News

Since cooling demand is primarily driven by the sun, could it also be powered by the sun?

The International Energy Agency has dubbed increased global cooling demand as one of the most critical blind spots in today’s energy debate. A new study entitled - Meeting Increased Global Cooling Demand with Photovoltaics during the 21st Century - yields critical new insight to a fundamental question: How much photovoltaics (PV) would be needed to power the world sustainably?
The cover that was submitted for Energy and Environment Sciences

The study is a collaborative effort of an international team of solar energy experts from Aalto University of Finland, Massachusetts Institute of Technology and SMART (Singapore-MIT Alliance for Research and Technology). It analyses the intersection of two dominant trends in the energy sector during the 21st century: the impetus to decarbonise the energy sector to mitigate dangerous anthropogenic climate change and the increased economic prosperity in tropical countries which makes for a higher demand for cooling than heating. 

More specifically, the study investigates whether the several billions of air-conditioning devices expected to come online within the 21st century could be powered by clean PV electricity, avoiding the need for additional carbon-based electricity generation, and accelerating the growth of the PV industry in the process. Dr Hannu Laine, the study’s lead author, says, “As we scoured through the scientific literature, we found many detailed theoretical and experimental studies demonstrating the synergy of cooling and PV on small-scale such as single buildings or communities. However, we were unable to locate a single analysis assessing the scope and degree of the synergy of cooling and PV at a global level”.

Another omittance was the discussion on how the picture will change as global warming proceeds, tropical countries gain wealth and as air-conditioners grow more efficient, “This deficiency makes it impossible for policymakers, investors and researchers to estimate the global impact of the phenomenon” Dr Laine adds.
The study team set out to estimate how much PV electricity generation would be required to power the global cooling demand today and how that number would change as tropical countries gain wealth, as global warming proceeds, and as technological innovation creates more efficient air-conditioners.

Using established socio-economic, climate change and energy efficiency improvement projections, they predicted that the cooling demand would increase from approximately 400 TWh/year in 2018 to nearly 14 000 TWh/year by the end of the century, a dramatic 35-fold increase, despite air-conditioners growing significantly more efficient. In monetary terms, this means that the cooling industry increases from an approximately 50 billion dollars/year industry to a 1.5 trillion dollars/year industry.

We expect these results to drive significant additional policy interest as well as research and business investments into the synergy of coo

Dr Hannu Laine

It was concluded that the potential added AC PV capacity is on par with the global PV production capacity today as a whole, or enough to power the entire country of France with PV, and by the end of the century it will grow to be enough to meet that of India. 

The study was published in the journal Energy and Environmental Science and was highlighted on the back cover of the journal’s September issue published September 11.

The online version of the article can be accessed here: https://pubs.rsc.org/en/content/articlehtml/2019/ee/c9ee00002j

For further information contact: Dr Hannu Laine (laine_hannu@hotmail.com)

  • Updated:
  • Published:
Share
URL copied!

Read more news

Four people talk at a tech event, two by a laptop, colourful UN goal posters glowing in the background
Awards and Recognition, Cooperation Published:

Unite! helps startups expand across Europe

Unite! soft-landing services support startups in expanding into new European markets by offering direct access to local innovation ecosystems, tailored matchmaking with industry and research partners, and hands-on support at Unite! universities across Europe.
Group of people posing by a purple bear statue at Siemens Energy, against a brick wall
Cooperation, Studies, University Published:

Unite! takes Aalto students on an energy excursion across Europe

Thanks to the Unite! Seed Fund, students from Aalto University gained first-hand experience of European energy policy, grid infrastructure and clean technology during a five-day study trip to Belgium, the Netherlands and Germany.
Campus park with green and orange autumn trees before a brick building under a blue sky with clouds
Awards and Recognition, University Published:

Which team deserves the Aalto Pioneering Excellence Award? Submit your nomination by 16 October

The award may be given to a team that does pioneering work to advance education, research or artistic activity, or to enable the international success of the Aalto University community
Empty indoor space with red floor, white walls, trolley and large blue word ‘TILA!’ overlaid
Campus, University Published:

TiLA! – a new home for creativity in Otaniemi

A community workspace in Espoo for artists and creative professionals.