Andrew Mellor, PRP Architects鈥 green guru, is confident we can build zero-carbon homes. But if we are going to put up 8 million of them, there might be a few issues to iron out along the way 鈥
Can zero-carbon homes be achieved? That鈥檚 the question that鈥檚 consuming the housebuilding industry, but the answer is a simple one: of course they can. Just look at European countries such as Germany for examples. The difficulty is that such development is not the norm in the UK and, until now, there has been no demand for them. That is why we don鈥檛 have the immediate skills and expertise to deliver such a quantity of zero-carbon homes 鈥 8 million by 2050 in England alone, according to the government鈥檚 proposals. There are a lot of issues that will need to be considered if we are to get anywhere near that figure. Here are a few to start with 鈥
It鈥檚 not just about buildings
People鈥檚 lifestyles have a significant impact on whether a zero-carbon dwelling remains zero carbon. Our appetite for high-octane, flashy electronics shows no sign of abating. Take flatscreen TVs 鈥 such luxuries typically consume more energy and emit more carbon dioxide than older models. Green architects must tackle the effects of lifestyle choices.
How do we combat hotter weather?
Ironically, one of the main effects of climate change 鈥 global warming and its contribution to overheating buildings 鈥 is not being considered. Met Office scientists predict that European heatwaves could become hotter by 4-10掳C. In the UK alone, severe heatwaves now happen about once every 20 years, with an increase predicted.
Overheating will become one of the biggest issues for architects if air-conditioning units in homes are to be avoided. Under government proposals, it will be considered within the proposed 2010 amendments to the 好色先生TV Regulations. English Partnerships鈥 new design and quality standards include the prevention of overheating.
Taking solar gain into account will change the appearance of homes, and the possibility of exploring new materials and design paradigms is exciting. We are starting to see new roof forms and external shuttering systems being used. We must also consider reducing solar gains and how to provide privacy to balcony areas.
The methods of reducing overheating must be considered earlier, particularly when selecting construction systems and reducing temperature fluctuations. Almost 35% of PRP鈥檚 projects are timber frame, a system that does not incorporate thermal mass. There are ways of providing thermal mass in lightweight-construction systems, such as product manufacturer DuPont鈥檚 phase change system, which we used for the Stewart Milne Group鈥檚 BRE Sigma Home. This is a laminated aluminium panel, containing a copolymer and paraffin wax compound. Installed on the interior walls and ceilings, behind the plasterboard lining, together with a mechanical ventilation system, the panels absorb and release heat.
Knock-on effects
When designing zero-carbon homes, consider the impact on internal layouts. At the moment we are reviewing methods and products that could minimise wall thickness. Insulation products with higher thermal properties than the usal mineral fibre reduce the thicknesses required but have a cost premium attached, which should be considered against the increased floor area or reduced building footprint. Roof-mounted technologies are likely to affect the pitch of roofs and in higher density projects must be carefully considered because of the reduced roof area.
Orientate roofs in a southerly direction to maximize daylight to roof-mounted technologies. For example, our design for EP鈥檚 Hanham Hall zero-carbon development had south-facing monopitch roofs which maximised the south-facing area.
An end to 鈥榖uild and sell鈥
Some of our clients are already considering now how they might build zero-carbon dwellings by analyzing a built or proposed scheme to understand what would have to be done to achieve a Code for Sustainable Homes level six rating. Others are building homes to the higher levels of the code to enable them to understand its technical and cost implications before it becomes mandatory.
Significantly, some clients are already taking a longer-term view to sustainable housing, rather than the 鈥渂uild and sell鈥 model, so as to address issues of management and long-term investment. These clients share common approaches that set them apart. These include:
- Early collaboration between the architect, contractor, suppliers and utility companies
- Early consideration of a detailed strategy
- Detailed initial study of such factors as onsite energy generation and the possibility of off-site connections
- A commitment to super-insulate buildings and detail for air-tightness
- Early consideration of overheating to negate the future need for cooling systems.
Of course, there is another complication. The definition of zero carbon is likely to be very different in five years鈥 time 鈥 even more so by 2016. Take the issue of using off-site energy generation to offset carbon emissions. Three months ago, this was applicable; now it is not, unless there is a private wire or heat main connection, which rules out many sites. The government could, however, revert to its former position in the near future. Certainly, it is hard to know how we, within the industry, are meant to hit such a long-range target when every time we look up the goalposts have moved.
Postscript
Andrew Mellor is associate director of PRP Environmental
Topics
Housing Expert - Sustainability
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View from the rooftop
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