Digitalization of Maritime Operations through Sustainable Systems, Software and Architecture

Digitalization of Maritime Operations through Sustainable Systems, Software and Architecture

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Digitalization of Maritime Operations through Sustainable Systems, Software and Architecture

Digitalization of Maritime Operations through Sustainable Systems, Software and Architecture

Sale price  $197.99 Regular price $219.99

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Mathematics for Sustainable Developments

Digitalization of Maritime Operations through Sustainable Systems, Software and Architecture

John Emm. Kokarakis | Stamatina Th. Rassia

Architecture / Sustainability & Green Design

This book explores how advanced systems, mathematical optimization, cutting-edge software solutions, and strong systems and software designs work together in digitalization of maritime operations and management. Emphasizing applications that directly address topics related to SDG 9 (Industry, Innovation, and Infrastructure) and SDG 11 (Sustainable Cities and Communities), it discusses how one can change modern ships into smart, integrated digital platforms by using sustainable systems, software, and architecture.
The book, a collection of select chapters, covers the design, implementation, and optimization of systems for future smart ships. Combining theory and practical examples, it aims to provide readers ideas, tools, analytical thinking, and improved systems for digitalization of ships and their management. It also highlights the importance of mathematical modeling for safety, efficiency, and functionality. The book is useful for students, professionals and researchers in the interdisciplinary fields of research and practice related to all topics covered within the book.

John Emm. Kokarakis is Technical Director of the Southeast Europe, Black and Adriatic Sea Zone at Bureau Veritas (BV), Greece. He is responsible for the smooth technical operation within the Zone as well as in the harmonic cooperation with the BV offices worldwide to the benefit of the BV clients, with a focus on the implementation of “green” regulations and fuel-saving techniques. He has a Diploma in NA&ME (in 1979) from NTUA; an M.S. in NA&ME (Marine Engineering) (in 1983) from the University of Michigan (UM), USA; an M.S.E. in Mechanical Engineering from UM (in 1984); and a PhD in NA&ME (in 1986) from UM. His doctoral dissertation is on the “Static and Dynamic Analysis of Marine Risers.” His main scientific areas of interest are advanced techniques in ship design, ship performance evaluation, prediction of environmental loads, risk and failure analysis, evaluation of propulsion plants, and energy efficiency.
In his capacity as a forensic engineer, he participated in the technical investigation of the Exxon Valdez grounding, the Space Shuttle Challenger disaster, the drillship Sea-Crest capsize, the Piper Alpha fire and explosion, the Aleutian Enterprise foundering in Alaska as well as many other accidents of less notoriety. For the last 25 years, he works in Greece, in classification. He served in the American Bureau of Shipping and Germanischer Lloyd before joining Bureau Veritas. Published his work in various journals and at various conferences, he has been the president of the Hellenic Institute of Marine Technology (2010–2012), a member of the IACS Environmental Panel (2013–2018), and gave invited lectures at Strathclyde, and Technical University of Athens. He is a member of the Society of Naval Architects and Marine Engineers, since 1976, a fellow of the Society and chairman of the Fellows Committee. He is also the chairman of the Greek Section, since 2014.

Dr. Stamatina Th. Rassia is an interdisciplinary researcher, academic and professional with international expertise spanning architecture, naval engineering, sustainability, and advanced design systems. She holds a Diploma in Architecture Engineering from the National Technical University of Athens (NTUA), an MPhil in Environmental Design in Architecture, and a PhD in Architecture from the University of Cambridge. Her international academic and professional experience includes work in the UK, Switzerland, Singapore, France, and Greece, across leading research, academic, and professional environments. Her research integrates optimization, advanced technologies, environmental performance, renewable energy, and human-centred innovation, with applications in smart cities, public health, sustainable maritime and naval architecture, resilience, and AI-enabled design. Her cross-disciplinary expertise connects engineering, technology, sustainability, and future-oriented design, offering a broad international perspective highly relevant to contemporary research and scholarly publishing.


Publication Date: 05 February 2027
Publisher: Springer Nature Singapore
Imprint: Springer
ISBN-13: 9789819263561
Format: Hardback
Page Count: 290

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