GSO ISO/TS 10811-2:2013
ISO/TS 10811-2:2000
								
									
									Gulf Standard
								
								
								
									 
									Current Edition
									
								
								
									·
									Approved on
									31 December 2013
								
							
							Mechanical vibration and shock -- Vibration and shock in buildings with sensitive equipment -- Part 2: Classification
GSO ISO/TS 10811-2:2013 Files
													English
													
														10 Pages
													
												
												
													
														Current Edition
														
													
													
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			                            GSO ISO/TS 10811-2:2013 Scope
									This part of ISO/TS 10811 defines a method for the classification of shock and vibration in buildings from measurements in accordance with ISO/TS 10811-1. A classification system of environmental vibration conditions should serve as guidelines for designers, manufacturers and users of equipment sensitive to shock and vibration, and for building constructors.
The types of shock and vibration considered are those transmitted from floors, tables, walls, ceilings or isolation systems into an equipment unit. They can be generated by the following:
a) external sources, for example traffic (by road, rail or air), or building and construction activities such as blasting, piling and vibratory compaction; the vibration response to sonic booms and acoustical excitations is also included, as well as weather-induced vibration;
b) equipment for indoor use, such as punch presses, forging hammers, rotary equipment (air compressors, air conditioner systems, etc.) and heavy equipment transported or operated inside a building;
c) human activities in connection with the service or operation of the equipment, for example, people walking, especially on raised floors.
The frequency range of interest is normally 2 Hz to 200 Hz. Normally the dominant frequencies are less than 100 Hz because they represent the response of the elements in the building.
This part of ISO/TS 10811 deals only with vibration from a maximum amplitude point of view. The concept of vibration dose (for example as for estimation of fatigue life) is not treated.
									
								
							
						
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