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Service life estimation is an area of growing importance in civil engineering both for determining the remaining service life of civil engineering structures and for designing new structural systems with well-defined periods of functionality. Service life estimation and extension of civil engineering structures provides valuable information on the development and use of newer and more durable materials and methods of construction, as well as the development and use of new techniques of estimating service life.Part one discusses using fibre reinforced polymer (FRP) composites to extend
Service life (Engineering) --- Civil engineering. --- Structural engineering. --- Engineering, Structural --- Structures, Engineering of --- Architecture --- Engineering --- Public works --- Life, Service (Engineering) --- Operating life (Engineering) --- Reliability (Engineering) --- Economic life of fixed assets --- Maintenance --- Civil Engineering
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Whether it's called "fixed equipment? (at ExxonMobil), "stationary equipment? (at Shell), or "static equipment? (in Europe), this type of equipment is the bread and butter of any process plant. Used in the petrochemical industry, pharmaceutical industry, food processing industry, paper industry, and the manufacturing process industries, stationary equipment must be kept operational and reliable for companies to maintain production and for employees to be safe from accidents. This series, the most comprehensive of its kind, uses real-life examples and time-tested rules of thumb to guide the mec
Piping - Maintenance and repair. --- Piping--Maintenance and repair.Pipelines--Maintenance and repair.Service life (Engineering). --- Service life (Engineering). --- Piping --- Pipelines --- Service life (Engineering) --- Maintenance and repair. --- Life, Service (Engineering) --- Operating life (Engineering) --- Pipe lines --- Piping systems --- Reliability (Engineering) --- Economic life of fixed assets --- Maintenance --- Pipe --- Plumbing
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Weathering of buildings --- Service life (Engineering) --- Product life cycle. --- Life cycle, Product --- Manufactures --- Marketing --- Product management --- Life, Service (Engineering) --- Operating life (Engineering) --- Reliability (Engineering) --- Economic life of fixed assets --- Maintenance --- Building deterioration, External --- Building weathering --- Buildings --- Deterioration of buildings, External --- Exterior walls --- Computer simulation. --- Life cycle --- Weathering --- Protection
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666.97 --- 691.3 --- Concrete --- -Concrete products --- -Service life (Engineering) --- Life, Service (Engineering) --- Operating life (Engineering) --- Reliability (Engineering) --- Economic life of fixed assets --- Maintenance --- Concrete construction --- Beton --- Building materials --- Mortar and concrete industry. Concrete elements. Factory production of concrete --- Artificial stone. Concrete. Various agglomerates --- Deterioration --- Maintenance and repair --- Concrete products --- Service life --- 691.3 Artificial stone. Concrete. Various agglomerates --- 666.97 Mortar and concrete industry. Concrete elements. Factory production of concrete
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Electronic books. -- local. --- International Space Station. --- Maintainability (Engineering). --- Service life (Engineering). --- Space stations -- Maintenance and repair. --- Space stations --- Maintainability (Engineering) --- Service life (Engineering) --- Mechanical Engineering --- Engineering & Applied Sciences --- Aeronautics Engineering & Astronautics --- Maintenance and repair --- Maintenance and repair. --- Life, Service (Engineering) --- Operating life (Engineering) --- Maintainability of equipment --- Serviceability (Engineering) --- Manned orbital laboratories --- Manned space stations --- Orbiting vehicles --- Satellite vehicles --- Space cars --- Space laboratories --- ISS (International Space Station) --- I.S.S. (International Space Station) --- Reliability (Engineering) --- Economic life of fixed assets --- Maintenance --- Engineering --- Operations research --- Systems engineering --- Artificial satellites --- Astronautics --- Space flight --- Space ships --- Space vehicles --- Large space structures (Astronautics) --- Space colonies
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Reliability (Engineering) --- Maintainability (Engineering) --- Machinery --- Machine parts --- Service life (Engineering) --- Maintenance and repair. --- Failures. --- 658.56 --- Life, Service (Engineering) --- Operating life (Engineering) --- Economic life of fixed assets --- Maintenance --- Failures in machine parts --- System failures (Engineering) --- Plant maintenance --- Maintainability of equipment --- Serviceability (Engineering) --- Engineering --- Operations research --- Systems engineering --- Reliability of equipment --- Systems reliability --- Probabilities --- Plant performance --- Safety factor in engineering --- Structural failures --- Quality control. Control of tool issue, materials, products etc. --- Reliability (Engineering). --- Maintainability (Engineering). --- Service life (Engineering). --- 658.56 Quality control. Control of tool issue, materials, products etc. --- Failures --- Maintenance and repair --- Quality control. Control of tool issue, materials, products etc
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Safety and reliability are important for the whole expected service duration of an engineering structure. Therefore, prognostical solutions for different building types are needed and uncertainties have to be handled. Life-cycle strategies to control future structural degradations by concepts of appropriate design have to be developed, in case including means of inspection, maintenance, and repair. Aspects of costs and sustainability also matter. The Cooperative Research Center for Lifetime-Oriented Design Concepts (SFB 398) at Ruhr University in Bochum combines the wide range of scientific topics between structural engineering, structural and soil mechanics and material sciences regarding structural lifetime management in this present extraordinary monolithic format. The characterization and modeling of lifetime-related external actions of multiple origin are presented in this book as well as the physical description, the modeling and the validation of material degradation. Adaptive numerical methods and simulation techniques are provided for the lifetime-oriented design concepts to forecast material and structural degradation. Stochastic aspects, mathematical optimization methods and interactions between various influences are included. Thus, a solid basis is provided for future practical use and also for standardization of structural design with respect to lifetime-prediction.
Building materials. --- Structural design. --- Materials Science --- Chemical & Materials Engineering --- Engineering & Applied Sciences --- Service life (Engineering) --- Evaluation. --- Mathematical models. --- Life, Service (Engineering) --- Operating life (Engineering) --- Engineering. --- Structural mechanics. --- Buildings --- Building. --- Construction. --- Engineering, Architectural. --- Building repair. --- Materials science. --- Building Materials. --- Building Repair and Maintenance. --- Materials Science, general. --- Structural Mechanics. --- Building Construction. --- Design and construction. --- Repair and reconstruction. --- Reliability (Engineering) --- Economic life of fixed assets --- Maintenance --- Building construction. --- Materials. --- Mechanics. --- Mechanics, Applied. --- Solid Mechanics. --- Building Construction and Design. --- Applied mechanics --- Engineering, Mechanical --- Engineering mathematics --- Classical mechanics --- Newtonian mechanics --- Physics --- Dynamics --- Quantum theory --- Engineering --- Engineering materials --- Industrial materials --- Engineering design --- Manufacturing processes --- Materials --- Buildings—Repair and reconstruction. --- Buildings—Design and construction. --- Architectural engineering --- Construction --- Construction science --- Engineering, Architectural --- Structural design --- Structural engineering --- Architecture --- Construction industry --- Material science --- Physical sciences --- Building reconstruction --- Building renovation --- Building repair --- Reconstruction of buildings --- Remodeling of buildings --- Renovation of buildings --- Repairing --- Architectural materials --- Building --- Building supplies --- Construction materials --- Structural materials --- Design and construction --- Reconstruction --- Remodeling --- Renovation --- Protection --- Conservation and restoration
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This book introduces data-driven remaining useful life prognosis techniques, and shows how to utilize the condition monitoring data to predict the remaining useful life of stochastic degrading systems and to schedule maintenance and logistics plans. It is also the first book that describes the basic data-driven remaining useful life prognosis theory systematically and in detail. The emphasis of the book is on the stochastic models, methods and applications employed in remaining useful life prognosis. It includes a wealth of degradation monitoring experiment data, practical prognosis methods for remaining useful life in various cases, and a series of applications incorporated into prognostic information in decision-making, such as maintenance-related decisions and ordering spare parts. It also highlights the latest advances in data-driven remaining useful life prognosis techniques, especially in the contexts of adaptive prognosis for linear stochastic degrading systems, nonlinear degradation modeling based prognosis, residual storage life prognosis, and prognostic information-based decision-making.
Engineering. --- Operations research. --- Decision making. --- Probabilities. --- Statistics. --- Quality control. --- Reliability. --- Industrial safety. --- Quality Control, Reliability, Safety and Risk. --- Probability Theory and Stochastic Processes. --- Operation Research/Decision Theory. --- Statistics for Engineering, Physics, Computer Science, Chemistry and Earth Sciences. --- Economic life of fixed assets. --- Service life (Engineering) --- Mathematical models. --- Life, Service (Engineering) --- Operating life (Engineering) --- Economic life (of economic goods) --- Fixed assets, Economic life of --- Life, Economic --- Useful life of fixed assets --- Reliability (Engineering) --- Economic life of fixed assets --- Maintenance --- Accounting --- Depreciation --- System safety. --- Distribution (Probability theory. --- Operations Research/Decision Theory. --- Operational analysis --- Operational research --- Industrial engineering --- Management science --- Research --- System theory --- Statistical analysis --- Statistical data --- Statistical methods --- Statistical science --- Mathematics --- Econometrics --- Distribution functions --- Frequency distribution --- Characteristic functions --- Probabilities --- Safety, System --- Safety of systems --- Systems safety --- Accidents --- Industrial safety --- Systems engineering --- Prevention --- Statistics . --- Deciding --- Decision (Psychology) --- Decision analysis --- Decision processes --- Making decisions --- Management --- Management decisions --- Choice (Psychology) --- Problem solving --- Probability --- Statistical inference --- Combinations --- Chance --- Least squares --- Mathematical statistics --- Risk --- Industrial accidents --- Industries --- Job safety --- Occupational hazards, Prevention of --- Occupational health and safety --- Occupational safety and health --- Prevention of industrial accidents --- Prevention of occupational hazards --- Safety, Industrial --- Safety engineering --- Safety measures --- Safety of workers --- System safety --- Dependability --- Trustworthiness --- Conduct of life --- Factory management --- Sampling (Statistics) --- Standardization --- Quality assurance --- Quality of products --- Decision making
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