Advertisement
Sections
What is the X-57, NASA's first electric plane designed to reduce fuel consumption, emissions, and noise?
The X-57 uses lithium batteries to run electric motors for its propellers. But the energy you get from batteries, relative to their weight, is 50 times less than you can get from aviation fuel

The experimental airplane X-57, developed by NASA, is due to fly for the first time this year. It has an impressive 14 propellers along its wings and is powered entirely by electricity. This sounds great considering we have to get off fossil fuels yet our demand for aviation is growing. But how much closer will NASA’s plane bring us to this goal?Finding an alternative to aviation fuels such as kerosene will be key if we want to continue flying. The X-57 uses lithium batteries to run electric motors for its propellers. But the energy you get from batteries, relative to their weight, is 50 times less than you can get from aviation fuel.The X-57 is a modified, four-seater, Italian-built Tecnam P2006T aircraft. It relies on a combination of lots of propellers, small motors and many batteries spread out across an aircraft, known as “distributed propulsion”.
What’s different about the X-57 is that the wings are completely redesigned with propellers positioned to optimise air flow around them. When a propeller is not needed, its blades can be folded back to reduce drag. Image Courtesy: NASA[/caption]With liquid fuel, the weight of the plane reduces significantly as fuel is consumed and keeping the fuel in the wings ensures that the balance of the aircraft isn’t changed.However, it is really energy density — the amount of energy a battery contains compared to its weight or size — that matters. New advances are being made constantly, such as batteries created based on quantum technology.But while these charge faster than normal batteries they won’t replace lithium batteries and are unlikely to transform the prospects for electrically powered flight.What we’re really waiting for is a revolution in battery technology, one that gives an energy density comparable to aviation fuel.Is X-57 the future?With a range of about 160km and a flight time of about one hour, the X-57 is not expected to lead to a replacement technology for long-haul flying. At least not straight away. Instead, short-hop flights with ten or so passengers are a good and potentially possible target for early, battery-powered flights.Hydrogen-powered planes are also of great interest because the energy density of hydrogen is nearly three times greater that of conventional aviation fuel. But hydrogen is a gas and it needs to be stored in pressurised fuel tanks to reduce its volume.This would require a complete rethink of aircraft design. Some work has been done with hydrogen stored as a liquid at -253°C. Hydrogen for aviation is therefore exciting, but probably impractical.
This article is republished from The Conversation under a Creative Commons license. Read the original article.Read all the Latest News, Trending News, Cricket News, Bollywood News,India News and Entertainment News here. Follow us on Facebook, Twitter and Instagram.
This approach represents an exciting area of research and development that can be found in many experimental electric aircraft designs.What’s different about the X-57 is that the wings are completely redesigned with propellers positioned to optimise air flow around them. When a propeller is not needed, its blades can be folded back to reduce drag.Propeller technology generally is having a rebirth. Designs are becoming not just more efficient, but also less noisy and more affordable. The speed and pitch angle of propellers can even be changed during flight to adapt to the different aircraft speeds required for take-off, landing and cruising.Air density changes with altitude and affects the thrust you get from a propeller. Now that we can make propellers that work effectively at all altitudes and speeds, we can really get the most out of the energy stored in the batteries. New designs, such as the first ever 11-bladed propeller (on the Piper Cheyenne plane), can achieve very high thrust even at high air density.Some aircraft even use “vectored thrust” by allowing the motors and propellers to rotate, which gives the option of vertical take-off and landing.These aircraft might more resemble helicopters than planes, and might mean conventional airports with long runways and large terminals will be a thing of the past.Battery technologyThe X-57 uses off-the-shelf lithium-ion batteries. This is because the project is primarily addressing the potential for new propeller and wing configurations rather than developing the perfect battery.But that will be an important challenge for electric aircraft developers to overcome. Lithium batteries are pretty much the best we’ve got so far, but they are still heavy. Lithium metal is also hazardous as it catches fire easily.There are advantages with using batteries. Their weight stays constant throughout the flight, meaning they don’t need to be stored in the wings as aviation fuel traditionally has been.[caption id="attachment_12077562" align="alignnone" width="640"]
What’s different about the X-57 is that the wings are completely redesigned with propellers positioned to optimise air flow around them. When a propeller is not needed, its blades can be folded back to reduce drag. Image Courtesy: NASA[/caption]With liquid fuel, the weight of the plane reduces significantly as fuel is consumed and keeping the fuel in the wings ensures that the balance of the aircraft isn’t changed.However, it is really energy density — the amount of energy a battery contains compared to its weight or size — that matters. New advances are being made constantly, such as batteries created based on quantum technology.But while these charge faster than normal batteries they won’t replace lithium batteries and are unlikely to transform the prospects for electrically powered flight.What we’re really waiting for is a revolution in battery technology, one that gives an energy density comparable to aviation fuel.Is X-57 the future?With a range of about 160km and a flight time of about one hour, the X-57 is not expected to lead to a replacement technology for long-haul flying. At least not straight away. Instead, short-hop flights with ten or so passengers are a good and potentially possible target for early, battery-powered flights.Hydrogen-powered planes are also of great interest because the energy density of hydrogen is nearly three times greater that of conventional aviation fuel. But hydrogen is a gas and it needs to be stored in pressurised fuel tanks to reduce its volume.This would require a complete rethink of aircraft design. Some work has been done with hydrogen stored as a liquid at -253°C. Hydrogen for aviation is therefore exciting, but probably impractical.Synthetic fuels are ready to go as a substitute for aviation fuels — at a price.Perhaps as technologies develop, they’ll become cheaper, but it’s still likely that the cost of flying will increase as we move away from fossil fuels.Batteries will almost certainly be powering our short-haul flights in the near future and if there is a revolution in battery technology then the future of aviation will be completely changed.Eventually, we will be faced with an ultimatum: either we figure out how to make planes that don’t need fossil fuels, or we stop flying.
First Published:Jan 31, 2023, 17:47:00 IST
Advertisement
Advertisement

Military drones & police check-ups: How Sri Lanka is fighting against worst dengue outbreak in a decade
Sri Lanka is fighting its most severe dengue outbreak in nearly a decade, with infections rising sharply across the nation. Military drones have been deployed to tackle the outbreak, which has claimed 56 lives. Health officials said the outbreak is being driven primarily by the DENV-2 variant of the virus
3 min read
How Facebook job ad lured 2 Karnataka men into Myanmar cyber scam camp
The Karnataka Cyber Command has rescued two youths from a scam compound in Myanmar operated by Chinese fraudsters. The duo from Karnataka were lured on the pretext of data-entry jobs. They were asked to work for 16 hours a day and were expected to sleep for six hours daily
4 min read
Why is India seeing 95% cloud cover despite a Super El Niño?
India is witnessing nearly 95 per cent cloud cover despite a Super El Niño, a climate event usually linked to weaker monsoons. Regional weather systems, cyclonic circulations, the monsoon trough and moisture from two seas are temporarily overpowering one of the world's strongest climate phenomena
5 min read
What is CJP’s fourth demand to the government as protests in Delhi intensify?
The protest by the Cockroach Janta Party at Delhi’s Jantar Mantar refuses to die down. The group have made a fourth demand to the Centre, asking that no FIRs are filed against the agitators and that no legal action be taken. The government has expressed willingness to speak to the protesters, but refused to accede on the resignation of Education Minister Dharmandra Pradhan
5 min read
The new geography of war: Why the Houthis can no longer be ignored
The rise of the Houthis marks the emergence of a new geography of war — one in which influence flows not only from capitals and conventional armies, but also from rugged mountains overlooking vital sea lanes
6 min read
Advertisement
Advertisement
