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Prefabricated Concrete Applications (52): PRESSS Recoverable Functional Seismic Design Part 2

Below are two distinct buildings demonstrating the application of PRESS technology, both situated in California’s high seismic activity zone.

The first example is an office building featuring SP floor slabs.

Figure 1-1

Prefabricated Concrete Application and Practice (52) - PRESSS Recoverable Functional Seismic Design (2)

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Prefabricated Concrete Application and Practice (52) - PRESSS Recoverable Functional Seismic Design (2)

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Prefabricated Concrete Application and Practice (52) - PRESSS Recoverable Functional Seismic Design (2)

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Prefabricated Concrete Application and Practice (52) - PRESSS Recoverable Functional Seismic Design (2)

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Prefabricated Concrete Application and Practice (52) - PRESSS Recoverable Functional Seismic Design (2)

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Prefabricated Concrete Application and Practice (52) - PRESSS Recoverable Functional Seismic Design (2)

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Prefabricated Concrete Application and Practice (52) - PRESSS Recoverable Functional Seismic Design (2)

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Prefabricated Concrete Application and Practice (52) - PRESSS Recoverable Functional Seismic Design (2)

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Prefabricated Concrete Application and Practice (52) - PRESSS Recoverable Functional Seismic Design (2)

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Prefabricated Concrete Application and Practice (52) - PRESSS Recoverable Functional Seismic Design (2)

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Prefabricated Concrete Application and Practice (52) - PRESSS Recoverable Functional Seismic Design (2)

The second building is a three-dimensional parking garage attached to a commercial complex (Figure 2-1), utilizing large-span double T beams. Figure 2-2 clearly illustrates the PRESS seismic frame.

Picture 2-1

Prefabricated Concrete Application and Practice (52) - PRESSS Recoverable Functional Seismic Design (2) integrated decoration

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Prefabricated Concrete Application and Practice (52) - PRESSS Recoverable Functional Seismic Design (2)

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Prefabricated Concrete Application and Practice (52) - PRESSS Recoverable Functional Seismic Design (2)

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Prefabricated Concrete Application and Practice (52) - PRESSS Recoverable Functional Seismic Design (2)

Figures 2-5 through 2-8 depict the lifting of special double T beams, while Figure 2-9 shows the area where post-tensioning repairs have been made.

Picture 2-5

Prefabricated Concrete Application and Practice (52) - PRESSS Recoverable Functional Seismic Design (2)

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Prefabricated Concrete Application and Practice (52) - PRESSS Recoverable Functional Seismic Design (2)

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Prefabricated Concrete Application and Practice (52) - PRESSS Recoverable Functional Seismic Design (2)

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Prefabricated Concrete Application and Practice (52) - PRESSS Recoverable Functional Seismic Design (2)

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Prefabricated Concrete Application and Practice (52) - PRESSS Recoverable Functional Seismic Design (2)

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Prefabricated Concrete Application and Practice (52) - PRESSS Recoverable Functional Seismic Design (2)

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Prefabricated Concrete Application and Practice (52) - PRESSS Recoverable Functional Seismic Design (2)

Figure 2-12 demonstrates how using cow legs of varying heights simplifies factory construction. Figure 2-13 displays the plastic pipe installed at the slurry outlet.

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Prefabricated Concrete Application and Practice (52) - PRESSS Recoverable Functional Seismic Design (2)

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Prefabricated Concrete Application and Practice (52) - PRESSS Recoverable Functional Seismic Design (2)

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