Second Interim Report on the Installation and Evaluation of Weigh-in-motion Utilizing Quartz-piezo Sensor Technology
Author: Donald A. Larsen
Publisher:
Published: 1999
Total Pages: 100
ISBN-13:
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Author: Donald A. Larsen
Publisher:
Published: 1999
Total Pages: 100
ISBN-13:
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Publisher:
Published: 2007
Total Pages: 142
ISBN-13:
DOWNLOAD EBOOKThis project investigated funding sources, design options, and viable locations for a traffic monitoring equipment evaluation facility. The project provided research and development to design a generic facility to evaluate traffic data collection equipment and sensors and perform traffic data collection research. This report covers the entirety of this 2-year project, identifying potential funding sources and candidate sites for further consideration, developing site design aspects for the two most promising sites, and evaluating Kistler Lineas Quartz weigh-in-motion sensors.
Author: Anne-Marie H. McDonnell
Publisher:
Published: 2004
Total Pages: 174
ISBN-13:
DOWNLOAD EBOOKAuthor: James O. Burt
Publisher:
Published: 1976
Total Pages: 64
ISBN-13:
DOWNLOAD EBOOKAuthor: Alper Erturk
Publisher: John Wiley & Sons
Published: 2011-04-04
Total Pages: 377
ISBN-13: 1119991358
DOWNLOAD EBOOKThe transformation of vibrations into electric energy through the use of piezoelectric devices is an exciting and rapidly developing area of research with a widening range of applications constantly materialising. With Piezoelectric Energy Harvesting, world-leading researchers provide a timely and comprehensive coverage of the electromechanical modelling and applications of piezoelectric energy harvesters. They present principal modelling approaches, synthesizing fundamental material related to mechanical, aerospace, civil, electrical and materials engineering disciplines for vibration-based energy harvesting using piezoelectric transduction. Piezoelectric Energy Harvesting provides the first comprehensive treatment of distributed-parameter electromechanical modelling for piezoelectric energy harvesting with extensive case studies including experimental validations, and is the first book to address modelling of various forms of excitation in piezoelectric energy harvesting, ranging from airflow excitation to moving loads, thus ensuring its relevance to engineers in fields as disparate as aerospace engineering and civil engineering. Coverage includes: Analytical and approximate analytical distributed-parameter electromechanical models with illustrative theoretical case studies as well as extensive experimental validations Several problems of piezoelectric energy harvesting ranging from simple harmonic excitation to random vibrations Details of introducing and modelling piezoelectric coupling for various problems Modelling and exploiting nonlinear dynamics for performance enhancement, supported with experimental verifications Applications ranging from moving load excitation of slender bridges to airflow excitation of aeroelastic sections A review of standard nonlinear energy harvesting circuits with modelling aspects.
Author: Mark E. Hallenbeck
Publisher:
Published: 1987
Total Pages: 74
ISBN-13:
DOWNLOAD EBOOKAuthor: United States. Federal Highway Administration. Office of Highway Information Management
Publisher:
Published: 1992
Total Pages: 208
ISBN-13:
DOWNLOAD EBOOKAuthor: Wiley D. Cunagin
Publisher:
Published: 1993
Total Pages:
ISBN-13:
DOWNLOAD EBOOKAuthor: A. T. Papagiannakis
Publisher: Transportation Research Board
Published: 2008
Total Pages: 413
ISBN-13: 0309098157
DOWNLOAD EBOOKAuthor: A. T. Papagiannakis
Publisher: John Wiley & Sons
Published: 2017-02-22
Total Pages: 555
ISBN-13: 1119412773
DOWNLOAD EBOOKA comprehensive, state-of-the-art guide to pavement design and materials With innovations ranging from the advent of SuperpaveTM, the data generated by the Long Term Pavement Performance (LTPP) project, to the recent release of the Mechanistic-Empirical pavement design guide developed under NCHRP Study 1-37A, the field of pavement engineering is experiencing significant development. Pavement Design and Materials is a practical reference for both students and practicing engineers that explores all the aspects of pavement engineering, including materials, analysis, design, evaluation, and economic analysis. Historically, numerous techniques have been applied by a multitude of jurisdictions dealing with roadway pavements. This book focuses on the best-established, currently applicable techniques available. Pavement Design and Materials offers complete coverage of: The characterization of traffic input The characterization of pavement bases/subgrades and aggregates Asphalt binder and asphalt concrete characterization Portland cement and concrete characterization Analysis of flexible and rigid pavements Pavement evaluation Environmental effects on pavements The design of flexible and rigid pavements Pavement rehabilitation Economic analysis of alternative pavement designs The coverage is accompanied by suggestions for software for implementing various analytical techniques described in these chapters. These tools are easily accessible through the book’s companion Web site, which is constantly updated to ensure that the reader finds the most up-to-date software available.