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Image: Enterprise
BuildTheEnterprise.org
The proposed "Gen1" design for the Enterprise spaceship looks like the starship made famous in Star Trek lore.
By
Universe Today
updated 5/12/2012 12:13:38 AM ET 2012-05-12T04:13:38

In Star Trek lore, the first Starship Enterprise will be built by the year 2245. But today, an engineer has proposed — and outlined in meticulous detail — building a full-sized, ion-powered version of the Enterprise complete with 1G of gravity on board, and says it could be done with current technology, within 20 years.

"We have the technological reach to build the first generation of the spaceship known as the USS Enterprise — so let's do it," writes the curator of the Build The Enterprise website, who goes by the name of BTE Dan.

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This "Gen1" Enterprise could get to Mars in 90 days, to the moon in three, and "could hop from planet to planet dropping off robotic probes of all sorts en masse — rovers, special-built planes and satellites,” BTE Dan says.

Complete with conceptual designs, ship specs, a funding schedule and almost every other imaginable detail, the BTE website was launched just this week and covers almost every aspect of how the project could be done. This Enterprise would be built entirely in space, have a rotating gravity section inside of the saucer, and be similar in size with the same look as the USS Enterprise that we know from classic "Star Trek."

“It ends up that this ship configuration is quite functional,” writes BTE Dan, even though his design moves a few parts around for better performance with today’s technology. This version of the Enterprise would be three things in one: a spaceship, a space station and a spaceport. A thousand people can be on board at once — either as crew members or as adventurous visitors.

While the ship will not travel at warp speed, with an ion propulsion engine powered by a 1.5GW nuclear reactor, it can travel at a constant acceleration so that the ship can easily get to key points of interest in our solar system. Three additional nuclear reactors would create all of the electricity needed for operation of the ship.

The saucer section would be a 0.3-mile-diameter (536-meter-diameter) rotating, magnetically suspended gravity wheel that would create 1G of gravity.

The first assignments for the Enterprise would have the ship serving as a space station and spaceport, but then go on to missions to the moon, Mars, Venus, various asteroids and even Europa, where the ship's laser would be used not for combat but for cutting through the moon's icy crust to enable a probe to descend to the ocean below.

Of course, like all spaceships today, the big "if" for such an effort would be getting Congress to provide NASA the funding to do a huge 20-year project. But BTE Dan has that all worked out, and between tax increases and spreading out budget cuts to areas like defense, health and human services, housing and urban development, education and energy, the cuts to areas of discretionary spending are not large, and the tax increases could be small.

"These changes to spending and taxes will not sink the republic," says the website. "In fact, these will barely be noticed. It’s amazing that a program as fantastic as the building a fleet of USS Enterprise spaceships can be done with so little impact."

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BTE Dan adds that "the only obstacles to us doing it are the limitations we place on our collective imagination." His proposal says that NASA could still receive funding for the science, astronomy and robotic missions it currently undertakes.

But he proposes not just one Enterprise-class ship, but multiple ships, one of which can be built every 33 years — once per generation — giving three new ships per century. "Each will be more advanced than the prior one. Older ships can be continually upgraded over several generations until they are eventually decommissioned."

BTE Dan, who did not respond to emails, lists himself as a systems engineer and electrical engineer who has worked at a Fortune 500 company for the past 30 years.

The website includes a blog, a forum and a Q&A section, where BTE Dan answers the question, "What if someone can prove that building the Gen1 Enterprise is beyond our technological reach?"

Answer: "If someone can convince me that it is not technically possible (ignoring political and funding issues), then I will state on the BuildTheEnterprise site that I have been found to be wrong. In that case, building the first Enterprise will have to wait for, say, another half century. But I don’t think that anyone will be able to convince me it can’t be done. My position is that we can — and should — immediately start working on it.”

For the complete space nerd experience, check out Build The Enterprise.

More about starship dreams:

Hat tip to Rand Simberg. This report was originally published on Universe Today as "Engineer Thinks We Could Build a Real Starship Enterprise in 20 Years."

Copyright © 2013 Universe Today. Republished with permission.

Explainer: 10 pieces of Star Trek tech

  • Paramount Pictures

    The latest reboot of the Star Trek franchise follows the story of a young James Kirk on his way to becoming captain of the Starship Enterprise. The movie gives Trekkies a fresh dose of fictional high-tech wizardry. But is any of this possible in the real world? Click the "Next" arrow above to see how 10 pieces of Trek tech, from teleportation to warp drive, are faring here on Earth.

    -- By John Roach, MSNBC contributor

  • Teleportation: a work in progress

    Ray Strange  /  AFP via Getty Images file

    "Beam me up, Scotty!" Oh, how easy travel would be if the technology existed to disintegrate our bodies in one place and nearly instantaneously make them reappear at our destination. Unfortunately, that kind of teleportation remains firmly fixed in the realm of Star Trek fiction. However, scientists are meeting with some success as they try to teleport messages encoded in beams of light across table-length distances, such as this experiment from 2002. More recent advances include teleporting information from one trapped atom to another.

  • Tricorder-like device scans for cancer

    Boris Rubinsky et al.

    Star Trek fans know tricorders as familiar handheld devices that scan unfamiliar planets (and organisms). Real-world citizens, too, are becoming familiar with a host of futuristic gizmos that do everything from reading a critter's DNA to scanning patients for cancerous tumors, as shown in this side-by-side comparison of a fictional tricorder (left) and a medical scan of simulated breast tumor displayed on a cell phone.

  • Deflector shield envisioned for Mars missions

    Ruth Bamford And John Bradford

    A so-called deflector shield surrounds the Starship Enterprise, protecting the spacecraft and its crew from lethal doses of radiation. Lab experiments now suggest that a portable magnetic shield could protect real-life astronauts on a mission to Mars. The shield would force harmful particles to curve around the ship. The engineering details remain to be worked out, and for now, the shield protects only against particles from the solar wind. Gamma rays and X-rays would remain a threat. An artistic depiction of the technology deployed on the Enterprise is shown here.

  • U.S. Air Force develops PHaSER

    Image: PHaSER
    U.s. Air Force

    The weapon of choice for Trekkies is the phaser, a device that directs an adjustable beam of energy at its target. The phaser is capable of a range of effects, from a momentary stun to instant obliteration. The U.S. Air Force has developed its own prototype device with the Star Trek moniker PHaSER (Personal Halting and Stimulation Response). The hefty gunlike device was originally developed to blind an attacker temporarily. A second laser has since been added capable of heating up skin.

  • Holodeck tech emerging

    Tom Uhlman  /  AP

    Starfleet members seeking knowledge or fun can step into holodecks to experience an interactive virtual reality eerily close to life itself. Similar technologies are beginning to emerge in the real world, including this 3-D lab at Wright State University in Ohio, where businesses can use the technology to speed up and improve the designs of products. An energy company is using it to enhance their search for oil. Other firms are embracing advances in video and audio technology to make telepresence, or videoconferencing, more realistic. The most lifelike experiences, however, remain in science fiction.

  • Tractor beam manipulates cells on a chip

    MIT

    In Star Trek, tractor beams are used by starships and space stations to control the movement of objects usually to pull them in closer, tow them along, or push them away. Researchers at the Massachusetts Institute of Technology have used a tractor beam of light to pick up, hold and move around individual cells on the surface of a microchip. To demonstrate the technology, the researchers moved around and held in place 16 E. coli cells to spell out MIT, as shown in this image.

  • Cell phones are pretty good communicators

    Apple Inc. via AP

    Trek-style communicators are those little devices, handheld or sometimes worn as a badge, that allow Starfleet members to speak to others in different parts of the ship or different parts of a planet. Modern-day cell phones, including the iPhone shown here, just might wow even the likes of Captain Kirk.

  • Universal translators making strides

    iTRAVL

    In Star Trek, language is seldom a barrier thanks to universal translators, devices that allow people of different tongues to converse. Communication among cultures in the real world remains a challenge, but basic words and phrases are no longer stumbling blocks, thanks to gadgets such as the translator from iTRAVL shown here. Speak into the device, and it will translate the word or phrase and speak it aloud.

  • Cloaking devices coming out of hiding

    Naomi Halas, Rice University |

    Cloaking devices are rampant in science fiction, from Star Trek to Harry Potter but they are no longer confined to the imagination. Real-world scientists are creating new materials that manipulate wavelengths of light in ways that can hide objects from detection. This graphic shows the basic design of a 3-D metamaterial lined with nanocups that redirect the flow of light that hits it, making the object invisible.

  • Warp drive? Don't bet on it

    Les Bossinas  /  NASA

    The Enterprise can travel faster than light via something called warp drive — essentially, a device that warps the space-time continuum around a starship. Many scientists have batted around ideas about how to achieve blistering speeds in real life, but most experts have concluded that, at least for now, warping the fabric of space is beyond human understanding of the laws of physics. Among the difficulties is harnessing the energy required to kick-start the propulsion.

Photos: Month in Space: April 2013

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  1. The view from space

    This view from the International Space Station shows the sun heading toward the horizon over southwestern Australia on April 2, 2013. The space station's solar panels loom in the foreground. (Commander Chris Hadfield / CSA via AFP - Getty Images) Back to slideshow navigation
  2. Horsehead of a different color

    The Horsehead Nebula takes on an eerie glow in an infrared image from the Hubble Space Telescope. This picture, released April 21, marks the 23rd anniversary of the famous observatory's launch in 1990 aboard the space shuttle Discovery. (NASA / ESA / Hubble Heritage Team via EPA) Back to slideshow navigation
  3. Tight quarters

    Italian astronaut Luca Parmitano (right), NASA astronaut Karen Nyberg (left) and Russian cosmonaut Fyodor Yurchikhin get their picture taken inside a Soyuz capsule simulator during a training exercise at Russia's Star City complex outside Moscow on April 26. The three spacefliers are scheduled to head for the International Space Station in May. (Sergei Remezov / Reuters) Back to slideshow navigation
  4. Blazing sun

    This full-disk view of the sun was captured by NASA's Solar Dynamics Observatory on April 11, during the strongest solar flare yet seen in 2013. The colors reflect the intensity of emissions in extreme ultraviolet wavelengths. (NASA / SDO) Back to slideshow navigation
  5. Evil eye

    Mountain ridges near San Alberto in Mexico look like a reptilian eye in this view from the International Space Station. Canadian astronaut Chris Hadfield uses a different metaphor: "A Dali watch on an alligator wristband." The picture was taken on April 15 and shared via social media on April 25. (Commander Chris Hadfield / Canadian Space Agency) Back to slideshow navigation
  6. Russian rocket's red glare

    A Russian Soyuz rocket blasts away from its launch pad at the Baikonur Cosmodrome in Kazakhstan on March 29, sending NASA astronaut Chris Cassidy and Russian crewmates Pavel Vinogradov and Alexander Misurkin toward the International Space Station for their six-month orbital tour of duty. (Sergei Ilnitsky / EPA) Back to slideshow navigation
  7. Fun with rockets

    Children hold self-made rocket models during a show in front of the Peter and Paul Fortress in St. Petersburg, Russia, on April 14. The gathering was part of the festivities surrounding Cosmonautics Day on April 12. The Russian holiday marks the anniversary of Soviet cosmonaut Yuri Gagarin's historic spaceflight in 1961 - an occasion marked in other countries as "Yuri's Night." (Alexander Demianchuk / Reuters) Back to slideshow navigation
  8. Strokes in the Sahara

    Geological formations take on an alien look in a picture of the southern Sahara in Mauritania, taken on March 19 from the International Space Station and shared via social media on April 24. Canadian astronaut Chris Hadfield calls the scene "effortless natural art." (Commander Chris Hadfield / Canadian Space Agency) Back to slideshow navigation
  9. Stars in the cloud

    This glittering picture shows X-ray emissions from young sunlike stars in the "wing" of the Small Magellanic Cloud, a satellite galaxy associated with the larger Milky Way. The Small Magellanic Cloud lies about 180,000 light-years from Earth. In this April 4 picture, readings from the Chandra X-ray Observatory are shown in purple; visible light seen by the Hubble Space Telescope is in red, green, and blue; and infrared readings from the Spitzer Space Telescope are indicated in red. (NASA via Reuters) Back to slideshow navigation
  10. A blast on Mars

    This image from the high-resolution camera on NASA's Mars Reconnaissance Orbiter shows a relatively youthful crater with dark-rayed ejecta, plus a light-toned zone that extends beyond that ejecta. The picture was taken in 2009, but it was released along with other images from the High Resolution Imaging Science Experiment, or HiRISE, on April 3, 2013. Watch a video about the crater (NASA/JPL/University Of Arizona) Back to slideshow navigation
  11. A new rocket rises

    Orbital Sciences Corp.'s Antares rocket rises for the first time from its launch pad on April 21 at the Mid-Atlantic Regional Spaceport on Wallops Island, Va. This practice launch was aimed at testing the rocket for what's expected to be regular cargo deliveries to the International Space Station (Terry Zaperach / NASA Wallops via AP) Back to slideshow navigation
  12. Storm over the Middle East

    An image from NASA's Terra satellite shows a thick plume of dust blowing over the eastern Mediterranean Sea on April 1. The clouds spread over Israel, the West Bank, Cyprus and Turkey in a giant, counterclockwise arc. (NASA via AFP - Getty Images) Back to slideshow navigation
  13. Blue heaven

    A March 27 photo from the European Southern Observatory shows the bright open star cluster NGC 2547, as seen by the Wide Field Imager on the MPG/ESO 2.2-meter telescope at the La Silla Observatory in Chile. Many remote galaxies can be seen between the bright stars, far away in the background of the image. (ESO via AFP - Getty Images) Back to slideshow navigation
  14. Ready for a rocket ride

    Launch crew members check NASA astronaut Chris Cassidy's spacesuit just before his March 28 launch to the International Space Station. Russian cosmonauts Pavel Vinogradov and Alexander Misurkin joined Cassidy in a Soyuz capsule for a quick six-hour ride to the station. (Ramil Sitdikov / Ria Novosti / EPA) Back to slideshow navigation
  15. A supersonic leap

    Virgin Galactic's SpaceShipTwo lights up its rockets for the first time in flight on April 29. Afterward, the company said in a tweet that the pilots confirmed "SpaceShipTwo exceeded the speed of sound on today's flight!" The reported maximum velocity was Mach 1.2. Virgin Galactic plans to send paying passengers on suborbital space trips on a regular basis. (MarsScientific.com / Clay Center Observatory via EPA) Back to slideshow navigation
  16. Where stars are born

    An enormous stellar nursery known as W3 shines in infrared light, as shown in a March 27 image from the European Space Agency's Herschel space observatory. W3 lies about 6,200 light-years away in the Perseus Arm, one of the Milky Way galaxy's main spiral arms. In this image, low-mass stars are seen as tiny yellow dots embedded in cool red filaments. In contrast, high-mass stars emit intense radiation that heats up the gas and dust around them. Those hot regions are shown here in blue. (ESA via AFP - Getty Images) Back to slideshow navigation
  17. Crazy quilt

    The rugged landscape of Iytwelepenty/Davenport Murchison National Park in the Australian Outback is "crazily beautiful" when seen from outer space, Canadian astronaut Chris Hadfield says. Hadfield sent down this picture from the International Space Station on April 21. (Commander Chris Hadfield / Canadian Space Agency) Back to slideshow navigation
  18. A comet's glow

    Comet ISON takes on a fuzzy glow in an April 10 image from the Hubble Space Telescope. This picture was taken when the comet was 394 million miles from Earth, but Comet ISON is expected to get much closer. Some skywatchers hope it will become bright enough to rank as the "Comet of the Century." (J.-Y. Li (PSI) / NASA / ESA) Back to slideshow navigation
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