Mining Equipment Reliability, Maintainability, and Safety
From its origins in the malachite mines of ancient Egypt, mining has grown to become a global industry which employs many hundreds of thousands of people. Today, the mining industry makes use of various types of complex and sophisticated equipment, for which reliability, maintainability and safety has become an important issue. Mining Equipment Reliability, Maintainability, and Safety is the first book to cover these three topics in a single volume.
Heritage building conservation : Sustainable and digital modelling
Covers: The technology used to digitally document heritage buildings, including LIDAR, photogrammetry, Heritage Building Information Modelling (HBIM), and Virtual Reality (VR) technologies Introducing a Maintainability Index of Heritage Buildings (MIHB) to support the decision-making and prioritization process for the maintenance of heritage buildings The adaptive reuse of heritage buildings Modelling embodied and operational energy performance Using Chatbot and Blockchain technology to support the management and preservation of heritage buildings Ultimately, this book presents a useful tool for use in heritage management and highlights how the reusability of heritage buildings is critical to the creation and survival of sustainable communities.
Disruptive trends in automation technology
The industrial sector is being transformed by the convergence of information technology and operational technology. The latter is another name for automation technology and covers established systems such as supervisory control and data acquisition (SCADA), programmable logic controllers (PLC), fieldbuses, and automation and control systems. As this technology is connected to the Internet and 5G networks, some monitoring, control, and analytic functionalities are deployed to the edge or cloud, and researchers are challenged to ensure the security, dependability, real-time performance, and maintainability of the resulting systems. The big data that is accessible from these systems create opportunities for artificial intelligence applications that can further disrupt the established practices in the automation domain.
Adapting the built environment for climate change : Design principles for climate emergencies
Adapting the Built Environment for Climate Change: Design Principles for Climate Emergencies analyzes several scenarios and proposes various adaptation strategies for climate emergencies (heat waves, wildfires, floods, and storms). Divided into three themes, the book offers an organized vision of a complex and multi-factor challenge. It covers climatic resilience and building refurbishment, implications for service life prediction and maintainability, and climate adaptation in the maintenance and management of buildings. Sections cover infrastructure materials, climate emergency adaptation and building adaptation to heat waves, wildfires, floods and storms.



