How to Bring a Geothermal Well Back from the Dead
Geothermal company Zanskar bought a New Mexico power plant in 2024 that appeared from the outside to be failing. The shallow wells had been rapidly
Geothermal company Zanskar bought a New Mexico power plant in 2024 that appeared from the outside to be failing. The shallow wells had been rapidly losing heat, and the plant was having trouble generating power as a result. Now, after drilling a new well and operating the power plant for a full year, Zanskar says that it has made a complete turnaround. The Lightning Dock site, according to figures from the company shared exclusively with WIRED, has become one of the most productive pumped geothermal wells in the US, providing enough heat to run the power plant with no issues. The productivity over the past year at the Lightning Dock site âfundamentally changes how people think about these types of systems that we really thought we understood in the past,â says Zanskar cofounder Joel Edwards. Itâs the latest bit of good news for the long-neglected geothermal industry, which is experiencing an investment renaissance.
Innovative drilling technology and artificial intelligenceâalong with a little bit of luckâplayed roles in the milestone. And while not all traditional wells may have the same set of circumstances as Zanskar had at Lightning Dock, the company says that its success is a wake-up call that old well sites are still worth further exploration. Traditional geothermal energy relies on tapping hot water within the earth to generate electricity by pumping it to the surface and spinning turbines. In theory, itâs an excellent way of generating renewable baseload power: People have been harnessing steam from hot springs for thousands of years. But geographic constraintsâpower plants need to be situated on geothermal reserves, which are overwhelmingly in the western USâas well as the difficulty and expense traditionally involved in finding new wells mean geothermal energy constitutes less than 1 percent of the electricity mix in the US. Courtesy of Zanskar Another challenge for the industry is that most wells gradually see declines in productivity.
But Lightning Dockâs decline had been particularly steep, losing between five and 10 times as much heat each year as average wells, Zanskar says. When the company bought the site, temperatures in the original wells, which were less than 2,500 feet deep, had cooled some 50 degrees Fahrenheit (10 degrees Celsius) to about 250 degrees F by 2024. The onsite 15-megawatt power plant, which supplies electricity to New Mexicoâs largest utility, was designed to operate at temperatures above 300 degrees F. While conventional geothermal wells usually go down 3,000 to 5,000 feet, drilling deeper wells can tap into hotter reserves of water to use for power. But tighter rock formations deep underground make drilling more challengingâand costly. Whether or not to drill deeper is âbasically a question of economics,â says Roland Horne, a senior fellow at the Precourt Institute for Energy at Stanford University. The cost, Horne says, is not linear: âIf you drill twice as deep, it costs four times as much.â To help make better bets on drilling, Zanskar uses artificial intelligence to identify what are known as hidden systemsâthat is, sites with ample geothermal potential but little to no signs of their viability on the surface.
