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1

Costa, Aníbal, João Miranda Guedes, and Humberto Varum, eds. Structural Rehabilitation of Old Buildings. Berlin, Heidelberg: Springer Berlin Heidelberg, 2014. http://dx.doi.org/10.1007/978-3-642-39686-1.

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2

Adhikari, Sondipon, B. Bhattacharjee, and J. Bhattacharjee, eds. Advances in Structural Engineering and Rehabilitation. Singapore: Springer Singapore, 2020. http://dx.doi.org/10.1007/978-981-13-7615-3.

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3

Harrison, Deed E. CBP structural rehabilitation of the lumbar spine. [Evanston, Wyo.]: Harrison CBP Seminars, 2008.

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4

Bakhoum, Mourad M., and Juan A. Sobrino, eds. Case Studies of Rehabilitation, Repair, Retrofitting, and Strengthening of Structures. Zurich, Switzerland: International Association for Bridge and Structural Engineering (IABSE), 2010. http://dx.doi.org/10.2749/sed012.

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<p>This document provides case studies of structural rehabilita-tion, repair, retrofitting, strengthening, and upgrading of structures, which might be encompassed – in short – by the convenient umbrella terms “Conservation / Upgrading of Existing Structures”. The selected studies presented in this SED cover a variety of structural types from different countries.</p> <p>Strengthening and rehabilitation of structures is usually a challenge because of uncertainties associated with old struc-tures and difficulties due to restrictions on the geometry and materials used, as well as other structural or functional con-straints. When repairing an existing structure the engineers involved have plenty of possibilities, lots of constraints, and in some cases there are no applicable codes. Strengthening and rehabilitating is sometimes a complex and exciting work; an art.</p> <p>The book is a summary of practices to help structural engineers. The reader of this book will discover different approaches to put forward strengthening or rehabilitation projects. Even identical technical problems could have very different efficient solutions, as discussed in the papers, considering structural, environmental, economic factors, as well as contractor and designer experience, materials, etc.</p>
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5

Krimgold, Frederick. Engineering guideline for incremental seismic rehabilitation. Washington, D.C.]: Federal Emergency Management Agency, 2009.

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6

(India), Institution of Engineers, ed. Rehabilitation and retrofitting of structures. [New Delhi]: Institution of Engineers (I), 2010.

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7

Brockenbrough, R. L. AISC rehabilitation and retrofit guide: A reference for historic shapes and specifications. Chicago, IL: American Institute of Steel Construction, 2002.

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8

Plevris, Vagelis, and Panagiotis G. Asteris. Handbook of research on seismic assessment and rehabilitation of historic structures. Hershey, PA: Engineering Science Reference, 2015.

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9

Krimgold, Frederick. Incremental seismic rehabilitation of office buildings: Providing protection to people and buildings. Washington, D.C.]: U.S. Dept. of Homeland Security, FEMA, 2003.

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10

Paolo, Spinelli, and De Luca Antonello, eds. Wondermasonry: Workshop on design for rehabilitation of masonry structures = tecniche di modellazione e progetto per interventi sul costruito muratura. Firenze: Polistampa, 2009.

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11

Krimgold, Frederick. Incremental seismic rehabilitation of hotel and motel buildings: Providing protection to people and buildings. [Washington, D.C.]: U.S. Dept. of Homeland Security, FEMA, 2005.

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12

Krimgold, Frederick. Incremental seismic rehabilitation of school buildings (K-12): Providing protection to people and buildings. Washington, D.C.]: U.S. Dept. of Homeland Security, FEMA, 2003.

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13

Force, Oregon Seismic Rehabilitation Task. Seismic rehabilitation of existing buildings in Oregon: Report to the sixty-ninth Oregon Legislative Assembly. [Salem, Or.?]: The Task Force, 1996.

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14

Krimgold, Frederick. Incremental seismic rehabilitation of hospital buildings: Providing protection to people and buildings. [Washington, D.C.]: U.S. Department of Homeland Security, Federal Emergency Management Agency (FEMA), 2003.

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15

Wondermasonry: Workshop on design for rehabilitation of masonry structures = tecniche di modellazione e progetto per interventi sul costruito in muratura, Firenze, 6 aprile 2006 Facoltà di ingegneria. Firenze: Polistampa, 2006.

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16

Sabnis, Gajanan M. Seismic rehabilitation of concrete structures. Edited by Shroff Avanti C and Kahn L. F. 1945-. Farmington Hills, Mich: American Concrete Institute, 1996.

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17

Laidler, Polly. Stroke rehabilitation: Structure and strategy. London: Chapman & Hall, 1994.

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18

Woodson, R. Dodge. Concrete structures: Protection, repair and rehabilitation. Amsterdam: Butterworth-Heinemann, 2009.

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19

Concrete structures: Protection, repair and rehabilitation. Amsterdam: Butterworth-Heinemann, 2009.

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20

Ilki, Alper, and Michael N. Fardis, eds. Seismic Evaluation and Rehabilitation of Structures. Cham: Springer International Publishing, 2014. http://dx.doi.org/10.1007/978-3-319-00458-7.

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21

Khan, Mohiuddin A. Bridge and highway structure rehabilitation and repair. New York: McGraw-Hill, 2010.

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22

Khan, Mohiuddin A. Bridge and highway structure rehabilitation and repair. New York: McGraw-Hill, 2010.

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23

Bachmann, Hugo, and Walter Ammann. Vibrations in Structures. Zurich, Switzerland: International Association for Bridge and Structural Engineering (IABSE), 1987. http://dx.doi.org/10.2749/sed003e.

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<p>«Vibrations in Structures» concentrates on vibrations in structures as excited by human motion or machine operation. Man-induced vibrations may arise from walking, running, skipping, dancing, etc. They occur mostly in pedestrian structures, office buildings, gym­nasia and sports halls, dancing and concert halls, stadia, etc. Existing publications treat by and large some isolated aspects of the problem; the present one attempts, for the first time, a systematic survey of man-induced vibrations. Machine-induced vibrations occur during the operation of all sorts of machinery and tools with rotating, oscillating or thrusting parts. The study concentrates rather on small and medium size machinery placed on floors of industrial buildings and creating a potential source of undesirable vibrations. The associ­ated questions have rarely been tackled to date; they entail probiems similar to those of man-induced vibrations.</p> <p>The book is consciously intended to serve the practising structural engineer and not primarily the dynamic specialist. It should be noted that its aim is not to provide directions on how to perform comprehensive dynamic computations. Instead, it attempts the following:</p> <ol> <li>to show where dynamic problems could occur and where a word of caution is good advice;</li> <li>to further the understanding of the phenomena encountered as well as of the underlying principles;</li> <li>to impart the basic knowledge for assessing the dynamic behaviour of the structures or structural elements;</li> <li>to describe suitable measures, both preventive to be applied in the design stage and remedial in the case of rehabilitation.</li> </ol>
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24

International Association for Bridge and Structural Engineering, ed. Case studies of rehabilitation, repair, retrofitting, and strengthening of structures. Zurich, Switzerland: IABSE, 2010.

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25

Rose, David De. The rehabilitation of a concrete structure using fibre reinforced plastics. Ottawa: National Library of Canada = Bibliothèque nationale du Canada, 1999.

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26

Heritage, Centre for Conservation &. Preservation of Islamic Architectural. Rehabilitation of Hala Sultan Tekke mosque, Larnaca, Cyprus. Cairo, Egypt: Centre for Conservation & Preservation of Islamic Architectural Heritage, 2004.

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27

Cromie, James Alexander. Modelling the electrochemical rehabilitation of chloride contaminated reinforced concrete bridge structures. [s.l: The Author], 1998.

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28

Skeletal muscle structure, function, and plasticity: The physiological basis of rehabilitation. 3rd ed. Baltimore: Lippincott Williams & Wilkins, 2010.

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29

Skeletal muscle structure and function: Implications for rehabilitation and sports medicine. Baltimore: Williams & Wilkins, 1992.

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30

National Association of Corrosion Engineers. Maintenance and rehabilitation considerations for corrosion control of existing steel reinforced concrete structures. Houston: NACE, 1990.

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31

Conference, on Seismic Repair &. Rehabilitation of Structures (2nd 2000 Fullerton Calif ). Innovative systems for seismic repair and rehabilitation of structures : design and application: Proceedings of Second Conference on Seismic Repair and Rehabilitation of Structures (SRRS2), Fullerton, California, March 21-22, 2000. Lancaster, Penn: Technomic, 2000.

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32

Secretariat, Kagera Basin Organization. Rehabilitation of Maziba Small Hydro-electric Station (Kabale, Uganda): Feasibility study. [Kigali]: Organization for the Management and Development of the Kagera River Basin, Secretariat, 1988.

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33

National Association of Corrosion Engineers. Maintenance and rehabilitation consid erations for corrosion control of existing steel reinforced concrete structures. Houston: National Association of Corrosion Engineers, 1990.

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34

Justice, Ireland Dept of. A proposal for a structured psychological treatment programme for sex offenders: Discussion document. Dublin: Stationery Office, 1993.

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35

Florida. Legislature. House of Representatives. Committee on Health and Rehabilitative Services. Interim project report: The organizational structure of the Department of Health & Rehabilitative Services. Tallahassee, Fla: Florida House of Representatives, 1990.

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36

Kostov, Dimitŭr. Urban development for the conservation and rehabilitation of the historic city of Plovdiv. Nairobi, Kenya: United Nations Centre for Human Settlements (Habitat), 1991.

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37

Diefenderfer, Brian K. Network-level pavement evaluation of Virginia's interstate system using the falling weight deflectometer. Charlottesville, Va: Virginia Transportation Research Council, 2008.

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38

Delhi, India) Conference on Rehabilitation of Dams (2014 New. Dams India 2014: Rehabilitation of dams and appurtenants structures, 27-28 may 2014, New Delhi : proceedings. New Delhi]: [Central Board of Irrigation & Power], 2014.

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39

Engineers, Anderson Consulting. Final report, Highline Watershed Improvement District ditch rehabilitation project, level II. Fort Collins, CO: The Engineers, 1999.

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40

Megahey, John P. Rhetoric and reality of participation in decision-making structures by disabled people in rehabilitation services in Ireland. Dublin: University College Dublin, 1997.

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41

Carver, Robert D. Prototype experience with the use of dissimilar armor for repair and rehabilitation of rubble-mound coastal structures. [Vicksburg, Miss: U.S. Army Engineer Waterways Experiment Station, 1989.

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42

Carver, Robert D. Prototype experience with the use of dissimilar armor for repair and rehabilitation of rubble-mound coastal structures. [Vicksburg, Miss: U.S. Army Engineer Waterways Experiment Station, 1989.

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43

States West Water Resources Corporation. West Side Canal rehabilitation of the Jons Drop structure and the Four Mile Flume, level II study. Cheyenne, Wyo: States West, 2002.

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44

Wagner, Richard D. Preserving a heritage: Standards and illustrated guidelines for rehabilitating historic Air Force buildings and structures. Washington, DC: Office of the Civil Engineer, U.S. Air Force, 1996.

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45

Structural Rehabilitation of Old Buildings. Springer, 2013.

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46

Costa, Aníbal, João Miranda Guedes, and Humberto Varum. Structural Rehabilitation of Old Buildings. Springer, 2016.

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47

Harrison, Deed E. CBP structural rehabilitation of the cervical spine. Harrison CBP Seminars, 2002.

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48

Bakht, Baidar, and Aftab Mufti. Bridges: Analysis, Design, Structural Health Monitoring, and Rehabilitation. Springer, 2018.

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49

Bakht, Baidar, and Aftab Mufti. Bridges: Analysis, Design, Structural Health Monitoring, and Rehabilitation. Springer, 2015.

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50

Structural Assessment /Hud Rehabilitation Guideline Series No. 9/. Apt Foundation, 1990.

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