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Full Building Isolation

Full Building Isolation
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Full Building Isolation

Product catalog summary
Introduction
Building Vibration Isolation systems are designed to protect structures from low-frequency ground-borne noise and vibrations, particularly from sources like underground railways. These systems have been in use since the 1960s and are increasingly common due to urban density, legislative demands, and the need for multifunctional spaces. The principle involves decoupling the building from vibration sources using isolators tuned to a lower natural frequency than the disturbance.
Typical Applications
These systems are applicable in various settings, including railway lines, industrial facilities, testing facilities, and full building isolation for concert halls and theatres.
Farrat Added Value
Farrat Isolevel Ltd offers a range of standard and bespoke products for building isolation, backed by ISO-certified quality assurance. Their solutions are designed for long service life and include features like high load capacity, low natural frequency performance, and CE-marked steel fabrications.
Design Considerations
Key factors in designing building isolation systems include the type of structural frame, characteristics of the isolation system, lateral restraint, and connections with non-isolated elements. Farrat provides design support to ensure optimal system performance, considering structural integrity, vibration control, and buildability.
Vertical Support
Farrat Laminated Natural Rubber (LNR) Bearings are used for vertical support, offering high load capacity and low deflections. They are designed according to Eurocode standards and undergo rigorous testing for quality assurance.
Full Area Solutions
Farrat Verlimber is a high-performance polyurethane foam used for full area isolation, available in different grades to suit various pressure requirements.
Installation
Installation methods include direct placement onto concrete or grout beds, use of support plates with shims, and levelling plates for precise installation. Fail-safe bearing assemblies and bespoke solutions are also available to meet specific project needs.
Acoustic Shear Keys and Lateral Restraint
Buildings are subject to lateral loads, typically from wind, which must be resisted through structural design elements like stability cores, shear walls, or bracing. The design should avoid excessive lateral restraint to maintain the effectiveness of vibration isolation systems. Farrat offers shear key units and lateral bearings to manage these loads, with capacities up to 900kN, and bespoke designs for higher loads.
Lateral Bearings and Isolated Dowels
Farrat provides lateral bearings that can be attached to contractor-constructed elements to avoid the cost of fabricated shear keys. For low lateral loads, isolated dowels with high-performance isolation caps are ideal, allowing vertical deflection as the building moves.
Perimeter/Lateral Isolation
Isolated buildings should ideally move freely on their isolation systems. However, contact with non-isolated structures may exert lateral pressure. Farrat offers solutions to minimize these effects, including Isofoam for minimal lateral pressure and laminated or hybrid bearings for load-bearing applications.
Connections to Non-Isolated Elements
Farrat assists in designing connections to non-isolated elements like facades and cores, ensuring functional and constructible details. Pre-compressed bearings can be used for retained facades to ensure minimal settlement and consistent natural frequency.
Floating Floors and VFT System
Farrat's Acoustic Floating Floors can be used in building isolation strategies. The VFT system provides an economical method for casting isolated ground floor slabs, maintaining low frequency isolation with low pressures.
Design Services and Transmissibility Modelling
Farrat offers design support and coordination services for building isolation projects, providing accurate acoustic transmissibility modelling. This involves detailed performance characteristics of their products, ensuring reliable performance over the building's lifetime.
Building Isolation System Design Coordination
The design process involves collaboration between structural engineers, acoustic consultants, and Farrat to ensure the isolation system meets specified natural frequency performance. This includes providing load profiles, designing isolation bearings, and considering structural changes.
Specifications and Design Process
Farrat utilized performance prediction tools to design acoustic bearings, resulting in a Bearing Performance Schedule (BPS). Adjustments were made to accommodate load redistributions and horizontal forces due to structural rotations. The design included strategic placement of bearings and splitting them to provide rotational resistance. Acoustic Lateral Restraints were used to counteract horizontal components in V-shaped columns.
Construction and Installation
Farrat supplied 113 Natural Rubber Laminated Acoustic Bearings, each tested to full SLS load and compliant with BS EN 1337-3 standards. Galvanized Steel Levelling Plates and Upper Formwork Plates were provided for precise installation. The process was integrated into the construction workflow, with Farrat conducting weekly site visits for inspections and support.
Project Challenges and Solutions
The Cartwright Gardens project required acoustic isolation due to its proximity to the London Underground. Farrat developed a full-area isolation system using Verlimber VR27 material, providing effective vibration isolation at a natural frequency of 22Hz. The material's flexibility allowed it to adapt to the raft slab's contours and service penetrations.
Additional Solutions
Farrat offers a range of sound insulation systems for various building types and Structural Thermal Break Plates to prevent thermal bridging. These solutions are certified by the British Board of Agrément (BBA).
Conclusion
Farrat's involvement in the project ensured optimized vibration isolation performance and facilitated construction through strategic design and material supply. Their comprehensive approach included training and regular site supervision to ensure successful implementation.
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Catalog excerpts

Full Building Isolation-1

Building Vibration Isolation Systems Vibration control for buildings and structures Farrat Isolevel Ltd  Balmoral Road, Altrincham, WA15 8HJ, UK T. +44 (0) 161 924 1600  F. +44 (0) 161 924 1616  E. [email protected]  www.farra

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Full Building Isolation-2

Introduction 1.1 Building Vibration Isolation Vibration Control solutions are used to support buildings and building structures in order to provide protection from low frequency ground-borne noise and vibration generated from external sources such as underground railways for the entire life of the building. Vibration control of buildings and building structures has been practiced since the 1960’s and is fast becoming more and more common, especially as whole-building isolation schemes for a number of reasons; )) Increasing urban densities leading to developments near to rail, transport infrastructure...

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1.3 Farrat Added Value As a proud British manufacturer, Farrat design and manufacture a comprehensive range of ever improving standard and bespoke products; ranging from individual Acoustic Bearings through to complete Building Isolation Systems [BIS]. Quality Assurance - Farrat Isolevel Ltd operates an ISO 9001:2008 approved Quality Assurance System and ISO 14001:2008 Environmental Management Standard, which all Building Vibration Isolation solutions are manufactured under. Building Vibration Isolation systems are technically demanding, however Farrat is the ideal partner for helping to provide...

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Design Considerations 2.1 Factors to Consider Typically, the primary factors to consider when isolating a building or structure are; )) Steel or concrete frame (e.g. stiffness and mass of the structure, construction tolerances, robustness / disproportionate collapse )) Characteristics of isolation system (e.g. deflections, access for inspection, replacement, maintenance e.c) )) Lateral restraint )) Isolation Line through the building (may lead to complicated connections) )) Interfaces & connections with: )) Neighbouring buildings or structures )) Other floor levels )) Façade & cladding /retained...

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2.3 Farrat BVI System Design Examples The schematics below are examples of Building Vibration Isolation system designs developed by Farrat. LO3 Fig 2.1 Isolation of primary concrete frame and cast in situ ground floor slab Fig 2.2 Isolation of cast in situ ground beams with pre-cast ground floor & steel frame on ground beam grid Fig 2.3 Isolation of raft slab with full area isolation material installed on concrete blinding Fig 2.4 Isolation under ground floor slab with isolation line passing through cores Fig 2.5 Isolation under ground floor slab with cores isolated at raft requiring isolation...

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Vertical Support The beginning of any vibration isolation system design is the vertical support element. Farrat have a range of options aimed at providing the right product for the specific application. Once we understand the specifics of the application, let us guide you on selecting the right choice and incorporating it into your design. Farrat Laminated Natural Rubber (LNR) Bearings are the ideal choice to rely on for optimum performance for the life of the building. Farrat LNR Bearings are the only isolator type with links right back to the origins of structural isolation in the 1950s where...

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3.2 Full Area Solutions Farrat Verlimber (VR) is a very high performance polyurethane foam that is ideal for full area solutions where a lower pressure full area isolation mat is required. Farrat offer 3 standard grades, all capable of natural frequencies down to 8Hz: )) VR16 - Max working pressure: 35kN/m2 )) VR27 - Max working pressure: 90kN/m2 )) VR38 - Max working pressure: 220kN/m2 Full area solutions can be installed directly onto consolidated hard-core or a simple blinded concrete slab. As reference, see the Case Study 'Cartwright Gardens' on pages 26 and 27. Fig 3.5 - 3.8 Farrat Verlimber...

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Installation A key principle from EN-1337 relates to the installation of structural bearings wherein it states ‘the plinth shall be level to within a maximum permissible error in rotation from specified position of: 0.3% for bearings supporting a precast or steel structure, 1% for bearings supporting a cast in place structure and generally a maximum deviation of 1mm per meter is recommended. There are various ways of achieving this as outlined below: 4.1 Directly onto Concrete or pre-prepared Grout Bed Acoustic bearings can be installed directly onto a concrete support structure or pre-prepared...

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4.4 Fail safe Bearing Assemblies Where fail-safes are required in the design these can be provided with or without levelling screws and can also can allow vertical ties and other features as required by the design. Fail safes allow the entire assembly to be factory assembled allowing the bearing assembly to be delivered as one unit with lifting eyes for fast off-loading, distribution and installation. Fabrications can be CE marked and galvanised. r- 4.5 Bespoke Assemblies Usually the greater challenge in building isolation systems is not the design of the bearings but how to package all the technical...

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All buildings will be subject to a degree of lateral loading, typically from wind. The structural design will dictate how that horizontal loading should be resisted, either through stability cores, shear walls or bracing. Lateral Restraint There are numerous approaches to lateral restraint where the ideal solution is dependent on a number of factors inherent in the structural frame design. Either way the building should be designed to avoid excessive lateral restraint as too much will reduce effectiveness of the vibration isolation system. 5.1 Acoustic Shear Keys Farrat Acoustic Shear Keys have...

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Farrat offer numerous ways of minimising the effects of lateral contact. Ideally an isolated building should be free to move on its isolation system, however in some cases it is inevitable that some or all of its perimeter will be in contact with surrounding, non-isolated / live structures, some of which may exert a lateral (soil) pressure into the side of the building. Fig 5.7 Soil pressure exerted on isolated building 5.5 Non-Load Bearing Where the lateral pressure is minimal then Farrat Isofoam is the ideal choice having been used in all manner of lateral isolation applications. A key feature...

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