VILNIUS TECH Virtual Library’s possibilities

September 29, 2023
You can find publications for your studies and for your leisure time in the VILNIUS TECH Virtual Library.

The Virtual Library of VILNIUS TECH is an integrated search system that enables a one-stop search for information resources in the Catalogue of VILNIUS TECH Library, the Lithuanian Academic Electronic Library eLABa, VILNIUS TECH subscription databases and open-access information sources.

VILNIUS TECH Virtual Library information resources*:
1. Library catalogue
2. Research publications (VILNIUS TECH eLABaPDB)
3. VILNIUS TECH in the press
4. VILNIUS TECH scientific journals
5. VILNIUS TECH subscriptions to foreign journals
6. Final theses and dissertations (VILNIUS TECH eLABaETD)
7. Subscription databases
8. EBSCO databases
9. Catalogue of standards of the Lithuanian Standards Department (LST)
10. Lithuanian Academic Resources

* To find the search settings for resources, please expand the options in the search box.

The Virtual Library of VILNIUS TECH can be found at vb.vilniustech.lt or on the VILNIUS TECH Library homepage >>> E-Resources >>> VILNIUS TECH Virtual Library

Once logged in, you will find the relevant information in the "My Library Card" on the top right. This function allows you to extend the due dates of publications issued, see pending orders, and see late fees for publications not returned on time. You can also save your search and query results and subscribe to email newsletters.

The Virtual Library Guide is a quick and convenient way to learn how to search for publications >>> https://youtu.be/PJ8c3TXb54c

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€75,000 Funding Opportunity for Women-Led Deep Tech Startups
€75,000 Funding Opportunity for Women-Led Deep Tech Startups
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New doctoral dissertation
New doctoral dissertation
VILNIUS TECH Library invites you to follow the published new dissertations. The dissertation „Performance investigation of a hybrid car engine fuelled with gasoline and gaseous mixtures“ („Benziną ir dujų mišinius naudojančio hibridinio automobilio variklio efektyvumo tyrimas“) prepared at VILNIUS TECH by Tadas Vipartas. The dissertation was prepared in 2021–2026. Scientific consultant – Prof. Dr Alfredas Rimkus. The dissertation was defended at the public meeting of the Dissertation Defence Council of the Scientific Field of Transport Engineering in the Aula Doctoralis Meeting Hall of Vilnius Gediminas Technical University at 9 a.m. on 12 June 2026. This dissertation investigates the use of alternative fuels (natural gas and hydrogen) to increase the efficiency of a spark-ignition engine. The impact of different fuels and engine control algorithms on the combustion process and on energy and ecological indicators was determined and evaluated by analysing the emerging technological constraints within the context of a power-split (series-parallel) hybrid powertrain. The dissertation presents a review of scientific literature, analysing the directions for internal combustion engine improvement, the properties of gaseous fuels and the challenges of their application, along with the operating principles of automotive hybrid powertrains. Bench tests were conducted to investigate the effect of late intake valve closing timing on an engine operating on natural gas, and the influence of hydrogen additives on the combustion process and knock control. The numerical analysis of the engine’s combustion process was performed using AVL BOOST™ software, while the energy and ecological indicators of the hybrid vehicle were evaluated through experimental research and numerical simulation in the AVL CRUISE™ software. The following main results were obtained in the dissertation: retarding the intake valve closing timing increased the brake thermal efficiency and NOx emissions while reducing carbon dioxide emissions when the engine operates on natural gas. It was determined that a hydrogen additive in the fuel improves the engine’s energy indicators, but increases nitrogen oxides emissions and the risk of engine knock. Engine knock is effectively managed by retarding the ignition advance angle. Numerical simulation results confirmed that these trends persist during the Worldwide Harmonized Light-duty Vehicles Test Cycle: the use of hydrogen reduces fuel consumption and carbon dioxide emissions, but increases nitrogen oxides emissions. The dissertation results revealed the potential of these technologies and strategies for their application. The obtained data can be applied in the development and selection of advanced engine control algorithms and in the formulation of technologically sound environmental standards. Nine scientific articles have been published on the topic of the dissertation: six in scientific journals indexed in the Clarivate Analytics Web of Science database with an impact factor, one in a scientific journal indexed in the Clarivate Analytics Web of Science database without an impact factor, one in conference proceedings indexed in the Clarivate Analytics Web of Science Conference Proceedings Citation Index, and one in peer-reviewed conference proceedings not indexed in international databases. The research results were presented at three scientific conferences in Lithuania and Poland. Doctoral dissertation readers can search via VILNIUS TECH Virtual Library.
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