Nondestructive Testing and Evaluation publishes letters, papers and review articles describing the results of research and development in the underlying theory, novel techniques and applications of nondestructive testing and evaluation. Articles concerning both the investigation of physical processes and the development of mechanical processes and techniques are welcomed. Studies of conventional techniques, including radiography, ultrasound, eddy currents, magnetic properties and magnetic particle inspection, thermal imaging and dye penetrant, will be considered in addition to more advanced approaches using, for example, lasers, squid magnetometers, interferometers, synchrotron and neutron beams and Compton scattering. Work on the development of conventional and novel transducers is particularly welcomed. In addition, articles are invited on general aspects of nondestructive testing and evaluation in education, training, validation and links with engineering.All published research articles in this journal have undergone rigorous peer review, based on initial editor screening and anonymous refereeing by independent expert referees.
Nonlinear Dynamics provides a forum for the rapid publication of original research in the field. The journal’s scope encompasses all nonlinear dynamic phenomena associated with mechanical, structural, civil, aeronautical, ocean, electrical, and control systems. Review articles and original contributions are based on analytical, computational, and experimental methods. The journal examines such topics as perturbation and computational methods, symbolic manipulation, dynamic stability, local and global methods, bifurcations, chaos, and deterministic and random vibrations. The journal also investigates Lie groups, multibody dynamics, robotics, fluid-solid interactions, system modeling and identification, friction and damping models, signal analysis, and measurement techniques.
Nuclear Engineering and Design covers the wide range of disciplines involved in the engineering, design, safety and construction of nuclear fission reactors. The Editors welcome papers both on applied and innovative aspects and developments in nuclear science and technology.Fundamentals of Reactor Design include:• Thermal-Hydraulics and Core Physics• Safety Analysis, Risk Assessment (PSA)• Structural and Mechanical Engineering• Materials Science• Fuel Behavior and Design• Structural Plant Design• Engineering of Reactor Components• ExperimentsAspects beyond fundamentals of Reactor Design covered:• Accident Mitigation Measures• Reactor Control Systems• Licensing Issues• Safeguard Engineering• Economy of Plants• Reprocessing / Waste Disposal• Applications of Nuclear Energy• Maintenance• DecommissioningPapers on new reactor ideas and developments (Generation IV reactors) such as inherently safe modular HTRs, High Performance LWRs/HWRs and LMFBs/GFR will be considered; Actinide Burners, Accelerator Driven Systems, Energy Amplifiers and other special designs of power and research reactors and their applications are also encouraged.
Optics and Lasers in Engineering aims to provide an international forum for the interchange of information on the development and application of optical techniques and laser technology in engineering. Emphasis is placed on contributions dealing with the practical use of methods and devices, the evaluation of results and developments and enhancement of solutions and new theoretical foundations for experimental methods.Optics and Lasers in Engineering reflects the main areas in which optical methods are being used and developed in an engineering environment. The scope of the journal is defined to include the following:Optical MetrologyOptical Methods for Process ControlMachine Vision and Image ProcessingOptical Microelectromechanical Systems (MEMS)Optical Techniques in Micro-MechanicsImaging, Microscopy and Adaptive OpticsLaser Material ProcessingLaser Beam Delivery and DiagnosticsFibre Optic SensorsLaser Remote Sensing and Environmental MonitoringLaser SafetyLasers in Medicine and BiologyEngineering Applications of Spectroscopy
This journal promotes the application of optimization methods in the engineering sciences. This includes facilitating the development of advanced optimization methods for direct or indirect use in engineering. The journal provides a forum in which engineers obtain information about recent advances of optimization sciences, and researchers in mathematical optimization learn about the needs of engineering sciences and successful applications of optimization methods. It closes the gap between optimization theory and the practice of engineering. Optimization and Engineering presents all optimization methods of relevance to applications in engineering sciences: deterministic and stochastic, continuous, mixed integer and discrete, when they are relevant to applications in engineering sciences. It also highlights successful applications of optimization in various areas and contains a special section for readers without a strong background in the field, which offers material aimed at educating potential users of opti
Packaging Technology & Science provides an international forum for the publication of research papers and review articles about developments in this field. As such, it is aimed at packaging engineers and technologists, food scientists and technologists, polymer scientists, toxicologists, analytical chemists, environmental scientists, materials scientists, regulatory officers, and other professionals who are concerned with the development and applications of packaging, as well as its effects.
This journal provides a forum for scholarly work dealing primarily with probabilistic and statistical approaches to contemporary solid/structural and fluid mechanics problems encountered in diverse technical disciplines such as aerospace, civil, marine, mechanical, and nuclear engineering. The journal aims to maintain a healthy balance between general solution techniques and problem-specific results, encouraging a fruitful exchange of ideas among disparate engineering specialities.From time to time, review papers will be published to provide research and development oriented readers with state-of-the-art analyses of various areas of current interest. In addition, occasional papers of tutorial nature help enhance practice oriented readers' knowledge of the basic probabilistic and statistical techniques that are essential in present-day engineering practice design.In consultation with the editors, distinguished members of the probabilistic mechanics community may serve as guest editors for a special issue dedicated to a particular theme.Fields Covered:Aerospace engineering:• Damage-tolerant and durability design of aircraft• Load spectra characterisation• Random vibration of aerospace structuresCivil engineering:• Geotechnical applications• Natural hazards such as earthquakes, hurricanes, and waves• Stochastic fluid mechanics/hydrology• Structural response/control under natural hazardsMarine engineering:• Offshore structures response to wind-induced waves• Ship motion in a random seaMechanical engineering:• Fatigue design• Mechanical systems response/control• Vehicle vibration• Vibration isolationNuclear engineering:• Probabilistic risk assessment• Structural and equipment response to accidental loadsCommon to all disciplines:• Composite materials• Damage mechanics• Monte Carlo simulation• Random fields• Stochastic finite elements• Stochastic optimization• System reliability.