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| 005 | 20250920161840.0 | ||
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_a _aFinancial Viability of Fiber-Reinforced Polymer (FRP) Bridges _d _b _n _c _h6 _p |
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_a _aABSTRACT : The application of fiber-reinforced polymer (FRP) technology to bridges can provide performance enhancements at a time when there is a large and growing need to replace aging bridges in the United States. However, construction costs are significantly higher than with traditional methods, and it is not clear if this technology can become competitive in the standard short-span bridge market. This study investigates current and future costs to determine how cost competitive this technology is likely to become, taking into account the expected improvements in manufacturing, transport, and installation, as well as life-cycle differences. Based on two demonstration FRP bridges and the learning curve approach, the results show that anticipated improvements would not be sufficient to compete on cost with reinforced-concrete bridges. Unless significant improvement also occurs in the cost of component material, this technology will not be cost competitive for the standard short-span bridge, and the application of FRP technology will be limited to other segments of the market, such as bridge deck construction and bridge repair. _d _b _c56 |
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_x _x _aLife cycle cost _d _b _zFinancial management _yCost analysis _2sears0 _v |
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_i _i _t _c _bSteve E. Watkins _s1 _q _f _k40 _p _d _e _aHalvard E. Nystrom _l _n6 |
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_a _aJournal of Management in Engineering 19(1): January 2003. pp. 2-8. _d _g _m _t _b _v _i _p |
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