黑料专区

黑料专区 architecture on the cutting edge

Date: 25 April 2014
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  • www.glasstec-online.com
The triple-pane solar control glass ipasol neutral by AGC Interpane delivers excellent thermal insulation and ideal protection from the sun in this office building, which is superimposed upon an air-raid shelter in Bochum, Germany
Photo source
Fotodesign Andreas Braun, AGC Interpane

Date: 25 April 2014

Finding ways to improve energy efficiency is one of the greatest challenges facing contemporary architecture.

Deploying highly functional glass products and integrating energy-relevant products are effective ways to achieve optimum efficiency even in large-format glass fa莽ades.



Fa莽ades have long moved beyond being just static shells providing weather protection at the interface of building interior and exterior. With good reason, they鈥檙e often compared to human skin, which indeed does have a protective role to play, but also adjusts dynamically to external conditions and thus maintains the body鈥檚 鈥渋deal temperature.鈥

Modern glass fa莽ades are tasked with exactly this function 鈥 except in relation to indoor climatic conditions. In light of significantly tightened energy efficiency standards for buildings, the building envelope must play yet another crucial role in achieving a reduced primary energy demand: Heating, air-conditioning and lighting are among the most power-hungry systems in office buildings. And the fa莽ade can directly influence these consumption factors. The goal must be to optimise thermal insulation, protect interior spaces from overheating, ventilate rooms in a controlled manner, use daylight to the fullest extent possible and minimise the use of supplementary air-conditioning.



Keeping pace with ever higher expectations, fa莽ade technology has been systematically improved in years past. One target pursued in this development process is the multifunctional adaptive fa莽ade, a shell that鈥檚 able to respond dynamically to changing environmental conditions. Glass fa莽ades hold great potential in this area. Decentralised controls for ventilation, heating and cooling via the building envelope enable significant building technology reductions. At the same time, integration with building automation systems ensures that individual components can work together in perfect unison to achieve maximum energy efficiency. 

Photo 1 - Opened in January of 2014 at 3,048 metres above sea level on top of Gaislachkogel peak in S枚lden, Austria, the design restaurant 鈥淚ce Q鈥 serves as a prime example for contemporary glass architecture right in the High Alps. The 900 m2 glass fa莽ade with its high-performance triple-pane insulation glass was designed and built by the Austrian fa莽ade specialist GIG Fassaden GmbH. Photo: GIG Fassaden

 



Efficient combination of components

Even today, the components needed for the multifunctional fa莽ade of the future are already widely available. The challenge, then, for architects, fa莽ade designers and fa莽ade manufacturers generally lies in the optimisation of existing systems and in the individualised, demand-oriented integration and combination of available technologies and products. Ambitious targets have been set.

In Europe, for example, the 鈥淓nergy Performance of Buildings Directive鈥 (EPBD 2010) stipulates that all new buildings in EU member states must be constructed as 鈥渘early zero-energy buildings鈥 from 2020 onwards. This high bar can only be cleared by using highly efficient fa莽ades that provide excellent insulation and smart indoor climate control 鈥 all while harnessing the power of the sun. 

Photo 2 - The Sch眉co E虏 Fa莽ade is an energy-efficient complete system that unites fa莽ade and system technology. Customised solution packages can be created thanks to its four function modules (decentralised ventilation, fa莽ade-integrated photovoltaics, fa莽ade-integrated solar shading and integrated opening units). Photo: Sch眉co

 



Optimised system technology



The deployment of highly efficient, variable-use fa莽ade systems is a prerequisite for the creation of energy-efficient glass fa莽ades. Therefore, system providers aim at further improving the insulating performance and application flexibility of their profile systems. Improved profile geometries and the creation of the preconditions for the use of high-performance triple insulating units are important aspects in this regard.

Despite significant progress, large-format glass fa莽ades continue to be left behind, when it comes to heat transfer properties, by classic perforated fa莽ades with insulation. At the same time, however, they also offer numerous advantages over solid construction. Thanks to copious amounts of glass used, they allow for visual contact with the outside world. What鈥檚 more, they create enhanced lighting possibilities and ideal conditions for solar gain.



The E2 Fa莽ade by Sch眉co illustrates just how far system technology has progressed in the direction of multifunctional glass fa莽ades. It鈥檚 an energy-efficient complete system with a revolutionary combination of fa莽ade and system technology that both saves and generates energy. Customised solution packages can be created thanks to its four function modules (decentralised ventilation, fa莽ade-integrated photovoltaics, fa莽ade-integrated solar shading and integrated opening units)

Photo 3 - Today鈥檚 argon-filled and Low-E-coated triple-pane insulation glass can reach Ug values of up to 0.6 W/m2K. In order to achieve optimum thermal insulation, it is necessary to deploy modern warm-edge seal systems such as the spacers made by Swisspacer. Combining a highly insulating profile consisting of plastic composite materials, a gas-tight foil and desiccants as filling materials, the spacer system minimises heat loss and ensures long-lasting serviceability of the insulation glass by. Photo: Swisspacer

 



High-performance functional glass



The use of safety glass brings to the fore the extensive structural possibilities and design advantages offered by glass (curved glass, screen printing, digital printing, enamelling etc.) and thus provides considerable flexibility in the design of customised high-performance glass fa莽ades. However, large glass surfaces also allow for outside conditions to strongly impact the indoor climate. As a result, the functionality of glass products used is of considerable importance.



Excellent results are possible nowadays with high-performance thermal- and solar-control glass. For example, double-pane insulating glass filled with the noble gas argon and used with warm-edge spacer systems currently achieves a thermal transmittance value of around 1.0 W/m2K.

This value drops to 0.6 W/m2K for triple-pane insulating glass used in standard configurations. Even 0.5 W/m2K is possible if the space between panes is increased. Even lower thermal transmittance values are possible in today鈥檚 standard glass configurations by using the ultra-expensive noble gas krypton.



Another option exists for pushing down even further the thermal transmittance coefficient while using argon 鈥 quad-pane insulating glass. Even though these products achieve a U-value of 0.3 W/m2K, they鈥檙e not any heavier than conventional triple-pane glass because they鈥檙e made using hardened thin glass.

Another option, vacuum insulated glass (VIG), would make stacking window panes an easier-to-manage task for window and fa莽ade manufacturers. Glass of this kind is already available in Asian markets, but despite focussed research efforts, Europe is still waiting to see equivalent products for fa莽ade applications become ready for mass production.

Photo 4 - The triple-pane solar control glass ipasol neutral by AGC Interpane delivers excellent thermal insulation and ideal protection from the sun in this office building, which is superimposed upon an air-raid shelter in Bochum, Germany. Partially coating the glazing with ipachrome design helps to provide additional glare and solar control, especially on the building鈥檚 south-facing side. Photo: Fotodesign Andreas Braun, AGC Interpane

 



Solar control and light directing

Besides heat insulation, large-format fa莽ades must also master the challenge of providing reliable solar and glare protection. Solar control glass alone 鈥 while efficient and easy to integrate 鈥 is often not sufficient to reliably prevent undesirable heat gain in interior spaces during the summer. Alternatives to shading systems installed on the inside or outside of the fa莽ade are available, including special solar control glass featuring electric voltage-based automatic tinting to minimise the impact of sunlight.



In autumn of 2013, the University of Giessen presented an intriguing development in this area. Led by Prof. Bruno Meyer, the Physical Institute there developed and filed a patent application for an energy-efficient glass coating that allows for temperature-dependent thermal transmittance. Using this passive (i.e. non-voltage), transparent glass coating allows for the straightforward control of sun-induced heat gain in interior spaces. At 20 degrees Celsius, the material autonomously switches from semiconductor (permeable to light) to metal (reflective).1



Insulation glass with integrated solar and/or light directing control is another frequently used alternative. These systems are integrated into the glass and can be controlled manually or electronically to align with individual insolation and light conditions. Thanks to integrated slats with variable adjustment angles, daylight can be directed into the interior of the room.

The Austrian company Eckelt Glass offers DLS Ecklite Evolution, for example, an insulation glass product with two separate, electrically driven louvre blinds integrated into the glass, featuring a concave section for active light directing in the upper part of the glass and a convex section for efficient solar and glare control in the vision area.

Depending on exterior lighting conditions, users can choose to open either the vision area only or both the vision area and the upper area for an unobstructed view. Other effective solutions for targeted daylighting and balanced illumination of rooms besides these louvre systems include glazing with engraved louvre structures, rigidly mounted reflective blinds and integrated prism structures.

Photos 5a, 5b - The synergy of active light directing and variable solar control in insulating glass: DLS Ecklite Evolution by the Austrian company Eckelt Glas integrates two separate, electrically driven louvre blinds in the cavity and features a concave section for active light directing in the upper part of the glass and a convex section for efficient solar and glare control in the vision area. If desired, the blinds can be opened completely, either only in the vision area or both in the vision and upper area for an unobstructed view. In the triple-pane configuration, a thermal insulation value of up to 0.6 W/m虏K is possible. Photos: Eckelt Glas





Energy from the fa莽ade



Seeing that the amount of available solar energy is 3,000 times greater than total global energy consumption, it would seem smart to harness the sun to generate eco-friendly energy right in the fa莽ade. Photovoltaic modules can be incorporated in nearly any kind of glass installation.

Solutions with integrated PV can easily be implemented even with multi-pane insulating glass with thermal and acoustic protection properties and with overhead and walkable glass. Set up correctly, the solar control functionality of a PV fa莽ade can even make additional shading systems obsolete. Moreover, solar energy from collector systems integrated into the fa莽ade can be used for heat production.



glasstec 2014 in D眉sseldorf will show just how innovative the glass industry really is, including in this market segment, what product solutions the sector has in store to help make glass fa莽ades more energy efficient and how architects and fa莽ade builders envision the future.

From 21 to 24 October, the leading international trade fair of the glass industry will present the latest developments revolving around the energy-efficient building envelope at the trade fair stands, the special show 鈥済lass technology live鈥 and the Fa莽ade Center. This range of offerings is further enhanced by the scientific conference 鈥渆ngineered transparency,鈥 which focusses on 鈥淕lass Construction,鈥 from 21 鈥 22 October 2014 and by the International Architecture Congress, entitled 鈥淕lass 5.0 鈥 Design, Function, Emotion,鈥 on 22 October 2014.

 



The building envelope as multiplayer



Thanks to continuous construction, technology and product advancements, plenty of development potential remains for large-format glass fa莽ades. Regardless of any temporary fa莽ade design trends, topics such as energy efficiency and improvement of indoor climatic conditions will dominate architecture and fa莽ade construction in future, with additional attention paid to the sustainability of materials and products used.



Stronger multi-disciplinary cooperation will be critical on the path to energy-optimised glass fa莽ades and buildings. 鈥淎rchitects, engineers, builders and fa莽ade specialists must and will aim to meet political imperatives regarding the optimisation of energy consumption, without neglecting architectural and quality-related aspects or ecological and economic considerations.

The building envelope turns into a 鈥榤ulti-player鈥 with the ability to coordinate and control light, air and energy flows simultaneously,鈥 says Rudolf Locher, the Managing Director of the Swiss Centre for Windows and Fa莽ades (SZFF) in summarising the future challenges awaiting fa莽ade professionals.虏





Bibliography



1 Gesellschaft f眉r Technologietransfer mbH, Holger Mauelshagen,

 www.transmit.de

2 TEC21, 28/29th edition 2009, pp. 16-20

 

Press Contact glasstec 2014



Sebastian Pfl眉gge

Brigitte K眉ppers (Assistant)

Tel.: +49(0)211/4560-464 or -929

Fax: +49(0)211/4560-87 464

E-Mail: PflueggeS@messe-duesseldorf.de or

KueppersB@messe-duesseldorf.de

600450 黑料专区 architecture on the cutting edge 黑料专区

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