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既然有緣到此一訪,
何妨放鬆一下妳(你)的心緒,
歇一歇妳(你)的腳步,
讓我陪妳(你)喝一杯香醇的咖啡吧!

這裡是一個完全開放的交心空間,
躺在綠意漾然的草原上,望著晴空的藍天,
白雲和微風嬉鬧著,無拘無束的赤著腳,
可以輕輕鬆鬆的道出心中情。

天馬行空的釋放著胸懷,緊緊擁抱著彼此的情緒。
共同分享著彼此悲歡離合的酸甜苦辣。
互相激勵,互相撫慰,互相提攜,
一齊向前邁進。

也因為有妳(你)的來訪,我們認識了。
請讓我能擁有機會回拜於妳(你)空間的機會。
謝謝妳(你)!

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2022年7月23日 星期六

Climate change: Can water, rail and electricity systems cope with rising temperatures?


Climate change: Can water, rail and electricity systems cope with rising temperatures?

This article is published in collaboration with.

Climate change is intensifying heatwaves in the UK.

Image: Unsplash/Sigmund

  • As global temperatures continue to rise, UK infrastructure is under threat when dealing with temperatures it is unequipped to manage.
  • Currently, 20% of existing infrastructure in the UK is at risk of overheating, and this will rise as average temperatures continue to increase.
  • The infrastructure most at risk is rail, water and electricity, which will have significant impact on public life as heatwaves intensify in the UK.
  • Building a net-zero country demands not only a transition to zero-carbon technologies, but adapting existing infrastructure to withstand climate change.

Hot weather strains the pipes that pump our water, the power lines that deliver our energy and the roads and railways that get us home at night. As global temperatures continue to rise, national infrastructure will be challenged as never before.

Climate change is intensifying heatwaves in the UK, an affluent country with the capacity and resources to adapt to warmer temperatures. Still, very little has been done over the past ten years to address overheating in buildings and the rising risk to critical infrastructure. The country is unprepared to handle temperatures of more than 38°C consistently for long periods, which is more common in Mediterranean countries.

UK infrastructure has typically been designed to retain heat during the winter, but it must become effective at keeping the heat out in the summer. As things stand, roughly 20% of existing UK infrastructure is at risk of overheating – and this threat is projected to rise as average temperatures climb.

Rail

Railways across the UK contain thousands of miles of steel track. Steel has a high thermal conductivity, which means it can absorb and transfer a lot of heat faster than other construction materials, and reach up to 20°C hotter than the surrounding air temperature. Steel rails lengthen in the heat, pushing against the base and sides of the track. When there is no room to expand the rail can buckle, which takes a few days to repair and necessitates significant delays.

In hotter European countries, including Spain and France, the steel used in rail lines is typically treated differently before and during manufacture. For instance, different alloys made be used, or the steel may be fabricated differently so that it can release heat stress more effectively once deployed.

About 40% of the British rail network is electrified, using both overhead lines and conductor rails. Power lines can sag in hot weather, so trains are ordered to travel at much slower speeds to prevent electrical fires. Slow journeys exert less force too, making it less likely the track will buckle.

Thankfully, modern overhead lines are less affected by hot weather as they contain auto-tension systems with springs or balance weights that adjust to varying temperatures. Older overhead power lines still contain fixed tension connectors to the trains and are much more vulnerable to failure during heatwaves – these must be replaced to prepare the UK’s rail network for hotter summers in future.

The UK’s railways need to be weatherised to withstand worsening heatwaves. Image: REUTERS/Darren Staples

Water

Water pipes don’t just burst or fracture during the colder months of the year. As households consume more water during hot weather, water pressure in underground pipes rises. Meanwhile, parched soil can become loose and dry, allowing room for water pipes to shift, particular the bends, joints and connectors. When combined with high temperatures and UV rays on exposed parts of the network, pipes may burst.

Poorly maintained water pipes struggle to withstand long periods of hot temperatures, fluctuating pressure loads and inconsistent rainfall. Weak spots in pipelines are usually covered and insulated with polyethylene, a flexible plastic foamed insulator.

This ensures damage from overheating is limited, but more research is needed to make water utilities more resilient. In the meantime, the UK could expand the lifetime of its pipes by wrapping weak points more frequently and expanding the layer of protective material elsewhere.

Electricity

Hot weather can cause big problems for the networks which generate and distribute electricity. Power transmission cables in the UK are often clad in aluminium or rubber, which are susceptible to expanding in the heat.

Pylons are typically encased in glass and ceramic – better insulators which prevent the structures conducting electricity. These are too expensive to coat vast lengths of transmission cables, though. Power utilities will need to research alternative materials to help wires and electricity flexes withstand higher temperature variations.

The UK could also install conductors capable of working in hotter conditions and build taller power line poles.

Similar to the transmission cables for trains, electrical power lines expand and slacken in extreme temperatures, increasing resistance and lowering how efficiently the entire system distributes energy. A severe drop in efficiency can shut down power plants and plunge people trying to keep cool into a blackout.

Building a net zero country demands not only a transition to zero-carbon technologies, but adapting existing infrastructure to withstand the challenges of climate change. An economy capable of slowing and eventually reversing global heating can only emerge if we adapt what already exists to the inevitable impacts to come.

DISCOVER

What’s the World Economic Forum doing about climate change?

License and Republishing

World Economic Forum articles may be republished in accordance with the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International Public License, and in accordance with our Terms of Use.

The views expressed in this article are those of the author alone and not the World Economic Forum.

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