- Tech Report 23
- Aaleti, Sriram 1
- Basnet, K 1
- Becker, Matthew 1
- Berg, Owen 1
- Bigelow, Jake 1
- Bowers, Ryan 1
- Bowers, Ryan P. 1
- Constantinescu, George 1
- Dahlberg, Justin 1
- Dahlberg, Justin M. 2
- Fanous, Fouad 1
- Freeseman, Katelyn 1
- Garder, Jessica 1
- Garder, Jessica A. 1
- Greimann, Lowell 3
- Hans, Zach 1
- Hockerman, Samantha 1
- Hosteng, Travis 5
- Klaiber, F. Wayne 1
- Klaiber, Wayne 1
- Klaiber. F. Wayne 1
- Lu, Ping 3
- Miksell, Jacob 1
- Muste, Marian 1
- Nadermann, Anna 1
- Ng, Kam 1
- Ng, Kam W. 1
- Petersen, Bradley 1
- Phares, Brent 12
- Phares, Brent M. 4
- Pohlkamp, Mitchell 1
- Roling, Matthew J. 1
- Rouse, Jon 3
- Sritharan, Sri 3
- Wineland, Vernon 1
- Wipf, Terry 2
- Wipf, Terry J. 6
- Bridge Engineering Center (23)
- Iowa. Dept. of Transportation 6
- Iowa. Dept. of Transportation. Office of Bridges and Structures 1
- Iowa State University. Bridge Engineering Center 2
- Iowa State University. Center for Transportation Research and Education 3
- Iowa State University. Institute for Transportation 10
- United States. Federal Highway Administration 1
- 3D photogrammetry 1
- Accelerated tests 3
- Algorithms 1
- Bearing capacity 5
- Bonding and joining 2
- Bridge approaches 2
- Bridge construction 2
- bridge deck overlays 1
- Bridge decks 3
- Bridge design 4
- Bridge foundations 2
- bridge loads 1
- bridge maintenance 1
- Bridge movement 2
- Bridge piers 5
- bridge posting 1
- bridge rating 1
- Bridges 2
- Bridges--Iowa--Abutments 3
- Bridge safety 2
- Bridges and other structures 1
- Bridge substructures 2
- Bridge superstructures 2
- Case studies 4
- Cellular radio 2
- Channels 2
- Channels (Waterways) 2
- computational fluid dynamics 1
- Concrete bridges 1
- concrete overlay delamination 1
- Concrete overlays 1
- Construction 1
- Countermeasures 2
- Databases 2
- Debris flows 2
- Debris mitigation 2
- Debris slides 2
- Deflection 2
- Delamination 1
- Design 1
- Design load 2
- design optimization 1
- Detection and identification systems 3
- dynamic load allowance 1
- Dynamic loads 1
- Economic benefits 4
- epoxy injection specifications 1
- Farm vehicles 1
- Fatigue cracking 1
- Feasibility analysis 1
- Field tests 3
- Finite element method 2
- Fluid dynamics 1
- Girder bridges 1
- Girders--Testing 3
- Guidelines 1
- Hazard mitigation 2
- Hazards 2
- High performance concrete 3
- Highway bridges 4
- Highways 1
- Highway safety 3
- High wind closures 2
- husbandry implements 1
- I24: Design of Bridges and Retaining Walls 1
- I53: Construction of Bridges and 1
- Inspection 4
- Instrumentation 1
- Iowa bridge monitoring 2
- Jointless bridges 1
- Laboratory tests 3
- Live loads 2
- live load testing 1
- Load factor 6
- Load tests 9
- Maintenance management 1
- Manuals 2
- Monitoring 3
- monitoring performance of snow fences 1
- Notching (Cutting) 1
- Optimization 1
- Overweight loads 4
- Photogrammetry 1
- Piers (Supports) 3
- Pile caps 3
- Precast concrete 6
- Precast concrete construction--Iowa 3
- Precast concrete pavements 1
- Prefabricated bridges 2
- Prestressed concrete bridges 1
- Remote sensing 2
- Research Hub 1
- Retaining walls 1
- Rivers 2
- Safety 2
- Safety engineering 2
- Safety factors 2
- Service life 1
- Snow and ice control 1
- Snow deposits 1
- Snowdrifts 1
- Snow fences 1
- Specifications 1
- Static loads 4
- Steel bridges 1
- Streams 2
- Strength of materials 3
- Structural analysis 3
- Structural connection 1
- Structural health monitoring 2
- Superstructure movement 2
- Transportation safety 2
- Transverse joints 2
- Trucks 1
- Ultra high performance concrete 1
- Wind 2
- Wind monitoring system 2
- Wind pressure 2
- Winter maintenance 1
- Wooden bridges 1
- CTRE Project 06-262 3
- FHWA-HIF-13-032 1
- IHRB Project TR-561 3
- IHRB Project TR-574 1
- IHRB Project TR-613 and TPF-5(232) 1
- InTrans Project 07-295 1
- InTrans Project 08-335 1
- InTrans Project 08-336 1
- InTrans Project 10-348 2
- InTrans Project 10-366 1
- InTrans Project 10-372 1
- InTrans Project 10-381 1
- InTrans Project 11-395 2
- InTrans Project 11-411 2
- Part of InTrans Project 12-444 3
- RB01-005 1
- TR-626 1
(Max 200)
- Aaleti, Sriram (1)
- Basnet, K (1)
- Becker, Matthew (1)
- Berg, Owen (1)
- Bigelow, Jake (1)
- Bowers, Ryan (1)
- Bowers, Ryan P. (1)
- Constantinescu, George (1)
- Dahlberg, Justin (1)
- Dahlberg, Justin M. (2)
- Fanous, Fouad (1)
- Freeseman, Katelyn (1)
- Garder, Jessica (1)
- Garder, Jessica A. (1)
- Greimann, Lowell (3)
- Hans, Zach (1)
- Hockerman, Samantha (1)
- Hosteng, Travis (5)
- Klaiber, F. Wayne (1)
- Klaiber, Wayne (1)
- Klaiber. F. Wayne (1)
- Lu, Ping (3)
- Miksell, Jacob (1)
- Muste, Marian (1)
- Nadermann, Anna (1)
- Ng, Kam (1)
- Ng, Kam W. (1)
- Petersen, Bradley (1)
- Phares, Brent (12)
- Phares, Brent M. (4)
- Pohlkamp, Mitchell (1)
- Roling, Matthew J. (1)
- Rouse, Jon (3)
- Sritharan, Sri (3)
- Wineland, Vernon (1)
- Wipf, Terry (2)
- Wipf, Terry J. (6)
- Iowa. Dept. of Transportation (6)
- Iowa. Dept. of Transportation. Office of Bridges and Structures (1)
- Iowa State University. Bridge Engineering Center (2)
- Iowa State University. Center for Transportation Research and Education (3)
- Iowa State University. Institute for Transportation (10)
- United States. Federal Highway Administration (1)
- 3D photogrammetry (1)
- Accelerated tests (3)
- Algorithms (1)
- Bearing capacity (5)
- Bonding and joining (2)
- Bridge approaches (2)
- Bridge construction (2)
- bridge deck overlays (1)
- Bridge decks (3)
- Bridge design (4)
- Bridge foundations (2)
- bridge loads (1)
- bridge maintenance (1)
- Bridge movement (2)
- Bridge piers (5)
- bridge posting (1)
- bridge rating (1)
- Bridges (2)
- Bridges--Iowa--Abutments (3)
- Bridge safety (2)
- Bridges and other structures (1)
- Bridge substructures (2)
- Bridge superstructures (2)
- Case studies (4)
- Cellular radio (2)
- Channels (2)
- Channels (Waterways) (2)
- computational fluid dynamics (1)
- Concrete bridges (1)
- concrete overlay delamination (1)
- Concrete overlays (1)
- Construction (1)
- Countermeasures (2)
- Databases (2)
- Debris flows (2)
- Debris mitigation (2)
- Debris slides (2)
- Deflection (2)
- Delamination (1)
- Design (1)
- Design load (2)
- design optimization (1)
- Detection and identification systems (3)
- dynamic load allowance (1)
- Dynamic loads (1)
- Economic benefits (4)
- epoxy injection specifications (1)
- Farm vehicles (1)
- Fatigue cracking (1)
- Feasibility analysis (1)
- Field tests (3)
- Finite element method (2)
- Fluid dynamics (1)
- Girder bridges (1)
- Girders--Testing (3)
- Guidelines (1)
- Hazard mitigation (2)
- Hazards (2)
- High performance concrete (3)
- Highway bridges (4)
- Highways (1)
- Highway safety (3)
- High wind closures (2)
- husbandry implements (1)
- I24: Design of Bridges and Retaining Walls (1)
- I53: Construction of Bridges and (1)
- Inspection (4)
- Instrumentation (1)
- Iowa bridge monitoring (2)
- Jointless bridges (1)
- Laboratory tests (3)
- Live loads (2)
- live load testing (1)
- Load factor (6)
- Load tests (9)
- Maintenance management (1)
- Manuals (2)
- Monitoring (3)
- monitoring performance of snow fences (1)
- Notching (Cutting) (1)
- Optimization (1)
- Overweight loads (4)
- Photogrammetry (1)
- Piers (Supports) (3)
- Pile caps (3)
- Precast concrete (6)
- Precast concrete construction--Iowa (3)
- Precast concrete pavements (1)
- Prefabricated bridges (2)
- Prestressed concrete bridges (1)
- Remote sensing (2)
- Research Hub (1)
- Retaining walls (1)
- Rivers (2)
- Safety (2)
- Safety engineering (2)
- Safety factors (2)
- Service life (1)
- Snow and ice control (1)
- Snow deposits (1)
- Snowdrifts (1)
- Snow fences (1)
- Specifications (1)
- Static loads (4)
- Steel bridges (1)
- Streams (2)
- Strength of materials (3)
- Structural analysis (3)
- Structural connection (1)
- Structural health monitoring (2)
- Superstructure movement (2)
- Transportation safety (2)
- Transverse joints (2)
- Trucks (1)
- Ultra high performance concrete (1)
- Wind (2)
- Wind monitoring system (2)
- Wind pressure (2)
- Winter maintenance (1)
- Wooden bridges (1)
- CTRE Project 06-262 (3)
- FHWA-HIF-13-032 (1)
- IHRB Project TR-561 (3)
- IHRB Project TR-574 (1)
- IHRB Project TR-613 and TPF-5(232) (1)
- InTrans Project 07-295 (1)
- InTrans Project 08-335 (1)
- InTrans Project 08-336 (1)
- InTrans Project 10-348 (2)
- InTrans Project 10-366 (1)
- InTrans Project 10-372 (1)
- InTrans Project 10-381 (1)
- InTrans Project 11-395 (2)
- InTrans Project 11-411 (2)
- Part of InTrans Project 12-444 (3)
- RB01-005 (1)
- TR-626 (1)
- :Phares, Brent M. ;Wipf, Terry J.2011-01-01:In this work, a previously-developed, statistical-based, damage-detection approach was validated for its ability toautonomously detect damage in bridg...
- :Bridge Engineering Center2008-02-01:Bridge approach pavement settlement and the resulting formation of ‘bumps’ at the endof bridges is a recurring problem on a number of Iowa bridges...
- :Hosteng, Travis ;Phares, Brent2013-08-01:The objective of this work, Pilot Project - Demonstration of Capabilities and Benefits of Bridge Load Rating through Physical Testing, was to demonstr...
- :Sritharan, Sri ;Garder, Jessica2012-06-01:Drilled shafts have been used in the US for more than 100 years in bridges and buildings as a deep foundation alternative. For many of these applicati...
- :Wipf, Terry J. ;Phares, Brent M.2012-06-01:Debris accumulation on bridge piers is an on-going national problem that can obstruct the waterway openings at bridges and result in significant erosi...
- :Wipf, Terry J. ;Phares, Brent M.2012-06-01:Problem statement: Debris accumulation on bridge piers is an on-going national problem that can obstruct waterway openings at bridges and also result ...
- :Phares, Brent M.2012-05-01:Following high winds on January 24, 2006, at least five people claimed to have seen or felt the superstructure of the Saylorville Reservoir Bridge in ...
- :Phares, Brent ;Hosteng, Travis2012-05-01:Following a high wind event on January 24, 2006, at least five people claimed to have seen or felt the superstructure of the Saylorville Reservoir Bri...
- :Klaiber, Wayne ;Wipf, Terry2009-01-01:The importance of rapid construction technologies has been recognized by the Federal Highway Administration (FHWA) and the IowaDOT Office of Bridges a...
- :Phares, Brent ;Wipf, Terry2009-01-01:The importance of rapid construction technologies has been recognized by the Federal Highway Administration (FHWA) and the IowaDOT Office of Bridges a...
- :Greimann, Lowell ;Phares, Brent2017-08-01:The objectives of this study were to develop guidance for engineers on how implements of husbandry loads are resisted by traditional bridges, with a s...
- :Wipf, Terry J. ;Phares, Brent2019-02-01:Since the 1970s, the Iowa Department of Transportation (DOT) has used concrete overlays as a means of restoring its bridge decks and, as a result, the...
- :Constantinescu, George ;Muste, Marian2015-01-09:Blowing and drifting of snow is a major concern for transportation efficiency and road safety in regions where their development is common. One common...
- :Hosteng, Travis ;Phares, Brent2013-08-01:The objective of this work, Pilot Project - Demonstration of Capabilities and Benefits of Bridge Load Rating through Physical Testing, was to demonstr...
- :Rouse, Jon ;Wipf, Terry J.2011-01-01:The Jakway Park Bridge in Buchanan County, Iowa is the first bridge constructed with a new prestesssed girder system composed of precast Ultra-High Pe...
- :Hosteng, Travis ;Phares, Brent2013-08-01:The objective of this work, Pilot Project - Demonstration of Capabilities and Benefits of Bridge Load Rating through Physical Testing, was to demonstr...
- :Phares, Brent ;Rouse, Jon2013-04-01:To address the need for the development of a fast, repeatable, and dependable way to replace “typical” bridges across the country, the Transportat...
- :Garder, Jessica A. ;Ng, Kam W.2012-06-01:Drilled shafts have been used in the US for more than 100 years in bridges and buildings as a deep foundation alternative. For many of these applicati...
- :Phares, Brent ;Rouse, Jon2013-04-01:The US Highway 6 Bridge over Keg Creek outside of Council Bluffs, Iowa is a demonstration bridge site chosen to put into practicenewly-developed Accel...
- :Nadermann, Anna ;Greimann, Lowell2010-04-01:Approach slab pavement at integral abutment (I-A) bridges are prone to settlement and cracking, which has been long recognized by the Iowa Department ...
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