske varnosti in trajnosti. Vendar pa njena učinkovita integracija zahteva optimizirano upravljanje dobavne verige, ki obravnava izzive proizvodnje in distribucije. Ta študija raziskuje dinamiko dobavnih verig obnovljivih virov energije s poudarkom na Egiptu, državi z visokim potencialom obnovljivih virov energije, vendar še vedno odvisni od fosilnih goriv. Naraščajoče prebivalstvo Egipta, industrijska širitev in strateška lega kot regionalnega energetskega središča krepijo nujnost razvoja učinkovitega okvira za obnovljive vire energije. Kljub ambicioznim ciljem, določenim v okviru Celostne strategije za trajnostno energijo (ISES) 2035, še vedno obstajajo sistemske neučinkovitosti, vključno z neustreznim shranjevanjem, razdrobljenimi distribucijskimi omrežji in nerazvito spodbujevalno dobavno verigo. Z uporabo modeliranja sistemske dinamike raziskava konstruira simulacijo egiptovske spodbujevalne dobavne verige obnovljive električne energije, da zajame nelinearnosti, povratne zanke in interakcije politik skozi čas. Model združuje tehnične, ekonomske, okoljske in socialne razsežnosti, podprte z empiričnimi podatki iz anket deležnikov in nacionalne statistike. Vzročno-posledični diagrami in diagrami pretoka so bili razviti z uporabo programa VENSIM za testiranje treh različnih scenarijev, ki odražajo različne mešanice sončne in vetrne energije. Analiza scenarijev (2023–2035) kaže, da čeprav egiptovski vladni načrt dosega najboljše rezultate pri energetski učinkovitosti in zmanjševanju emisij, uravnotežena mešanica zagotavlja večjo odpornost, gospodarsko stabilnost in socialno vključenost. Ugotovitve poudarjajo, da je optimizirana zasnova dobavne verige, zlasti v logistiki nižje v verigi, bistvena za izboljšanje stabilnosti omrežja, zmanjšanje izgub in povečanje regionalne energetske enakosti. Študija uporablja tudi prostorsko analizo, ki temelji na GIS, za opredelitev optimalnih lokacij, ki zmanjšujejo stroške prenosa in usklajujejo proizvodnjo obnovljivih virov energije z infrastrukturo. Ta integracija prostorskega in sistemskega dinamičnega modeliranja ponuja celovit okvir za podporo odločanju za oblikovalce politik. Model omogoča testiranje scenarijev in napovedovanje uspešnosti, podpira načrtovanje energije na podlagi podatkov in določanje prednostnih naložb. Priporočila politik vključujejo podaljšanje strateškega horizonta ISES po letu 2035, uvedbo mehanizmov za delitev tveganj, krepitev javno-zasebnih partnerstev ter sprejetje prilagodljivih tarifnih in subvencijskih okvirov za ohranitev finančne vzdržnosti. Raziskava predlaga tudi vključitev oblikovanja cen ogljika in strožjih predpisov o emisijah, da bi pospešili energetski prehod Egipta in pritegnili sodelovanje zasebnega sektorja. Študija teoretično prispeva z integracijo sistemske dinamike in geoprostorske analitike v modeliranje obnovljivih virov energije, empirično z vključevanjem podatkov, pridobljenih na podlagi anket, in praktično z zagotavljanjem dinamičnega orodja za podporo odločanju za egiptovski sektor obnovljivih virov energije. Čeprav se osredotoča na električno energijo iz hibridnega sistema sončne in vetrne energije, bi morale prihodnje raziskave razširiti model tako, da bi vključeval tudi druge obnovljive vire, procese pridobivanja in proizvodnje ter razširjene družbene in okoljske kazalnike, kot so emisije CO₂ na prebivalca.
Keywords:distribution, electricity production, supply chain, system dynamics


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