Intellex Acquires Expert by Big Village

We're thrilled to announce that Intellex has acquired Expert by Big Village, effective March 22, 2024. This strategic move enhances our capabilities and strengthens our commitment to delivering exceptional solutions to our customers.

Stay tuned for more updates on how this acquisition will benefit our clients and experts.

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Expert Details

Dielectric Phenomena

ID: 108155 New York, USA

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Some of Expert's prior work has centered on the design and appraisal of transformer insulation structures, with particular emphasis on oil/cellulose systems. This work has involved both fundamental research on mechanistic aspects and the implications for design. He has been involved with transformer failure analysis and the development and application of computer-based design tools and diagnostic instrumentation.

Research on the behavior of dielectric materials (gas, liquid, and solid) has been carried out by him for over 40 years. His objective is to improve performance through design. He maintains that knowledge of the mechanisms of conduction and breakdown is fundamental to informed dielectric engineering. Much of this applies to the high-voltage and power industries, and he has worked with the Electric Power Research Institute on the evaluation of insulation systems for large form-wound generators. However, the expertise has also been applied in many other areas involving high electric stresses such as medical devices.

Expert has used applications of the physics and chemistry of dielectric materials to investigate both the use of new (or modified) materials and the appraisal of insulation structural design. He has gained experience specifically in mixed dielectric situations involving gas, liquid, and solid (usually polymer) media as well as in vacuum environments. In 2002, he was the first to experimentally demonstrate the benefits of a new class of materials now known as nanodielectrics. He has been active in the development of these materials ever since, and recently published the first book on the subject.

Previously, he had conducted research to investigate the physics controlling the development of discharges in SF6 gas. The development of gas additives to control corona stabilization in gases has been of particular interest. This augments many years of experience in the measurement and understanding of partial discharge behavior.

He has extensive experience in electrostatic phenomena both as a means to provide useful devices (e.g. precipitators) and to mitigate troublesome triboelectric effects. In the later context, he has specialized in streaming electrification in dielectric fluids and has developed instrumentation to detect hazardous situations.

There is a great deal of current interest in the management of insulations systems which are aging. Consequently, he has become very involved with both the development and use of a variety of monitoring techniques applied to dielectric systems. Examples are partial discharge analysis and high frequency spectrum analysis, the use of ultrasonic probes, spectrally-resolved optical techniques, and computer-based intelligence applied to the interpretation of such monitoring methods.

Expert has numerous experiences with on-site consulting. However, they are not listed to preserve the identity of clients.

Education

Year Degree Subject Institution
Year: 1969 Degree: Ph.D. Subject: High Voltage Engineering Institution: University of London
Year: 1965 Degree: B.S. Subject: Electrical Engineering Institution: University of London

Work History

Years Employer Title Department
Years: 1982 to Present Employer: Undisclosed Title: Professor Emeritus Department: Electrical Power Engineering
Responsibilities:
He was responsible for teaching and research as well as
departmental management. Currently as an Emeritus Professor, he only conducts research an acts in an advisory capacity.
Years Employer Title Department
Years: 1979 to 1982 Employer: General Electric Corporation Title: Research Manager Department: Reasearch and Develpoment
Responsibilities:
He managed GE's high field technology programs.
Years Employer Title Department
Years: 1969 to 1979 Employer: Queen Mary College, University of London Title: Reader Department: Electrical Engineering
Responsibilities:
He was involved with teaching and research along with the management of high- voltage and short-circuit testing laboratories.

Government Experience

Years Agency Role Description
Years: 2004 to 2006 Agency: NIST Role: Consultant Description: Appraisal of utility response to the Sept 11th World Trade Center attacks.
Years: 2009 to 2009 Agency: Irish Higher Education Authority Role: Consultant Description: Appraisal of national priorities
Years: 2012 to 2014 Agency: Knolls Atomic Power Lab. (US Navy) Role: Contractor Description: Major design study on new motor based on nanodielectric technology

International Experience

Years Country / Region Summary
Years: 1969 to 1979 Country / Region: UK Summary: Expert held a university faculty position in the UK and undertook numerous consulting projects. He also provided extensive analytical services for National Grid in the UK in 2002.
Years: 2004 to 2011 Country / Region: Mexico Summary: He undertook several assignments for GE Prolec on large transformer design and analysis.
Years: 1915 to Present Country / Region: Canada Summary: Provided technical resource for large litigation action in the area of machine insulation.

Career Accomplishments

Associations / Societies
IET,
IEEE
Licenses / Certifications
He is a Chartered Profesional Engineer, (C.Eng).
He is an FAA certified commercial pilot.
Professional Appointments
He was the IEEE Dielectrics & Electrical Insulation Society
President 95/96, VP Technical 91/92, VP Admin 93/94; IEEE CEIDP Board & Executive; IEEE Technical Activities Board; IEEE DEIS Education Committee Chairman; IEEE DEIS Membership Development Chairman; CIGRE Working Group 12/15-02; IEEE TAB Meetings Council; and on the Refereeing panels of NSF, J. Electrostatics, IEE, IEEE, and the Inst. of Physics.
In 2010-12 he was elected to the Board of the IEEE and still serves on some of its major committees.
Awards / Recognition
Expert is a fellow of the IEEE, a fellow of the IEE, and a CIGRE U.S. national expert. Awards he has received include: the IEE Snell Premium, the British Council Research Award, the Royal Society Award, the ExpertR. Beard Award, GE Patent Award, the Japan Soc Science Fellowship, the IEEE Whitehead Lecturer, Tropper Lecturer, and Ziyu Liu Memorial Lecturer. The IEE of Japan awarded him the Inuishi award, and the Edison Electric Institute their Educator Award. Other awards include the ASNT Fellowship Award, the IEEE Forster Award, and the IEEE Millennium Medal.
Publications and Patents Summary
He has over 250 published papers, several issued patents and book chapters -- mainly in the area of dielectric phenomena.

Additional Experience

Expert Witness Experience
Many of his consulting assignments are done for lawyers, some of which involved court appearances and depositions.
Training / Seminars
He was the co-author of the IEEE video course on High-Voltage Technology.
He has provided short course offerings to multiple industrial clients, and taught two distance education courses.
Other Relevant Experience
He has developed in-depth skills in many attendant technologies such as finite element field analysis, computer-based diagnostic instrumentation, high-speed optical techniques, discharge detection, transient measurement, materials characterization, etc. As a result, much of his consulting work has involved troubleshooting industrial systems - especially those subject to dielectric failure.

He has strong analytical skills with software for power system analysis, electric field evaluation, transient analysis, etc.

Fields of Expertise

dielectric fluid, dielectric material, dielectric strength, liquid dielectric, electric breakdown, breakdown voltage, dielectric breakdown, transformer oil, electrical insulation aging, electrical insulation material, electrically insulating fluid, high-voltage material, gaseous insulation, partial discharge, electrostatic discharge, failure analysis, insulation testing, nanocomposite, nanoparticle, streaming, particle-initiated electrical breakdown, sulfur hexafluoride, gas-insulated substation, arcing fault, electrostatic charge, high-voltage insulation, multilayer insulation, Electric Power Research Institute, nanostructure, electrically insulating oil, fluorochemical, oil degradation, high-potential test, power engineering, dielectric coating, dielectric property measurement, time-dependent dielectric breakdown, organic/inorganic sol-gel nanocomposite material, novolac resin, high-frequency electrical insulation aging, organic dielectric material, electric power generation equipment, electric susceptibility, cable terminal, electrostatic precipitation, permittivity, brush discharge, high-voltage rubber compound, high-voltage engineering, high-voltage, industrial electric power transmission, outdoor electrical insulation, transformer design, nanotechnology, troubleshooting, electric transient, electrically insulating paper, electric power transmission, alternating-current transformer, diagnostic instrumentation, insulation material, electric power utility, electrical wire insulation, high-voltage transformer, oil, voltage breakdown, underground power cable, electrical treeing, switchgear, power line, electrical insulation testing, gas breakdown, finite element analysis, materials failure analysis, epoxy resin, electrostatics, dry electrostatic precipitator, electrostatic precipitator, electron avalanche, electric power plant, electric arc, dielectric property, solid-dielectric property, dielectric device, capacitor

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