
Quaise, Inc was founded in 2018 to develop a drilling system for converting existing power stations to use superdeep . The system would repurpose existing technology to drill 20 kilometers beneath the surface, where temperatures exceed 400°C. No fracking would be required, avoiding the potential for in other geothermal systems. Drilling using this technique is hoped to be fast, with boreholes aime. [pdf]
US-based start-up Quaise Energy was founded in 2018 to develop a millimetre-wave drilling system for converting existing thermal power stations to use superdeep geothermal energy.
Let’s get in touch. Quaise is an energy company unlocking geothermal energy for the world population through millimeter wave drilling technology.
Quaise’s geothermal project will help retrofit the TS Power Plant to accommodate geothermal energy. It's the first of five geothermal projects Quaise plans to announce in the coming years.
Carlos Araque is the CEO of Quaise. Where is Quaise headquartered? Quaise is headquartered in Cambridge, MA. What is the size of Quaise? Quaise has 54 total employees. What industry is Quaise in? Quaise’s primary industry is Oil and Gas Equipment. Is Quaise a private or public company? Quaise is a Private company.
Quaise is headquartered in Cambridge, MA. What is the size of Quaise? Quaise has 54 total employees. What industry is Quaise in? Quaise’s primary industry is Oil and Gas Equipment. Is Quaise a private or public company? Quaise is a Private company. What is the current valuation of Quaise? The current valuation of Quaise is 00000.
Aerial view of a drilling rig from Nabors Industries where Quaise Energy is installing millimeter wave capabilities. Work at Nevada Gold Mines will require a similar setup to develop deep geothermal energy on-site.

Baoma Solar Power Station, is a 25 megawatts (34,000 hp) power plant under construction in . The first phase of this renewable energy infrastructure with generation capacity of 5 MW is operational and was commercially commissioned in December 2022. The second phase with generation capacity of 20 MW is under construction and is expected to come online in the Q4 of 2023. It is reported to be the first grid-connected solar farm in the country, built under a publi. [pdf]

in is mostly based on and . Some energy infrastructure was damaged by the . There is high reliance on for energy in Syria, and electricity demand is projected to increase by 2030, especially for industry activity such as . However, conflict in Syria has caused electricity generation to decrease by nearly 40% in recent years due to plant destruction and fuel shortages. Electricity access in daily life for Syrians has also been. [pdf]
In Syria, most energy is based on oil and gas. Some energy infrastructure was damaged by the Syrian civil war. In the 2000s, Syria's electric power system struggled to meet the growing demands presented by an increasingly energy-hungry society.
This infographic summarizes results from simulations that demonstrate the ability of Syria to match all-purpose energy demand with wind-water-solar (WWS) electricity and heat supply, storage, and demand response continuously every 30 seconds for three years (2050-2052).
Energy demand in Syria has been increasing at a rate of roughly 7.5% per year due to the expansion of the industrial and service sectors, the spread of energy-intensive home appliances, and state policies that encouraged wasteful energy practices, such as high subsidies and low tariffs.
Violence and looting destroyed three major power plants in Syria between 2015 and 2017: the Aleppo Thermal Station, Zayzoon in Idlib, and al-Taim in Deir Ezzor. Pre-war, these three plants accounted for almost one-fifth of Syria's total generation capacity.
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