AHRI 1270 I-P-2015 Requirements for Seismic Qualification of HVACR Equipment.pdf
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1、 2015 Standard for Requirements for Seismic Qualification of HVACR Equipment AHRI Standard 1270 (I-P) Price $10.00 (M) $20.00 (NM) Copyright 2015, by Air-Conditioning Heating and Refrigeration Institute Printed in U.S.A. Registered United States Patent and Trademark Office IMPORTANT SAFETY DISCLAIME
2、R AHRI does not set safety standards nor does it certify or guarantee the safety of any products, components or systems designed, tested, rated, installed or operated in accordance with this standard/guideline. It is strongly recommended that products be designed, constructed, assembled, installed a
3、nd operated in accordance with nationally recognized safety standards and code requirements appropriate for products covered by this standard/guideline. AHRI uses its best efforts to develop standards/guidelines employing state-of-the-art and accepted industry practices. AHRI does not certify or gua
4、rantee that any tests conducted under its standards/guidelines will be non-hazardous or free from risk. Note: This standard supersedes the 2015 version. For SI ratings, see AHRI Standard 1271 (SI)-2015. TABLE OF CONTENTS Section 1. Purpose . 1 Section 2. Scope 1 Section 3. Definitions 1 Section 4. S
5、ymbols 4 Section 5. Equipment 4 Section 6. Seismic Demand . 8 Section 7. Seismic Capacity of Equipment by Analysis 10 Section 8. Seismic Capacity of Equipment by Testing 13 Section 9. Report Requirements 18 Section 10. Seismic Rating of Equipment . 211 TABLES Table 1. Seismic Performance Level; Func
6、tionality (per ASCE 7 Section 13.2.2) . 6 Table 2. Seismic Performance Level; Structural Integrity (per ASCE 7 Section 13.2.1) 7 Table 3. Load Combinations . 12 Table 4. Analytical Procedures 123 Table 5. Functional Requirements For Designated Seismic Systems 15 Table 6. Allowable Minor Damage State
7、s for Designated Seismic Systems 16 Table 7. Allowable Minor Damage States for Components of Designated Seismic System Equipment 17 APPENDICIES Appendix A. References Normative . 222 Appendix B. References Informative . 23 Appendix C. ASCE 7 Commentary C13 Seismic Design Requirements for Nonstructur
8、al Components -Informative . 25 Appendix D. Seismic Design of Liquid Storage Tanks-Informative . 26 Appendix E. Software Validation- Normative 28 FIGURES Figure 1. Qualification Flowchart . 5 Figure 2. RRS, Normalized For Equipment 8 AHRI STANDARD 1270 (I-P)-2015 1 REQUIREMENTS FOR SEISMIC QUALIFICA
9、TION OF HVACR EQUIPMENT Section 1. Purpose 1.1 Purpose. The purpose of this standard is to define the requirements for seismic qualification of mechanical HVACR Equipment. The 2012 International Building Code (IBC) includes a number of provisions for seismic design and certification of nonstructural
10、 components. These provisions are intended to improve the performance of non-essential and essential nonstructural systems subject to strong ground shaking. Both the IBC and the American Society of Civil Engineers Standard SEI/ASCE 7 (ASCE 7) contain requirements for qualification of Equipment. Sect
11、ion 2. Scope 2.1 Scope. This standard applies to the following Equipment: Fan Coil Units, Unit Ventilators, Air Handling Units, Coils, Air-to-Air Heat Exchangers, Vertical Packaged Air Conditioners and Heat Pumps, Packaged Terminal Equipment, Dehumidifiers, Flow and Contaminant Controls, Furnaces, H
12、umidifiers, Liquid Chillers, Thermal Storage Equipment, Unitary Air Conditioners and Heat Pumps (including Ductless Equipment), and Water-Source Heat Pumps. This standard does not apply to any other products. This standard describes the methods for equipment qualification and the process to determin
13、e equipment Seismic Capacity. The applicability of this standard to equipment not specifically listed in the scope has not been considered. Section 3. Definitions All terms in this document shall follow the standard industry definitions in the current edition of ASHRAE Terminology website (https:/ww
14、w.ashrae.org/resources-publications/free-resources/ashrae-terminology) or the International Code Council Evaluation Services (ICC-ES) Acceptance Criteria AC156 (AC156), unless otherwise defined in this section. 3.1 Active Component. A component or sub-assembly that is critical to the functional perf
15、ormance of the equipment that includes moving or rotating parts, electrical parts such as switches or relays, or other internal component that is sensitive to earthquake forces. Examples of Active Components include: fans, variable frequency drives, control panels, and damper assemblies. 3.2 Active
16、Equipment. Equipment that contains Active Components. 3.3 Allowable Stress Design (ASD). A comparison of the stresses in the connections/elements defined in the Equipment Force-Resisting System (EFRS) determined by analysis from the effects of design loads to the allowable stresses for the material
17、used in the EFRS. 3.4 Attachments. The devices or hardware used to secure or restrain the Equipment to the building structure. Attachments or restraints of the Equipment include anchor bolting, welded connections and mechanical fasteners. 3.5 Attachment Point. The point at which the Equipment is con
18、nected to the building structure. This connection point is designed to transfer seismic forces between the structure and the Equipment. AHRI STANDARD 1270 (I-P)-2015 2 3.6 Certificate of Compliance. A certificate stating the Seismic Capacity of Equipment determined using methods of this standard. 3.
19、7 Certification Response Spectrum (CRS). For shake table testing, certification will be performed based on a Required Response Spectrum (RRS) which determines the input motion at the equipment attachment. For this application, the CRS is the RRS. For dynamic analysis certification of Equipment, the
20、CRS defines the forcing function in terms of octaves used by the analysis program to define the input of motion at the equipment attachment. The CRS constitutes the Seismic Capacity of the Equipment if it satisfies the acceptance criteria as defined in this standard. 3.8 Component. Devices that can
21、be individually qualified per this standard and joined with other Pre-Qualified Components or EFRS qualified separately for multi-component Equipment such as motors, coils, fans, valves, dampers, and etc. 3.9 Component Amplification Factor. A factor for a component that is not attached to the Equipm
22、ents substructure at the base, but somewhere above in the unit. The unit may have some internal amplification because of the response to the dynamic forcing functions. For example, a fan on top of a cooling tower may see higher seismic shaking than if it was attached to the base. This higher demand
23、must be defined so the fan (Component) will need to have a higher capacity in order for the cooling tower itself to be rated at the demand at the attachment point. 3.0 Damping. Energy dissipation mechanism that reduces amplification and broadens the vibratory response. Damping is expressed as a perc
24、entage of critical Damping applied near the natural frequency of the Equipment. 3.11 Design Earthquake. The earthquake effects that are two-thirds of the corresponding maximum considered earthquake (MCE) effects. 3.12 Designated Seismic System. The architectural, electrical and mechanical systems an
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