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Fire Sprinkler Seismic Bracing PDF Cheatsheet - MeyerFire

    https://www.meyerfire.com/blog/fire-sprinkler-seismic-bracing-pdf-cheatsheet
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#318 – Seismic Design for Fire Sprinklers, Part 2: Seismic Bracing

    https://blog.qrfs.com/318-seismic-design-for-fire-sprinklers-part-2/
    Because this hardware that is attached to structural members is vulnerable during an earthquake, section 18.5 of NFPA 13 requires seismic bracing for fire sprinkler risers, main lines, and branch lines 2.5 inches or larger if the building falls into a …

Introduction to Seismic Protection for Sprinkler Systems

    https://www.nfpa.org/News-and-Research/Publications-and-media/Blogs-Landing-Page/NFPA-Today/Blog-Posts/2021/03/19/Introduction-to-Seismic-Protection-for-Sprinkler-Systems
    The maximum spacing of lateral braces of 40 ft (12 m) is based on the strength of the piping as a beam under the uniform load of its expected horizontal “weight.” Longitudinal braces are required at a maximum spacing of 80 ft (24 m). Lateral Sway Bracing (Drawings courtesy of AFCON) Longitudinal Sway Bracing (Drawings courtesy of AFCON)

How to Determine if Sprinklers Require Seismic? - MeyerFire

    https://www.meyerfire.com/blog/how-to-determine-if-sprinklers-require-seismic
    Its scope covers the minimum design criteria for nonstructural components (like fire suppression systems) that are attached to the structure. ASCE 7 Chapter 13 suggests that seismic bracing is required for all structures, unless they meet an exemption. Section 13.1.4 specifically lists exemptions from seismic design requirements.

NFPA 13 Seismic Bracing Requirements: Cable Sway Braces

    https://blog.qrfs.com/320-nfpa-13-seismic-bracing-requirements/
    The fundamental job of seismic braces is to resist the seismic load a system will experience during an earthquake. To properly design and install them, you need to calculate this value for your fire sprinkler system. Seismic load is a measure of force —the force of a fire sprinkler system shaking back and forth during an earthquake.

Seismic Design for Fire Sprinkler Pipes: An Overview - QRFS

    https://blog.qrfs.com/315-seismic-design-for-fire-sprinkler-pipes-part-1/
    The failure of a fire sprinkler system after an earthquake means significant expense to get these systems back online and presents a serious risk to life safety. The latter is especially a concern, given the greater likelihood of fires after an earthquake. QRFS can outfit you with key seismic design components.

Seismic Design For Fire Sprinkler Systems - Steven …

    https://www.scandaliato.com/seismic-design-for-fire-sprinkler-systems-part-2c-clearance-and-sway-bracing/
    The maximum spacing for these braces is 80 feet. As with lateral braces, you are required to install a longitudinal brace within half the allowable distance between braces, meaning you must have one brace within 40 feet of …

Anvil Fire Blog: Seismic Design For Fire Sprinkler Systems

    https://blog.anvil-fire.com/2011/03/seismic-design-for-fire-sprinkler.html
    These values are typically determined by the USGS and the official definitions are as follows: Ss = mapped MCE, 5 percent damped, spectral response acceleration parameter at short periods S1 = mapped MCE, 5 percent damped, spectral response acceleration parameter at a period of 1 second MCE = Maximum Considered Earthquake effects

Seismic Bracing UL FM Approved Fire Sprinkler …

    https://www.eaton.com/content/dam/eaton/products/support-systems/tolco-seismic-bracing/seismic-bracing-ul-fm-approved-fire-sprinkler-systems-flyer-sa309005en.pdf
    seismic bracing products are specified worldwide for bracing fire sprinkler systems to help against damage from earthquakes. Installing our UL listed and FM approved bracing products help to ensure compliance with the National Fire Protection Association Standard for the Installation of Fire Sprinkler systems (NFPA 13). Why TOLCO seismic bracing?

Seismic Bracing Archives - PHD Manufacturing

    https://phd-mfg.com/product-category/fire-protection-seismic/seismic-bracing/
    Designed for bracing pipe against sway and seismic disturbances. Universal swivel design allows for attachment at any surface angle combined with concentric loading. Structure attachment fitting designed to use 1” thru 2” SCH 40 pipe, structural steel, and PHD 12 gauge strut channel (1001 & 1201) as sway bracing elements.

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