Muutke küpsiste eelistusi

E-raamat: Hydrogen Pipeline Integrity: Inspection, Risk Assessment, and Mitigation for Future Energy Infrastructure

  • Formaat: PDF+DRM
  • Sari: Green Energy and Technology
  • Ilmumisaeg: 27-Jan-2026
  • Kirjastus: Springer Verlag, Singapore
  • Keel: eng
  • ISBN-13: 9789819556090
  • Formaat - PDF+DRM
  • Hind: 172,28 €*
  • * hind on lõplik, st. muud allahindlused enam ei rakendu
  • Lisa ostukorvi
  • Lisa soovinimekirja
  • See e-raamat on mõeldud ainult isiklikuks kasutamiseks. E-raamatuid ei saa tagastada.
  • Formaat: PDF+DRM
  • Sari: Green Energy and Technology
  • Ilmumisaeg: 27-Jan-2026
  • Kirjastus: Springer Verlag, Singapore
  • Keel: eng
  • ISBN-13: 9789819556090

DRM piirangud

  • Kopeerimine (copy/paste):

    ei ole lubatud

  • Printimine:

    ei ole lubatud

  • Kasutamine:

    Digitaalõiguste kaitse (DRM)
    Kirjastus on väljastanud selle e-raamatu krüpteeritud kujul, mis tähendab, et selle lugemiseks peate installeerima spetsiaalse tarkvara. Samuti peate looma endale  Adobe ID Rohkem infot siin. E-raamatut saab lugeda 1 kasutaja ning alla laadida kuni 6'de seadmesse (kõik autoriseeritud sama Adobe ID-ga).

    Vajalik tarkvara
    Mobiilsetes seadmetes (telefon või tahvelarvuti) lugemiseks peate installeerima selle tasuta rakenduse: PocketBook Reader (iOS / Android)

    PC või Mac seadmes lugemiseks peate installima Adobe Digital Editionsi (Seeon tasuta rakendus spetsiaalselt e-raamatute lugemiseks. Seda ei tohi segamini ajada Adober Reader'iga, mis tõenäoliselt on juba teie arvutisse installeeritud )

    Seda e-raamatut ei saa lugeda Amazon Kindle's. 

This book serves as a comprehensive resource for professionals involved in the design, inspection, integrity, maintenance, and operation of hydrogen pipelines, addressing the unique challenges hydrogen presents compared to natural gas or other fuels. It covers the latest inspection technologies, risk assessment methodologies, and mitigation strategies to ensure the safety and efficiency of hydrogen pipelines.
Hydrogen pipeline infrastructure challenges and opportunities.- Pipeline
materials and design for hydrogen transportation.- Inspection technologies
for hydrogen pipelines.- Risk assessment methodologies.- Mitigation
strategies for hydrogen pipeline integrity.- Regulatory framework and
standards.- The future of hydrogen pipeline networks.
Dr. Muhammad Hussain is a distinguished professional specializing in asset integrity, reliability engineering, and predictive analytics with a strong focus on hydrogen and energy pipelines system. His expertise includes artificial intelligence, asset integrity, pipeline management, corrosion management, and risk-based inspection for safe and efficient pipeline operations. Dr. Hussain has contributed extensively to research and industry advancements in plant and pipelines including hydrogen pipeline integrity, applying data-driven methodologies and machine learning to enhance reliability, risk management, and sustainability in energy infrastructure.



Dr. Tieling Zhang is currently serving as the Director of the Engineering Asset Management and Systems Engineering Research Group at the Faculty of Engineering and Information Sciences, University of Wollongong, Australia. His group has developed its capabilities to provide research and training in the areas of energy pipelines integrity management using big data analytics, railway asset management, system reliability and maintenance, supply chain management and optimization, condition-based maintenance and operation of wind turbines, rail track modeling, railway vibration and noise, risk assessment of railway systems, and battery health management.



Engr. Uzma Nazir is a Senior Integrity Engineer at AMCO Reliability Pty Ltd with expertise in pipeline integrity management, materials selection, and asset life extension. Her professional focus includes ensuring the reliability and safety of energy infrastructure through advanced inspection, risk assessment, and materials engineering practices. She has contributed to developing effective strategies for optimizing asset performance and extending the operational life of critical pipeline systems in the energy sector.