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Showing posts with label water conservation. Show all posts
Showing posts with label water conservation. Show all posts

18 June 2026

Solar panels built over California canals generate power, save water18JUN26&12NOV25

 

BRILLIANT!!! Saving water while generating clean power, I admire the people who came up with this idea and worked together to make it so! Though the article states that right now it is not economically feasible to cover the entire canal system with solar panels, as water becomes more and more scarce that may change. Projects like this are encouraging and give hope for the future. From Only Engineers Can Understand and ASCE / American Society of Civil Engineers.....FROM facebook 18JUN26Only Engineers Can Understand


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California is testing an innovative idea that tackles two challenges at once: water conservation and renewable energy generation. Instead of building solar farms on new land, engineers are installing solar panels above irrigation canals, allowing the same space to produce electricity while helping reduce water loss.
The concept works by shading the canals, which lowers evaporation rates and helps conserve millions of gallons of water each year. At the same time, the solar panels generate clean electricity and can even operate more efficiently because the cooler air above the water helps reduce panel temperatures.
Supporters argue that canal-top solar projects make use of existing infrastructure, avoiding the need to convert farmland or natural habitats into solar fields. In a state that frequently faces drought conditions and growing energy demand, the approach has attracted attention as a practical way to maximize limited resources.
If expanded across larger portions of California's vast canal network, the technology could save significant amounts of water while generating enough renewable energy to power thousands of homes and businesses. Similar projects are now being explored in other parts of the world facing both water scarcity and rising electricity needs.

Should more countries prioritize dual-purpose infrastructure projects like this, where a single investment can solve multiple environmental challenges at the same time?

Solar panels built over California canals generate power, save water

11/12/2025

An irrigation district in California’s Central Valley region has installed arrays of solar panels atop a series of canals to demonstrate how such systems can generate electrical power and, through shading, reduce the loss of water from evaporation.

The solar arrays are also intended to reduce maintenance costs on the canals by limiting the amount of vegetation that forms in the canals and hampers water flow, explained Bill Penney, P.E., civil engineering department manager at the Turlock Irrigation District.

Founded in 1887 as California’s first publicly owned irrigation district, the TID helped bring water to the “dry land nestled between the Tuolumne, Merced, and San Joaquin rivers,” according to the district’s website. In the 1920s, the TID also began to generate electricity for its customers, first through a hydropower dam but now also via natural gas facilities as well as wind and solar generation, noted Penney. The canal solar arrays project is just the latest innovative concept to be tried in the TID’s nearly 140-year history, Penney said.

Dubbed Project Nexus, the canal solar arrays are intended to serve as a proof of concept “to pilot and further study solar over canal design, deployment, and co-benefits on behalf of the state of California using TID infrastructure and electrical grid access,” according to a Nexus fact sheet. The project arose from a 2021 study conducted by the University of California, Merced that predicted “significant water, energy, and cost savings for the state” if solar panels covered all of California’s approximately 4,000 miles of public water delivery system infrastructure, according to the fact sheet.

For Project Nexus, solar panels were installed above two narrow-span canals, each 25 feet wide, covering a total distance of 1,400 linear feet; solar panels were also installed over a 300-foot-long section of a wide-span canal, measuring 115 feet across. Most of the canals in TID’s roughly 250-mile-long canal system are narrow span, Penney added, but one of the district’s wide-span conveyances was included in the pilot because California’s Department of Water Resources administered the funding from the state for Project Nexus.

The DWR operates and maintains the California aqueduct system, which features canals that can measure more than 100 feet wide, Penney explained.

In addition to the TID and the DWR, Project Nexus also involved UC Merced and Solar AquaGrid, a Bay Area development firm that commissioned the UC Merced study and served as program manager for the canal solar array effort. Machado & Sons, based in Turlock, California, was the project’s general contractor. San Jose, California-based MBL Energy was the structural engineer and contractor. Blymyer Engineers, of Alameda, California, was responsible for electrical engineering. BEI Construction, also in Alameda, headed up the electrical construction.

Rural settings

The arrays above the two narrow-span canals were installed in April at sites near a relatively new irrigation regulating reservoir that itself had been completed in August 2023, said Penney. The wide-span array was installed in September at a site roughly 10 miles from the narrow-span arrays.

The TID has canals in urban settings and rural settings. It chose rural locations for the Nexus sites, in part, to avoid potential issues such as solar glare from the photovoltaics bothering people in more heavily populated neighborhoods, Penney said. At the same time, the district sought locations that were easily accessed and not too remote because the project would likely attract media attention, he added.

The structures for the solar arrays featured steel-framed supports made from I-beams with foundations made with recycled concrete and recycled rebar. At the sites, the solar arrays had to be at least tall enough for a person – or equipment – to pass underneath the array, permitting a worker to access the canal, perform maintenance activities, or conduct canal operations, Penney said.

The narrow canal arrays were constructed in a slanting configuration for optimal solar exposure, the low side providing a minimum of 8 feet of clearance under the array and the high side reaching a minimum of 14 feet. The wide-span array featured an arched or peaked design, supported on seven I-beam trusses that span the canal, with a 14-foot clearance on each side.

Because the solar array foundations encroached on the canal access roads by anywhere from 2 to 5 feet in places, the banks of the canals were widened in certain locations, extending into the surrounding farmland – but always within the TID’s right of way, Penney said. The foundations extend into the ground between 15 and 18 feet deep – several feet deeper than the structures actually need, he explained, but deep enough to keep the arrays standing even if the surrounding bank is washed away.

Generating power

In a March 2022 article on ASCE’s Civil Engineering Source news website, a TID official predicted that the solar array project might generate as much as 5 megawatts of electrical power annually. But that was based on the expectation of a larger pilot test – installing solar arrays to cover as much as 8,000 linear feet of canals, Penney said. Instead, cost, constructability issues, and other factors led to roughly 1,700 linear feet of solar panels being installed, which can produce approximately 1.6 megawatts of electricity, he explained.

The project also installed two 75-kilowatt iron-flow batteries at the narrow-span arrays to provide electricity for the hydraulic pumps at the regulating reservoir, especially at night when the arrays will not be generating power. The reservoir is designed to improve TID operations by capturing water that might otherwise spill into local rivers or get lost through various inefficiencies as it moves through the canals.

“This new irrigation regulating reservoir is at the center of our district,” Penney explained, where it can hold the water until there is increased demand downstream – saving potentially 10,000 acre-feet of water annually.

“So putting solar arrays near this facility that saves water, combined with the new renewable energy source, goes to the core of TID’s innovative spirit!” Penney declared. Noting that the district already gets requests for tours of its operations “from all over world,” Penney looks forward to now also being able “to showcase the arrays.”

Collecting data

Although it is “premature to draw any conclusions” about the performance so far of the solar array project, Penney said, “we have been collecting data that initially seems to be supporting” the UC Merced study, especially in terms of co-benefits. The arrays are producing the electrical power expected and “we are seeing reduced levels of evaporation and vegetative growth in the canals,” he explained.

To track and compare the evaporation rates and other information about the areas with and without the arrays, researchers from UC Merced have installed various instruments under the solar panels and in adjacent, uncovered parts of the canals. The basic pilot test will run through next June, Penney noted, but the solar panels will remain in place, generating power for decades, and he hopes that UC Merced’s team will continue collecting data even after the official conclusion of the study.

Penney does not believe it will be practical or cost-effective to cover every foot of every canal in California with solar panels. But in certain locations, especially remote, rural parts of the state, the arrays can provide power and other benefits much more effectively than, say, constructing 50 miles of new transmission lines. A local power source will also help smaller communities during wildfires, when more distant power sources might be shut down, Penney added.

AUTHOR


14 June 2026

LIFE'S LITTLE MYSTERIES: Has all the water on Earth been peed before? & Making wastewater drinkable is a growing trend as water resources become more strained 13JUN&11MAR26

Was your water once peed out by an animal?
(Image credit: Monica Murphy via Getty Images)

 HERE in Virginia, Maryland and D.C., depending on where you are, we are experiencing moderate, severe and extreme drought conditions for the second year running. It looks like 3/4ths of the country is experiencing some sort of drought per the U.S. Drought Monitor Map as of  9 JUNE 26. A lot of these areas have been experiencing drought for 3, 4, and 5+ years. Some cities are considering recycling their sewer water back into their drinking water systems. One American city has. That just gives a lot of people the heebie-geebies and they don't believe it can be done safely. The article from NPR (have you donated to NPR and PBS since drumpf/trump and the gop / greed over people-republican party controlled congress stopped federal funding for them?) is about how this is already happening in Altamonte Springs, Florida. And the article from Live Science discusses if all the water on Earth has been peed at least once or not.....

Has all the water on Earth been peed before?


Water, water, everywhere … has all of it been peed out at least once?

13 June 2026

As water molecules move around the planet through the water cycle, they take on many forms, moving from solid to liquid to gas and back again. They can make up snowpacks melting in the spring, a river rushing to the ocean, clouds carried on sea breezes, and even pee flushed down the toilet.

But with this complex cycle of evaporation, condensation and precipitation continuing over and over, has the water coming out of your faucet been inside a dinosaur or a mammoth at some point? And does that mean all the water on Earth has been peed before?

Pee is one of many stages that make up the water cycle.

(Image credit: Vicki Jauron, Babylon and Beyond Photography via Getty Images)

Making wastewater drinkable is a growing trend as water resources become more strained

AILSA CHANG, HOST:

The country's water supply is coming under increasing strain. But as groundwater resources dwindle, another water supply strategy is gaining momentum. Molly Duerig with Central Florida Public Media in Orlando reports on the rise of recycled water, meaning recycled treated wastewater - that's right, for drinking.

(SOUNDBITE OF SPRINKLER SPRAYING)

MOLLY DUERIG, BYLINE: The idea of reusing treated wastewater is nothing new. Here in Florida, more than 300 million gallons a day gets used to irrigate people's lawns.

(SOUNDBITE OF WATER BUBBLING)

DUERIG: What's newer is an idea that's growing, and for some, much harder to digest - drinking treated wastewater.

FRANK MARTZ: It's really just recycled water.

DUERIG: That's Frank Martz, city manager at Altamonte Springs, just about 10 miles north of Orlando.

MARTZ: You know, 40 years ago, 30 years ago, 20 years ago, just the notion of taking stormwater and sewage and turning it into drinking water sounded ridiculous to many and scary to many.

DUERIG: And here at the city's pilot facility, I'm about to try some. There's no sink here, so Martz turns a knob on one of the pipes and out flows the water, clear and odorless.

(SOUNDBITE OF WATER SPLASHING)

DUERIG: It's water. I'm about to drink. Yeah, it tastes completely normal.

If you hadn't told me this was recycled wastewater, I wouldn't have known. Since I do know where this water ultimately comes from, drinking it still feels a little strange. But Martz plus many water engineers and scientists say it's perfectly safe.

MARTZ: It is chemically clean. It is biologically clean.

DUERIG: Florida is now one of four U.S. states where regulations allow for recycled wastewater to be treated and distributed for drinking, what's called direct potable reuse. The others are Arizona, California and Colorado, where similar pilot projects are underway. Bruno Pigott, a former senior official with the Environmental Protection Agency, now heads up the WateReuse Association, a trade group that lobbies for using what they call recycled water, including for drinking.

BRUNO PIGOTT: It's easy for me to say I'm excited about it. But I've got to make sure that the public is understanding it, that it's pure and safe, and understands the complex nature of water and that every drop of water's been used before.

DUERIG: Pigott says it's a challenge, but he's confident drinking treated wastewater will only keep growing in the U.S.

PIGOTT: It's spreading across the country.

DUERIG: And in Florida, rapid growth is driving the state to encourage it. There are skeptics, though, like Daytona Beach resident Greg Gimbert. He's been mobilizing people against direct potable reuse. Here's Gimbert speaking at a recent county council meeting.

(SOUNDBITE OF ARCHIVED RECORDING)

GREG GIMBERT: Today, you should put forward a version of our ban on toilet-to-tap.

DUERIG: Critics call it toilet-to-tap. In reality, this water goes through many steps of treatment after the toilet before people can drink it. Gimbert says he still doesn't trust the process and sees it as a ploy to allow for Florida's unlimited growth.

(SOUNDBITE OF ARCHIVED RECORDING)

GIMBERT: Maybe cut back on new development until you can cut over to a safe water supply.

DUERIG: Back in Altamonte Springs, Frank Martz says the technology here is the way of the future.

MARTZ: The water itself is ready. The question is, are the users ready?

DUERIG: Maybe not quite yet. These treatment plants are costly, and it will take a while for local utilities to build them.

For NPR News, I'm Molly Duerig in Orlando.

(SOUNDBITE OF MUSIC)

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