中文  |  ENGLISH

Rensselaer team develops effective concentrated solar power plant using affordable, accessible resources

2020.02.06     From: helioscsp

Partha Dutta, a professor of electrical, computer, and systems engineering at Rensselaer Polytechnic Institute, envisions a not-so-distant future where even the most remote parts of the world would have access to clean and renewable energy. His vision wouldn’t require a large power grid or expensive technology. Instead, he believes it could be accomplished using simple mirrors, local resources, and the sun.



“I call this ‘engineering for a better world,’ which means that you have to use affordable, accessible, and adequate resources,” Dutta said.


Dutta’s design generates heat by capturing sunlight, which then is used to convert water into steam. That steam can be used to directly power a steam turbine, or in this system, it can be stored for later use.


Producing energy by concentrating sunlight is not entirely new. But what sets Dutta’s concept apart from other concentrated solar power plants, he said, is that his plant is simple to construct, relies on local materials, and doesn’t require the use of molten salt, which can cause corrosion within the system’s pipes. These features mean lower assembly and maintenance costs, which would make a major difference for many communities.


“We’ve designed a concentrator that can be made out of small mirrors, which is very inexpensive,” he said. “It can be made by a local labor force, without special training.”


Dutta recently built a kilowatt-scale prototype plant in Bhopal, India, successfully demonstrating the proof of concept.


Finding an alternative to the molten salt typically used in such systems was a critical step. Dutta and his research team at Rensselaer studied hundreds of different materials, focusing on how well each material stores heat. Dutta took that information to the field in order to find natural and abundant materials in Bhopal that most closely match ideal thermal properties uncovered in the lab.


What he found were earth-abundant thermal rocks that were placed inside a tank for heat storage — a key element for ensuring energy can be produced at any time of day. At night, for instance, when energy from the sun isn’t available, the heat stored within the rock material will convert water into steam to be used for electricity.


Dutta sees this system as a clean alternative to coal and fossil fuels that feed thermal power plants — in turn reducing greenhouse gas emissions. It could also usher in greater energy efficiency in industrial processes that require heat.


This energy independent, efficient, and sustainable system, he said, can be used anywhere — including in urban areas where demand for electricity is high. But Dutta believes the largest potential is in bringing power to areas across the globe that currently have no access to electricity.


“It’s a clean way of generating power,” Dutta said. “The potential is expansive. With this energy source, you can do heating, you can do cooking, you can create electricity, you can do water purification, which is a very big thing in many parts of the world.”


Dutta plans to expand this research. He hopes to demonstrate a megawatt-scale plant within the next year or so, in order to continue to show the potential of this environmentally and financially friendly approach to producing solar energy. He is also looking to create high temperature supercritical steam through this process — a move that would increase efficiency of electricity generation by steam turbine.


Founded in 1824, Rensselaer Polytechnic Institute is America’s first technological research university. Rensselaer encompasses five schools, 32 research centers, more than 145 academic programs, and a dynamic community made up of more than 7,900 students and over 100,000 living alumni. Rensselaer faculty and alumni include more than 145 National Academy members, six members of the National Inventors Hall of Fame, six National Medal of Technology winners, five National Medal of Science winners, and a Nobel Prize winner in Physics. With nearly 200 years of experience advancing scientific and technological knowledge, Rensselaer remains focused on addressing global challenges with a spirit of ingenuity and collaboration. To learn more, please visit www.rpi.edu.




Upcoming CSP events:


10th CSP Focus China 2020 (Beijing China) 

5th CSP Focus MENA 2020(June.23-24,Dubai, UAE)


More CSP news and reports please visit www.cspfocus.cn 

or CSP Focus social media on LinkedInTwitterFacebook.


Leave your thoughts here

Reports(Member Only)

See more+
  • CSP Focus Membership Proposals

    We are now proposing CSP Focus Membership, hoping to better serve our members to keep pace with the latest updates of ongoing CSP projects worldwide, and to establish and maintain business relations with major shareholders of the projects. CSP Focus offers to Membership exclusive access to:1. Daily/Weekly update and analysis on CSP policies, projects, technologies, market trend and corporate relea

  • The Latest CSP Focus Monthly Update

    Join CSP Focus Membership to Get the Latest CSP Focus Monthly Update December Edition.

  • CSP Project Monthly Update 2022 December Edition

    CSP Focus is presenting CSP Project (China) Update 2022 December Edition.Detail report is available for CSP Focus Membership.

  • Presentations-CSP Focus China 2021

    The Report is for CSP Focus Members only.

Upcoming Events

See more+

Project Updates

See more+

CONTACT US

Tex:

Email:csp@cspfocus.cn


备案/许可证编号为:沪ICP备17051021号

Wechat public platform

Follow CSP Focus for more news