arcadia strand · arcadia strand ® hc ventilators are positioned at the ridge or on the slope of a...
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© 2015 NUROOF (W.A) PTY LTD
ARCADIA STRAND®
HC ROOF VENT ILATOR
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STRAND® HC
SLOPE & RIDGE
VENTILATOR
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Strand® HC is engineered to provide effective natural
ventilation & air flow
ARCADIA | STRAND® HIGH CAPACITY ROOF VENTILATION | 3
OVERVIEW
The Arcadia Strand® High Capacity (HC) Ventilator is the ultimate
natural ventilation solution designed to remove high heat loadings
and effectively contributes to reducing carbon footprint. The Strand®
HC is suitable for ridge and slope mounting and is engineered for
optimal performance in the harshest of environments.
Having manufactured and designed ventilation products for over 30
years, Arcadia has successfully partnered with Designers and
Engineers to provide a complete ventilation solution for a large range
of Mining, Industrial and Commercial projects. Arcadia’s design
expertise has seen the Strand® HC utilised across Australia
including cyclone regions.
The Ventilator is a specialised product which can be supplied in
prefabricated modules or kit form, and is interconnected to the
structural elements of the building. The ventilator is a cost effective
solution which exhausts heat and fume emissions without the
requirement for mechanical powered assistance.
IN THIS BROCHURE YOU WILL FIND
• Function & Benefits
• Strand® HC design characteristics
• Performance and ventilation information
• Ridge & Slope fixing methods, weights and dimensions
• Ventilation design theory
• Control options
• Design specification information
We are available to answer your questions. Call our experts who will
talk through your design requirements and will be more than happy to
assist you.
STRAND® HC VENTILATOR
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NATURAL VENTILATION
Arcadia provides assistance in early project design stage to assist in
achieving increased NABERS and Green Star ratings by incorporating
natural ventilation solutions. A natural ventilation system will provide
proven long term energy efficiency and assist by reducing the
projects carbon footprint.
To provide an environmentally sustainable solution it is paramount
to understand how natural elements affect ventilation performance.
The Arcadia technical team has the know-how and experience
required to work in conjunction with designers to incorporate
the Strand® HC to achieve the most naturally effective ventilation
solutions with optimal performance.
It is important to define building factors which could restrict or
assist natural ventilation performance. These could include
external environment, internal environment, wind effect, pressure
relief, and inlet air. Once they have been identified Arcadia can
assist with engineering design calculations and ventilation modelling,
which when managed correctly will form a functional and effective
natural ventilation solution.
ENVIRONMENTAL
STATEMENT
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STRAND® HCROOF VENT ILATOR
FUNCTION
Arcadia Strand® HC Ventilators are positioned at the ridge or on the
slope of a building roof providing heat, fume and smoke relief.
The Strand® HC is the highest capacity offered by Arcadia and has
been the ventilator of choice by engineers, designers and roofing
since 1967.
Engineered for use in all terrain regions of Australia, the Strand® HC
can be manufactured in a kit-form system or in prefabricated
modules which allow reduced installation time and an increased
measure of safety. As the ventilator is directly mounted to the
buildings steel structure, Arcadia recommends designers contact
our team at the early design stage of the project to discuss the
required mounting and connection, mass and dimension details
which will affect structural member size selection.
Failure to incorporate a natural ventilation system into the
building design may result in: low fresh air levels, low oxygen levels,
increased heat loads, machine failure, operational dysfunction and
reduced productivity. In applications where complete control of air
flow is required, the Strand® HC offers operating dampers which can
be controlled and integrated with the Building Management System.
BENEFITS
• Environmentally sustainable solution
• Reduced energy consumption
• Smoke and fire management
• Tested to AS2428 (fire, wind & rain and coefficient of discharge)
• CSIRO tested
• Designed to suit all Cyclonic Regions
• Australian designed and manufactured
• Prefabricated modules for reduced high risk works
and onsite installation time
• Improved workplace environment
• Increased building life–cycle
• Reduced structural requirements
• Ventilation project design assessment and report
• Market leading performance and functionality
• Aesthetically pleasing profile
ARCADIA | STRAND® HIGH CAPACITY ROOF VENTILATION | 5
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ARCADIA STRAND® HC
PERFORMANCE
Arcadia have been experts in natural ventilation solutions since 1967 and understand the influencing factors that will
result in successful natural ventilation performance. The Arcadia Strand® HC has been CSIRO tested achieving an average coefficient
of discharge of 0.76 (for ventilation performance data see Exhaust Capacity Table page 9). With this testing and performance data,
Arcadia have been able to maintain ongoing development of the Strand® HC which allows an ultimate performance standard. The
Strand® HC has a reputation for high performance, enduring harsh and demanding environments. Failure to incorporate a well
designed natural ventilator may result in back drafting, misting and defence against inclement weather.
ENGINEERING
When selecting ventilation products, it is important to consider engineering requirements. The Arcadia Strand® HC has been specified
by Consultants and Engineers across Australia including cyclonic regions in both on-shore and offshore locations. Arcadia’s innovative
engineering has produced one of Australia’s largest high capacity ventilators with a throat opening width of 4.5m (see inset 1 page
16). Engineers considering the application of Strand® HC on a upcoming project should determine how the ventilator will interconnect
with the structural steel work. Arcadia’s Design & Project Management Team is available to work with you to provide expert advice on
what structural support is required.
SAFETY
The Strand® HC has two deiniive features that make it stand out when it comes to safety – these include: the option of harness
anchor points and prefabricated modules. The Safety harness anchor system is integrated within the structural framing system of
the ventilator which allows safe access for future roof works and maintenance. Arcadia’s ability to prefabricate modules reduces the
time required for working at heights when installing the ventilator. The module is crane lifted and bolted into place rather than being
assembled in kit-form on the roof. As always – Arcadia are striving towards providing safer solutions.
TESTING & CERTIFICATION
The Strand® HC is a tested product by CSIRO to AS2428.1 & .2 (Rain & Wind), .4 (Fire) and .5 (Coefficient of discharge). This gives
Engineers and Specifiers peace of mind and enables Arcadia to provide an accurate and responsive design solution. Arcadia is
consistently investing and collaborating with researchers and Engineers to improve product performance.
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ARCADIA STRAND® HC
PROJECT SUPPORT
Arcadia has in-house Project Managers, Design Engineers and Ventilation Experts. This team can assist at design stage to provide
calculation reports in conjunction with the relevant standards, codes and mechanical requirements to achieve the most economical
but effective solution. Arcadia are able to respond promptly to any query that arises from concept to commissioning. This has enabled
Arcadia to successfully support many projects across Australia. The team are on call during the installation process and are able
to support roofing or cladding contractors onsite. Our local presence and Australian based manufacturing facility guarantees project
back-up in the event of unforeseen installation complications.
SMOKE & FIRE
Arcadia’s Strand® HC Ventilator has been tested to CSIRO 2428.4 (smoke and fire). This testing allows Arcadia to help designers
to comply with building code regulations. Many projects have seen the Strand® HC successfully integrated with the Building Fire
System to assist in the control and exhaust of smoke in the event of a fire. Fire Engineers and certifying authorities are encouraged
to contact Arcadia Team to discuss this further.
ACOUSTIC
With Arcadia’s Strand® HC noise control solution it is not necessary to lose the benefits of natural ventilation due to noise pollution
requirements. Strand® HC has been designed as an option to incorporate a high performing noise absorption material. As air is
exhausted through the ventilator the acoustic lining minimises noise transmission from the building. This also limits the transmission
of noise entering the building. The acoustic lining has high flame retardant and chemical resistant properties.
DAMPER CONTROL
The optional Strand® HC damper system provides complete control of the ventilation scheme. The ability to electrically or
pneumatically operate the dampers provides comprehensive control throughout changing seasons with the ability to provide a high
level of weather defence. When dampers are activated the rainwater is redirected to an internal drainage system which disperses to
the building roof. Dampers can be incorporated for smoke hazard management or building protection in the event of a cyclone.
MODULAR AND KIT FORM
Arcadia has innovatively developed a pre-assembled ventilator system ready for easy installation. The ventilator can be installed as
a module reducing labour and high risk work. Through early design involvement, Arcadia will outline the exact location for structural
support connection points which allows the Strand® HC Ventilator to be dropped in to position and fitted with ease. This has been
carried out in all Regions including Cyclonic Region D. Arcadia also provides Kit Form Ventilators which are delivered to site in
component form which are assembled and installed on the roof.
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∆ ̊ C STACK HEIGHT (m)WIND SPEED
0 m/s 1 m/s 2 m/s 4 m/s
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6 0.74 0.90 1.25 2.13
9 0.91 1.04 1.35 2.20
12 1.05 1.16 1.45 2.26
15 1.17 1.28 1.54 2.32
18 1.29 1.38 1.63 2.38
10
6 1.05 1.16 1.45 2.26
9 1.29 1.38 1.63 2.38
12 1.49 1.62 1.95 2.94
15 1.66 1.74 1.94 2.60
18 1.82 1.89 2.08 2.70
15
6 1.29 1.38 1.63 2.38
9 1.58 1.65 1.87 2.55
12 1.82 1.89 2.08 2.70
15 2.03 2.10 2.27 2.85
18 2.23 2.28 2.44 2.99
20
6 1.49 1.57 1.79 2.49
9 1.82 1.89 2.08 2.70
12 2.10 2.16 2.33 2.90
15 2.35 2.40 2.55 3.09
18 2.57 2.62 2.76 3.26
* The above capacities are indicative only and should be used as a guide to determine the approximate ventilator size. Arcadia invites designers, architects and engineers to contact our design
team during the early stages of project development to provide an accurate design solution. Tel :: 08 9458 4955
STRAND® HC EXHAUST CAPACITY
The exhaust rate can be predicted regardless of wind velocity or direction. The Exhaust Capacity Table indicates the advantage of natural
ventilation when the wind is blowing.
PERFORMANCE DATA
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STRAND® HC
RIDGE VENT
STRAND® HC RIDGE VENT
The Strand® HC Ridge Ventilator is available in two different structure types to meet the engineering requirements of the relevant ventilator
sizes. The key principles of connection to the building structure remain the same and the different weights and dimensions are listed in the
table below.
MODEL THROAT (A) WIDTH (B) HEIGHT (C) KG/m KG / END ASSEMBLY
R 600 HC 600 1600 700 35 43 ea
R 750 HC 750 1790 900 49 53 ea
R 900 HC 900 2370 1160 60 91 ea
R 1000 HC 1000 2370 1160 60 91 ea
R 1200 HC 1200 2970 1320 83 141 ea
R 1500 HC 1500 3630 1940 130 250 ea
R 1800 HC 1800 4260 2180 132 262 ea
R 2000 HC 2000 4600 2110 146 276 ea
R 2400 HC 2400 5520 2540 175 352 ea
R 3000 HC 3000 7040 3250 255 181 ea
R 3600 HC 3600 8280 3800 306 208 ea
R 4000 HC 4000 9190 4220 340 221 ea
R 4500 HC 4500 10120 4620 435 230 ea
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STRAND® HC
SLOPE VENT
STRAND® HC SLOPE VENT
The Strand® HC Slope Ventilator is available in two different structure types to meet the engineering requirements of the ventilator sizes. The
key principles of connection to the building structure remain the same and the different weights and dimensions are listed in the table below.
MODEL THROAT (A) LENGTHOVERALL DIMENSIONS EXHAUST CAPACITY
1m/sec 10 ∆ ̊C 9m Stack HeightLENGTH (B) HEIGHT (C) TOTAL WEIGHT - KG
S 624 HC 600 2400 2400 700 170 1.99
S 636 HC 600 3600 3600 700 212 2.98
S 648 HC 600 4800 4800 700 254 3.98
S 724 HC 750 2400 2400 900 224 2.49
S 736 HC 750 3600 3600 900 283 3.73
S 748 HC 750 4800 4800 900 342 4.97
S 924 HC 900 2400 2400 1160 326 2.98
S 936 HC 900 3600 3600 1160 398 4.47
S 948 HC 900 4800 4800 1160 470 5.96
S 1024 HC 1000 2400 2400 1160 326 3.31
S 1036 HC 1000 3600 3600 1160 398 4.97
S 1048 HC 1000 4800 4800 1160 470 6.63
S 1224 HC 1200 2400 2400 1320 482 3.98
S 1236 HC 1200 3600 3600 1320 581 5.96
S 1248 HC 1200 4800 4800 1320 681 7.95
S 1524 HC 1500 2400 2400 1940 812 4.97
S 1536 HC 1500 3600 3600 1940 968 7.46
S 1548 HC 1500 4800 4800 1940 1124 9.94
S 1824 HC 1800 2400 2400 2180 841 5.96
S 1836 HC 1800 3600 3600 2180 1000 8.95
S 1848 HC 1800 4800 4800 2180 1158 11.93
S 2024 HC 2000 2400 2400 2110 903 6.63
S 2036 HC 2000 3600 3600 2110 1078 9.94
S 2048 HC 2000 4800 4800 2110 1253 13.25
S 2424 HC 2400 2400 2400 2540 1124 7.95
S 2436 HC 2400 3600 3600 2540 1334 11.93
S 2448 HC 2400 4800 4800 2540 1544 15.91
S 3024 HC 3000 2400 2400 3250 974 9.94
S 3036 HC 3000 3600 3600 3250 1280 14.91
S 3048 HC 3000 4800 4800 3250 1586 19.88
S 3624 HC 3600 2400 2400 3800 1151 11.93
S 3636 HC 3600 3600 3600 3800 1518 17.89
S 3648 HC 3600 4800 4800 3800 1885 23.86
S 4024 HC 4000 2400 2400 4220 1258 13.25
S 4036 HC 4000 3600 3600 4220 1666 19.88
S 4048 HC 4000 4800 4800 4220 2074 26.51
S 4524 HC 4500 2400 2400 4620 1504 14.91
S 4536 HC 4500 3600 3600 4620 2026 22.37
S 4548 HC 4500 4800 4800 4620 2548 29.82
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STRAND® HC RIDGE VENTILATOR
STRAND® HC SLOPE VENTILATOR
CONNECTION DETAILS
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STRAND® HC PROJECTS
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Natural ventilation requirements should be designed into the building at early
stages of project planning. Items that affect the parameters of the designs exist
in the internal and external environments.
EXTERNAL ENVIRONMENT
There are three influencing external factors which need to be
considered when designing a natural ventilation system for
your project. These include location, building size & shape
and climatic conditions.
The location of the building includes geographical topography, region
and terrain category as determined by the Australian Building Code
and surrounding elements. This will also affect the engineering design
requirements which will influence structural connection details.
Building size, shape and footprint will all be influencing factors on
the final ventilation design outcome. The height of the building will
influence the stack height and the roof layout will determine the
requirement for ridge or slope ventilators. It is also necessary to
consider all air inlet louvres and permanent intake / exhaust apertures.
Key climatic items include prevailing wind direction, ambient
temperature and wind speed. An effective solution for a building
utilises the prevailing breezes which increases the exhaust rate and
assists to enhance your ventilation scheme when designed correctly.
INTERNAL ENVIRONMENT
There are three influencing internal factors which need to be
considered when designing a natural ventilation system for your
project. These include internal machinery and working activities,
quantity of personnel and type of goods warehoused.
Internal activities produce heat and based on your building
machinery there may be production of smoke, fumes or extreme
heat loads which need to be considered and controlled adequately.
Based on the internal activities it is important to consider the air
changes per hour which will vary greatly for example: a warehouse
will have low ventilation requirements compared to the high
ventilation requirements of a foundry.
In applications where there are large numbers of personnel working
in the building, it is important for fresh air inlet and exhaust to
provide acceptable atmospheric conditions where work can be
performed comfortably, safely and efficiently by removing heat
and toxic air content.
Warehoused goods (such as chlorine, gas or ammonium) can emit
toxic fumes inside the building. In such applications the building will
require effective exhaust ventilation, coupled with fresh air inlets to
ensure there is no build up of fumes that will create a health hazard
to personnel.
DESIGN PARAMETERS
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DESIGN THEORY
NATURAL VENTILATION DESIGN THEORY
There are many variables internally and externally that will effect a natural ventilation solution for any building. Designers should consider stack
height, wind effect, inlet air, back – drafting and misting to ensure effective design. The air exchanged between low pressure cool air and rising
high pressure hot air is commonly known as Venturi Effect.
STACK HEIGHT
The stack height is the vertical distance between the median inlet air
point and top point of the Arcadia Strand® HC air outlet. Therefore
an increased Stack Height will result in greater exhaust performance.
A well designed natural ventilation scheme should aim to have the
exhaust outlet located at the highest point of the building, this
maximizes the wind effect from all directions. The benefit of stack
height and natural ventilation design has been used for centuries
on buildings such as tepees. Termite mounds display a natural
application of this.
INLET AIR
The position of the air inlets is essential for balancing the interior
and exterior air-pressure. Adequate inlet ventilation eliminates
back-drafting which increases the ventilation performance.
It is recommended to establish a natural ventilation ratio of
(inlet) 1.5 : 1 (outlet).
Arcadia can be contacted for technical assistance to discuss a
suitable solution specific to a project. Arcadia offer a range of
fixed and operable inlet air products suitable to specific building
design requirements. The operable inlet air products integrate
with a building management system to establish an ultimate
controlled natural ventilation solution.
WIND EFFECT
Wind provides two benefits in the natural ventilation scheme. It
provides positive inlet air pressure (generally via a strategically
distribution of inlet air louvres) and also provides a negative
pressure as the wind passes over the roof exhaust ventilators.
The introduction of wind factor increases the performance of natural
ventilation schemes. Wind effect will vary in different climatic regions
and it is essential to consider the area topography and wind patterns
to take best advantage of natural forces. Through correct positioning
of roof and slope natural ventilation systems prevailing breezes will
be utilised to encourage hot stale air to be drawn out of the building.
BACK-DRAFTING
Failure to follow the correct design guidelines can result in back-
drafting & misting. This is when the designed airflow path is reversed
and an exhaust outlet acts as a suction point. This is the result of a
poorly designed ventilation scheme or ventilator and highlights the
need to clearly understand the basic principles and utilise tried and
tested products. This is a key strength of Arcadia Strand ® HC.
Arcadia’s Strand ® HC has been engineered to minimise the allowance
of back-drafting and misting by incorporating internal components,
wind jump diaphragms, guide vane and water deflectors, and of
course the option of control dampers.
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PROJECT PROFILE
3 A complete ventilation scheme must
incorporate inlet air. The image above shows
Arcadia Hush® Acoustic wall louvres for inlet
air and noise attenuation. These incorporate
a pneumatically controlled damper system to
prevent back –drafting, prevention of weather
and dust control in abnormal storm conditions.
Arcadia’s ability to preassemble Hush® Acoustic
louvre panels as large as 3.8 m wide x 4 m high
allowed an effective and efficient solution.
2 In contrast to image 1, we can see that
although a building may be larger, it doesn’t
mean it requires a larger ventilator. This can be
determined when following Arcadia’s guidelines
to internal and external environment factors
(refer to page 14) which determine the building’s
ventilation requirements. Since this is a warehouse
with low heat loads and low occupancy, it can be
controlled by a smaller ventilation scheme.
The Amcor Glass Plant in the Barossa Valley in South Australia is one of many industrial building projects to benefit from the Arcadia Strand®
HC. Integrating one of the largest natural roof ventilators, significant planning was the catalyst for a robust and correctly calibrated product
that would effectively manage the extreme heat loads produced from the furnaces which produce around 600,000 glass bottles per day.
Arcadia became the selection of choice for the contractors due to its ability to provide the project with a complete ventilation scheme. This
included Strand® HC natural roof ventilators and Hush® Acoustic Inlet air louvres and Acoustic treatment. With Arcadia being a National
supplier of Australian made products, Arcadia was involved for technical consultation during the engineering design process, which was
followed by a turn-key manufacture, installation and project management solution covering the entire scope of the works.
1 The picture above represents the
considerable size of the Strand® HC Ventilator
which is used to effectively exhaust the extreme
heat loads on this Project. With a clear throat
opening of 4.5 metres, the ventilator stands
4.2 metres high with an overall width of 10 metres.
It also incorporates a complete operating damper
system which is all pneumatically controlled.
Due to logistical restrictions, the Ventilator was
manufactured in Kit Form and assembled on site.
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ACCESSORIES
OPTIONS
Arcadia offers a range of accessories that can be tailored to suit the unique requirements of each project. The Strand® HC Ventilator has
optional features that can be fitted to manage changing weather and environmental conditions.
Strand ® HC Ventilation has a greater energy efficiency, increased life – span,
minimal maintenance and lower carbon footprint when compared with
mechanically powered ventilation.
VENT-LITE
The Arcadia Vent-lite allows ambient light to permeate into the building delivering a soft diffused light. Designers integrate this
to increase inlet of natural light which can positively impact on internal work environment conditions.
MESH
Arcadia stock a range of bird, vermin, insect & ember mesh in a variety of base materials. When selecting mesh,
consideration should be given to corrosion resistance and airflow.
ACOUSTIC DAMPENING
Strand® HC can be internally lined with Acoustic absorption foam which ensures reduction of noise emissions from the
Ventilator. Facilities for heavy manufacturing, power generation, water pumping and desalination have taken advantage of
this for many years by incorporating the Strand® HC with added acoustic attenuation.
DAMPER CONTROL
The damper system can be controlled pneumatically or electrically to allow the control of air and heat dispersion. This
is ideal for seasonal operational adjustments and can be coupled with rain and wind sensors to respond to fluctuating
weather conditions.
SENSORS
Arcadia provide a range of sensors that allow total control and integration with the Strand® HC. This allows monitoring
and response to temperature, rain, wind, humidity, air quality, smoke and fumes.
CONTROL PANEL
Arcadia offers a customised control panel designed to suit the specific building requirements. This provides a centralised
location to control, link and manage the Strand® HC with your building management and fire systems.
ARCADIA | STRAND® HIGH CAPACITY ROOF VENTILATION | 17
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STRAND® HC VENTILATOR
Roof ventilator/s shall be Strand® High Capacity (HC) (select from A below), manufactured by Arcadia with
base material as standard with the manufacturer and finished using (select from B below).
The roof ventilator shall be Strand® High Capacity model (select from C below) and shall be fitted
to structural connection points as recommended by Arcadia - Phone 08 9458 4955.
ACCESSORIES AND OPTIONS
The Strand® HC Roof Ventilator shall incorporate wind jump diaphragms as standard and shall also include (Select from
D below) whilst incorporating total gutter control. The Ventilator shall be fitted with (Select from E below) mesh.
INSTALLATION AND MOUNTING
Installation and mounting details will be designed to satisfy wind actions for Region (Select from F below) and Terrain Category (Select from
G below) in accordance with AS 1170.2 structural design actions to suit Arcadia proprietary systems and manufacturers recommendations.
VENT TYPE
• Ridge Type
• Slope Type
STRAND® FINISH
• Zincalume®*
• Colorbond®*
• Colorbond® Ultra*
• Aluminium
• Stainless Steel
• Specialised finishes available upon request
MODEL
• Refer to Pages 10-11
OPTION
• Vent-Lite
• Acoustic Dampening
• Wind Sensor
• Rain Sensor
• Custom monitors & sensors
• Electric Damper control
• Pneumatic Damper Control
• Control Panel
MESH
• Fibreglass
• Galvanised
• Stainless Steel
• Polyethylene
• Expanded Metal
• Ember resistant
• Not required
* Colorbond®, Colorbond® Ultra and Zincalume®
are registered trademarks of Bluescope Steel.
Arcadia reserves the right to use alternative similar
products to Zincalume® and Colorbond® materials.
REGION
• A
• B
• C
• D
TERRAIN CATEGORY
• 1
• 2
• 2.5
• 3
• 4
A.
B.
C.
D.
E.
F.
G.
ONLINE SPECIFICATION: WWW.GROUPARCADIA.COM.AU/PRODUCTS/VENTILATION#STRANDHC
STRAND® | HC ROOF
VENTILATION SPECIFICATION
NOTE: Due to the diversity of control
options available it is recommended that
specifying authorities take advantage of
the engineering service offered by Arcadia.
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ARCADIA | STRAND® HIGH CAPACITY ROOF VENTILATION | 19| 19
DESIGN
MANUFACTURE
PROJECT MANAGEMENT
SERVICING MAINTENANCE
>>IN
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IN
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COMPANY NAME
Nuroof (WA) Pty Ltd T/A Arcadia Architectural
ABN No 62 008 668 291
FOUNDED
1927
REGISTERED OFFICE ADDRESS
9 Bellows Street
Welshpool WA 6106
POSTAL ADDRESS
PO BOX 196
Bentley Western Australia 6982
WEBSITE
WWW.GROUPARCADIA.COM.AU
© 2015 Nuroof (WA) Pty Ltd.
This document is protected by copyright and all rights are reserved. No part of it may be
reproduced, stored in a retrieval system or transmitted in any form by any means electronic,
mechanical, photocopying, recording or otherwise without the prior written permission of the owner
of the Copyright, or pursuant to the terms of a licence granted by behalf of the Copyright owner.
PERTH OFFICE
PHONE (08) 9458 4955
FAX (08) 9458 4988
EMAIL [email protected]
ADDRESS 9 Bellows Street Welshpool WA 6106
NATIONAL CALLS
PHONE 1300 458 458
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SYDNEY OFFICE
PHONE (02) 8458 0660
EMAIL [email protected]
ADDRESS 32 Ridge Street North Sydney NSW 2060
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