Do-It-Yourself electric cars

By CNET


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Countless small start-ups and Detroit automakers are trying to revive electric cars from an early grave, although there's a long road ahead before electricity might serve as a "fuel" for the masses.

In the meantime, however, a handful of companies aims to put the power cord in the hands of drivers who want to transform their gas-electric hybrids into plug-in hybrids, or to replace the internal combustion innards of other cars with all-electric systems.

The businesses are touting plug-in hybrid systems that can be driven up to 40 miles on batteries alone, with average fuel economy of 100 miles per gallon. The cars use gasoline once the batteries drain.

It can cost more than $10,000 to install a plug-in hybrid system on a Toyota Prius. Is the limited electric driving range worth the expense?

Absolutely, according to Felix Kramer, founder of CalCars, which counts nearly 200 plug-in hybrid conversions around the country. The Palo Alto, Calif.-based nonprofit in 2004 converted the first Prius with batteries that power up from an electrical outlet.

The range of 40 miles or less, likely to expand as battery makers race to make advances in the years ahead, covers most small trips Americans make in a day, he said. Therefore, Kramer views plug-ins as an ideal second car for commuters who still want to roll out the SUV for a weekend getaway.

"A conversion gives them the opportunity to say, 'I'm driving the world's cleanest extended-range vehicle,'" he added. And early adopters will pay a premium for the plug-in option, as they do for luxury extras, such as leather seats, that offer no economic payback.

Kramer believes that car makers will give their blessing eventually to qualified vehicle modifiers to install plug-in systems. For now, a small but growing collection of mechanics and dealers around the country will perform the service.

Among the choices already available to consumers, Plug-In Supply is making conversion kits based on an open standard from CalCars.

The Petaluma, Calif., company is selling $5,000 conversions that enable a Prius to drive a maximum 20 miles on full, lead-acid batteries, or $11,000 with lithium-iron phosphate batteries. Professional installation takes a day or two and costs about another $1,000.

The battery chassis can be installed on hinges to sit handily above the spare tire compartment, although adding the heavy lead-acid kit also requires boosting the car's shocks. By contrast, $10,000 conversions from competitor A123 Hymotion of Watertown, Mass., nestle lighter nanophosphate lithium-ion batteries inside the spare tire compartment.

Drivers can charge up by connecting a power cord from an exterior panel on the Prius to a 110-volt outlet, then waiting 8 hours or less.

Plug-In Supply has shipped 30 systems, and a factory in San Jose, Calif., should produce enough kits to ship two per day later this summer, according to founder Robb Protheroe.

He's seeking $5 million in venture funding to expand and attract a following before the Chevy Volt plug-in hybrid is due to roll off assembly lines late in 2010.

Protheroe described having a backlog of 75 orders and said a dozen dealers are signing up to install his systems in California, Illinois, New Mexico, New Jersey, Texas, Florida, Washington, Oregon as well as in Italy, Australia, Canada, and Germany.

"Texas is wide open right now," said Bill Kelly, who is working to establish Protheroe's plug-in conversions at an auto service center in Plano, Texas. "A lot of people are scratching their heads trying to figure out why they bought their SUVs."

Installers of Protheroe's equipment include the solar-powered, female-owned Luscious Garage, which caters to hybrid owners in San Francisco, and plans to add a space for plug-in electric hybrid conversions.

Another shop in San Francisco, Pat's Garage, has serviced hybrids since 1999. Owner Pat Cadam has been performing A123 Hymotion plug-in conversions for more than a year.

"We both share in the idea that the more of these cars that are on the road, the better," he said.

Cadam doesn't believe that electric cars will come to mass market until around 2012. Toyota's 2010 plug-in hybrid plans, he noted, are limited to a run of several hundred vehicles for fleets only.

In the interim, Cadam sees expanding the number of plug-in cars as crucial to whetting the public's appetite for electrified cars.

A123 Hymotion's other approved plug-in conversion facilities include Seattle's Green Car Company and four Toyota dealerships in Boston, Los Angeles, Minneapolis, and Washington, D.C.

The kit maker, owned by battery company A123 Systems, which is filing to go public, said it has begun shipping consumer-ready systems, with the majority of orders to ship by the end of this year.

Utility Pacific Gas & Electric and Google are among the high-profile Hymotion testers. Employees at Google's Mountain View, Calif., campus found the plug-ins achieve an average 93.5 miles per gallon. (The search giant's RechargeIT initiative gave $2.75 million to electric-car start-up Aptera and battery maker ActaCell in July.)

However, the safety of plug-in hybrids came into question in June when a Prius converted by Hybrids Plus of Boulder, Col., burst into flames. That setup used battery cells from A123 Systems, but not the same kind found in its plug-in conversion kits. A third-party investigation blamed improper assembly for the fire.

A123 Hymotion insists that its crash-tested product will disconnect a battery pack automatically in the case of an impact, and meets federal safety and emissions standards. Both that company and Plug-In Supply offer 3-year warranties and assure consumers that a conversion won't void a Toyota warranty, unless plug-in alterations directly cause a failure.

Protheroe suggested that the added plug-in batteries allow the original Prius batteries to rest, perhaps extending their life.

Kim Adelman, who aims to sell plug-in installations by November, considers his use of nickel metal hydride batteries - the same brew used in the Prius - an advantage over systems with high-density lithium-ion batteries, which can be unstable if punctured in a crash.

"Safety is No. 1, of course," he said. "No. 2 is making emissions better and using less gas."

Adelman's company, Plug-In Conversions near San Diego, has 20 potential Prius owners waiting to pay between $9,750 and $19,750 to enable an electric-only range of between 8 to 30 miles.

Other passenger car conversion companies in California that appear to be in early stages of development include OEMTek and EnergyCS.

More-expensive, all-electric makeovers are also available. For $55,000, AC Propulsion of San Dimas, Calif., will convert a Scion xB to run up to 95 miles per hour, lasting 150 miles per charge.

Some consider converting gas-guzzling road hogs more important than focusing on compact or hybrid cars that are already relatively green. Former Intel chairman Andy Grove called in July for electrifying 10 million large vehicles in the United States in the next four years.

In that spirit, engineers led by professor Eli Emadi of Chicago's Illinois Institute of Technology gutted a Ford F-150 truck to install a plug-in hybrid system meant to increase fuel economy from 16 to 41 miles per gallon.

"We are targeting pickups, SUVs and vans - that's the really big market," said Emadi. "If you start with a gas guzzler that gets 12 miles per gallon or a school bus that gets 7 miles per gallon and increase that, the impact is far bigger."

His team "hybridized" the Ford's conventional drive train and then turned it into a plug-in hybrid. Nickel metal hydride batteries take up to 5 hours to charge and enable the truck to run without gasoline for 15 miles. That adds about 15 percent of the vehicle's weight to the body but also improves its torque, he said.

Emadi has spun off the technology into Hybrid Electric Vehicle Technologies, and plans to produce up to 50 more conversions at $60,000 each by 2009. He said that scaling up the technology, with a hoped-for infusion of $5 million in venture capital, should sharply cause a price drop by 2010.

And Andy Frank, known as the inventor of the plug-in hybrid, has spun-off his technology by licensing it to Efficient Drivetrains, a Palo Alto conversion company.

Evangelists of electrified, hybrid cars argue that although costs need to come down to accelerate adoption, other technical hurdles are less daunting.

Improved battery technologies are key to expanding the electric driving range, but today's storage capacity is good enough for the majority of trips, some claim.

Those who doubt the viability of electrified cars point to the lack of a public charging infrastructure, which start-ups Better Place and Coulomb are trying to address. Yet, advocates of plug-ins say the infrastructure to charge the cars already exists in the form of 110-volt outlets found in nearly any building. And some hope that if drivers plug in only at night, tapping into unused energy from the electrical grid, then adding new power plants will be unnecessary.

Plug-in hybrids have entered the national political spotlight, as politicians praise the potential for lessening the nation's dependence on foreign oil. Those behind electrified-car start-ups hope that government support will arrive with the next administration in Washington, D.C.

Democratic presidential candidate Barack Obama in August proposed offering a $7,000 tax credit to Americans who buy plug-in hybrids as well as loans of $4 billion to makers of efficient cars. Republican opponent John McCain called in June for a $5,000 consumer tax credit for buying zero-emissions cars and a $300 million prize for a battery maker to advance electric car technology.

"No matter how it turns out I think we've had an effect on automakers," said Adelman of Plug-In Conversions. "The feeling is just like we had with personal computers in the 1970s. We knew it was gonna change the world, and in this case it has to."

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Canadian gold mine cleans up its act with electricity

Electric mining equipment enables zero-emission, diesel-free operations at Goldcorp's Borden mine, using Sandvik battery-electric drills and LHD trucks to cut ventilation costs, noise, and maintenance while improving underground air quality.

 

Key Points

Battery-powered mining equipment replaces diesel, cutting emissions and ventilation costs in underground operations.

✅ Cuts diesel use, heat load, and noise in underground headings.

✅ Reduces ventilation infrastructure and operating expense.

✅ Improves air quality, worker health, and equipment uptime.

 

Mining operations get a lot of flack for creating environmental problems around the world. Yet they provide much of the basic material that keeps the global economy humming. Some mining companies are drilling down in their efforts to clean up their acts, exploring solutions such as recovering mine heat for power to reduce environmental impact.

As the world’s fourth-largest gold mining company Goldcorp has received its share of criticism about the impact it has on the environment.

In 2016, the Canadian company decided to do something about it. It partnered with mining-equipment company Sandvik and began to convert one of its mines into an all-electric operation, a process that is expected to take until 2021.

The efforts to build an all-electric mine began with the Sandvik DD422iE in Goldcorp’s Borden mine in Ontario, Canada.

Goldcorp's Borden mine in Borden, Ontario, CanadaGoldcorp's Borden mine in Borden, Ontario, Canada

The machine weighs 60,000 pounds and runs non-stop on a giant cord. It has a 75-kwh sodium nickel chloride battery to buffer power demands, a crucial consideration as power-hungry Bitcoin facilities can trigger curtailments during heat waves, and to move the drill from one part of the mine to another.

This electric rock-chewing machine removes the need for the immense ventilation systems needed to clean the emissions that diesel engines normally spew beneath the surface in a conventional mining operation, though the overall footprint depends on electricity sources, as regions with Clean B.C. power imports illustrate in practice.

These electric devices improve air quality, dramatically reduce noise pollution, and remove costly maintenance of internal combustion engines, Goldcorp says.

More importantly, when these electric boring machines are used across the board, it will eliminate the negative health effects those diesel drills have on miners.

“It would be a challenge to go back,” says big drill operator Adam Ladouceur.

Mining with electric equipment also removes second- or third-highest expenditure in mining, the diesel fuel used to power the drills, said Goldcorp spokesman Pierre Noel, even as industries pursue dedicated energy deals like Bitcoin mining in Medicine Hat to manage power costs. (The biggest expense is the cost of labor.)

Electric load, haul, dump machine at Goldcorp Borden mine in OntarioElectric load, haul, dump machine at Goldcorp Borden mine in Ontario

Aside from initial cost, the electric Borden mine will save approximately $7 million ($9 million Canadian) annually just on diesel, propane and electricity.

Along with various sizes of electric drills and excavating tools, Goldcorp has started using electric powered LHD (load, haul, dump) trucks to crush and remove the ore it extracts, and Sandvik is working to increase the charging speed for battery packs in the 40-ton electric trucks which transport the ore out of the mines, while utilities add capacity with new BC generating stations coming online.

 

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Time running out for Ontario to formally request Pickering nuclear power station extension

Pickering Nuclear Plant Extension faces CNSC approval as Ontario Power Generation pursues license renewal before the June 30, 2023 deadline, amid a 2025 capacity crunch and grid reliability risks from decommissioning and overlapping nuclear outages.

 

Key Points

A plan to run Pickering past 2024 to Sept 2026, pending CNSC license renewal to address Ontario's 2025 capacity gap.

✅ CNSC approval needed for operation beyond Dec 31, 2024

✅ OPG aims to file by June 30, 2023 deadline

✅ Extension targets grid reliability through 2026

 

Ontario’s electricity generator has yet to file an official application to extend the life of the Pickering nuclear power plant, more than eight months after the Ford government announced a plan to continue operating Pickering for longer.

As the province faces an electricity shortfall in 2025 and beyond, the Ford government scrambled to prolong the Pickering power plant until September 2026, in order to guarantee a steady supply of power as the province experiences a rise in demand and shutdowns at other nuclear power plants.

The life extension may come down to the wire, however, as the Canadian Nuclear Safety Commission (CNSC), the federal regulator tasked with approving or denying the extension, tells Global News the province has yet to file key paperwork.

The information is required for the application, including materials related to the proposed Pickering B refurbishment, and the government now has a month before the deadline runs out.

“The Commission requires that Ontario Power Generation submit specific information by June 30, 2023, if it intends to operate the Pickering Nuclear Generating Station beyond December 31, 2024,” the CNSC told Global News in a statement. “The Commission Registry has not yet received an application from Ontario Power Generation.”

If Ontario doesn’t receive the green light, the power plant which currently is responsible for 14 per cent of the province’s energy grid will be decommissioned in 2025, leaving the province with a significant electricity supply gap if replacement sources are not secured.

For its part, the Ford government doesn’t seem concerned about the impending timeline, even though the station was slated to close as planned, suggesting the Crown corporation responsible for the application will get it in on time.

“OPG is on track to submit their application before the end of June and has already started to submit supporting materials as part of the regulatory process toward clean power goals,” a spokesperson for energy minister Todd Smith said.

 

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A tidal project in Scottish waters just generated enough electricity to power nearly 4,000 homes

MeyGen Tidal Stream Project delivers record 13.8 GWh to Scotland's grid, showcasing renewable ocean energy. Simec Atlantis Energy's 6 MW array of tidal turbines advances EU power goals and plans an ocean-powered data center.

 

Key Points

A Scottish tidal energy array exporting record power, using four 1.5 MW turbines and driving renewable innovation.

✅ Delivered 13.8 GWh to the grid in 2019, a project record.

✅ Four 1.5 MW turbines in Phase 1A, 6 MW installed.

✅ Plans include an ocean-powered data center near site.

 

A tidal power project in waters off the north coast of Scotland, where Scotland’s wind farms also deliver significant output, sent more than 13.8 gigawatt hours (GWh) of electricity to the grid last year, according to an operational update issued Monday. This figure – a record – almost doubled the previous high of 7.4 GWh in 2018.

In total, the MeyGen tidal stream array has now exported more than 25.5 GWh of electricity to the grid since the start of 2017, according to owners Simec Atlantis Energy. Phase 1A of the project is made up of four 1.5 megawatt (MW) turbines.

The 13.8 GWh of electricity exported in 2019 equates to the average yearly electricity consumption of roughly 3,800 “typical” homes in the U.K., where wind power records have been set recently, according to the company, with revenue generation amounting to £3.9 million ($5.09 million).

Onshore maintenance is now set to be carried out on the AR1500 turbine used by the scheme, with Atlantis aiming to redeploy the technology in spring.

In addition to the production of electricity, Atlantis is also planning to develop an “ocean-powered data centre” near the MeyGen project.

The European Commission has described “ocean energy” as being both abundant and renewable, and milestones like the biggest offshore windfarm starting U.K. supply underscore wider momentum, too. It’s estimated that ocean energy could potentially contribute roughly 10% of the European Union’s power demand by the year 2050, according to the Commission.

While tidal power has been around for decades — EDF’s 240 MW La Rance Tidal Power Plant in France was built as far back as 1966, and the country’s first offshore wind turbine has begun producing electricity — recent years have seen a number of new projects take shape.

In December last year, Scottish tidal energy business Nova Innovation was issued with a permit to develop a project in Nova Scotia, Canada, aiming to harness the Bay of Fundy tides in the region further.

In an announcement at the time, the firm said a total of 15 tidal stream turbines would be installed by the year 2023. The project, according to the firm, will produce enough electricity to power 600 homes, as companies like Sustainable Marine begin delivering tidal energy to the Nova Scotia grid.

Elsewhere, a business called Orbital Marine Power is developing what it describes as the world’s most powerful tidal turbine, with grid-supplied output already demonstrated.

The company says the turbine will have a swept area of more than 600 square meters and be able to generate “over 2 MW from tidal stream resources.” It will use a 72-meter-long “floating superstructure” to support two 1 MW turbines.

 

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The UK’s energy plan is all very well but it ignores the forecast rise in global sea-levels

UK Marine Energy and Climate Resilience can counter sea level rise and storm surge with tidal power, subsea turbines, heat pumps, and flood barriers, delivering renewable electricity, stability, and coastal protection for the United Kingdom.

 

Key Points

Integrated use of tidal power, barriers, and heat pumps to curb sea level rise, manage storms, and green the UK grid.

✅ Tidal bridges and subsea turbines enhance baseload renewables

✅ Integrated barriers cut storm surge and river flood risk

✅ Heat pumps and marine heat networks decarbonize coastal cities

 

IN concentrating on electrically driven cars, the UK’s new ten-point energy plans, and recent UK net zero policies, ignores the elephant in the room.

It fails to address the forecast six-metre sea level rise from global warming rapidly melting the Greenland ice sheet.

Rising sea levels and storm surge, combined with increasingly heavy rainfall swelling our rivers, threaten not only hundreds of coastal communities but also much unprotected strategic infrastructure, including electricity systems that need greater resilience.

New nuclear power stations proposed in this United Kingdom plan would produce radioactive waste requiring thousands of years to safely decay.

This is hardly the solution for the Green Energy future, or the broader global energy transition, that our overlooked marine energy resource could provide.

Sea defences and barrier design, built and integrated with subsea turbines and heat pumps, can deliver marine-driven heat and power to offset the costs, not only of new Thames Barriers, but also future Severn, Forth and other barrages, while reducing reliance on high-GWP gases such as SF6 in switchgear across the grid.

At the Pentland Firth, existing marine turbine power could be enhanced by turbines deployed from new tidal bridges to provide much of UK’s electricity needs, as nations chart an electricity future that replaces fossil fuels, from its estimated 60 gigawatt capability.

Energy from Bluemull Sound could likewise be harvested and exported or used to enhance development around UK’s new space station at Unst.

The 2021 Climate Change Summit gives Glasgow the platform to secure Scotland’s place in a true green, marine energy future and help build an electric planet for the long term.

We must not waste this opportunity.

THERE is no vaccine for climate change.

It is, of course, wonderful news that such progress is being made in the development of Covid-19 vaccines but there is a risk that, no matter how serious the Covid crisis is, it is distracting attention, political will and resources from the climate crisis, a much longer term and more devastating catastrophe.

They are intertwined. As climate and ecological systems change, vectors and pathogens migrate and disease spreads.

What lessons can be learned from one to apply to the other?

Prevention is better than cure. We need to urgently address the climate crisis, charting a path to net zero electricity by the middle of the century, to help prevent future pandemics.

We are only as safe as the most vulnerable. Covid immunisation will protect the most vulnerable; to protect against the effects of climate change we need to look far more deeply. Global challenges require systemic change.

Neither Covid or climate change respect national borders and, for both, we need to value and trust science and the scientific experts and separate them from political posturing.

 

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Setbacks at Hinkley Point C Challenge UK's Energy Blueprint

Hinkley Point C delays highlight EDF cost overruns, energy security risks, and wholesale power prices, complicating UK net zero plans, Sizewell C financing, and small modular reactor adoption across the grid.

 

Key Points

Delays at EDF's 3.2GW Hinkley Point C push operations to 2031, lift costs to £46bn, and risk pricier UK electricity.

✅ First unit may slip to 2031; second unit date unclear.

✅ LSEG sees 6% wholesale price impact in 2029-2032.

✅ Sizewell C replicates design; SMR contracts expected soon.

 

Vincent de Rivaz, former CEO of EDF, confidently announced in 2016 the commencement of the UK's first nuclear power station since the 1990s, Hinkley Point C. However, despite milestones such as the reactor roof installation, recent developments have belied this optimism. The French state-owned utility EDF recently disclosed further delays and cost overruns for the 3.2 gigawatt plant in Somerset.

These complications at Hinkley Point C, which is expected to power 6 million homes, have sparked new concerns about the UK's energy strategy and its ambition to decarbonize the grid by 2050.

The UK government's plan to achieve net zero by 2050 includes a significant role for nuclear energy, reflecting analyses that net-zero may not be possible without nuclear and aiming to increase capacity from the current 5.88GW to 24GW by mid-century.

Simon Virley, head of energy at KPMG in the UK, stressed the importance of nuclear energy in transitioning to a net zero power system, echoing industry calls for multiple new stations to meet climate goals. He pointed out that failing to build the necessary capacity could lead to increased reliance on gas.

Hinkley Point C is envisioned as the pioneer in a new wave of nuclear plants intended to augment and replace Britain's existing nuclear fleet, jointly managed by EDF and Centrica. Nuclear power contributed about 14 percent of the UK's electricity in 2022, even as Europe is losing nuclear power across the continent. However, with the planned closure of four out of five plants by March 2028 and rising electricity demand, there is concern about potential power price increases.

Rob Gross, director of the UK Energy Research Centre, emphasized the link between energy security and affordability, highlighting the risk of high electricity prices if reliance on expensive gas increases.

The first 1.6GW reactor at Hinkley Point C, initially set for operation in 2027, may now face delays until 2031, even after first reactor installation milestones were reported. The in-service date for the second unit remains uncertain, with project costs possibly reaching £46bn.

LSEG analysts predict that these delays could increase wholesale power prices by up to 6 percent between 2029 and 2032, assuming the second unit becomes operational in 2033.

Martin Young, an analyst at Investec, warned of the price implications of removing a large power station from the supply side.

In response to these delays, EDF is exploring the extension of its four oldest plants. Jerry Haller, EDF’s former decommissioning director, had previously expressed skepticism about extending the life of the advanced gas-cooled reactor fleet, but EDF has since indicated more positive inspection results. The company had already decided to keep the Heysham 1 and Hartlepool plants operational until at least 2026.

Nevertheless, the issues at Hinkley Point C raise doubts about the UK's ability to meet its 2050 nuclear build target of 24GW.

Previous delays at Hinkley were attributed to the COVID-19 pandemic, but EDF now cites engineering problems, similar to those experienced at other European power stations using the same technology.

The next major UK nuclear project, Sizewell C in Suffolk, will replicate Hinkley Point C's design, aligning with the UK's green industrial revolution agenda. EDF and the UK government are currently seeking external investment for the £20bn project.

Compared with Hinkley Point C, Sizewell C's financing model involves exposing billpayers to some risk of cost overruns. This, coupled with EDF's track record, could affect investor confidence.

Additionally, the UK government is supporting the development of small modular reactors, while China's nuclear program continues on a steady track, with contracts expected to be awarded later this year.

 

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Some in Tennessee could be without power for weeks after strong storms hit

Middle Tennessee Power Outages disrupt 100,000+ customers as severe thunderstorms, straight-line winds, downed trees, and debris challenge Nashville crews, slow restoration amid COVID-19, and threaten more hail, flash flooding, and damaging gusts.

 

Key Points

Blackouts across Nashville after severe storms and winds, leaving customers without power and facing restoration delays.

✅ Straight-line winds 60-80 mph toppled trees and power lines

✅ 130,000+ customers impacted; some outages may last 1-2 weeks

✅ Restoration slowed by debris, COVID-19 protocols, and new storms

 

Some middle Tennessee residents could be without electricity for up to two weeks after strong thunderstorms swept through the area Sunday, knocking out power for more than 100,000 customers, a scale comparable to Los Angeles outages after a station fire.

"Straight line winds as high as 60-80 miles per hour knocked down trees, power lines and power polls, interrupting power to 130,000 of our 400,000+ customers," Nashville Electric said in a statement Monday. The utility said the outage was one of the largest on record, though Carolina power outages recently left a quarter-million without power as well.

"Restoration times will depend on individual circumstances. In some cases, power could be out for a week or two" as challenges related to coronavirus and the need for utilities adapt to climate change complicated crews' responses and more storms were expected, the statement said. "This is unfortunate timing on the heels of a tornado and as we deal with battling COVID-19."

Metropolitan Nashville and Davidson County Mayor John Cooper also noted that the power outages were especially inconvenient, a challenge similar to Hong Kong families without power during Typhoon Mangkhut, as people were largely staying home to slow the spread of coronavirus. He also pointed out that the storms came on the two month anniversary of the Nashville tornado that left at least two dozen people dead.

"Crews are working diligently to restore power and clear any debris in neighborhoods," Cooper said.

He said that no fatalities were reported in the county but sent condolences to Spring Hill, whose police department reported that firefighter Mitchell Earwood died during the storm due to "a tragic weather-related incident" while at his home and off duty. He had served with the fire department for 10 years.

The Metro Nashville Department of Public Works said it received reports of more than 80 downed trees in Davidson County.

Officials also warn that copper theft can be deadly when electrical infrastructure is damaged after storms.

The National Weather Service Nashville said a 72 mph wind gust was measured at Nashville International Airport — the fifth fastest on record.

The weather service warned that strong storms with winds of up to 75 mph, large hail, record-long lightning bolt potential seen in the U.S., and isolated flash flooding could hit middle Tennessee again Monday afternoon and night.

"Treat Severe Thunderstorm Warnings the same way you would Tornado Warnings and review storm safety tips before you JUST TAKE SHELTER," the NWS instructs. "70 mph is 70 mph whether it's spinning around in a circle or blowing in a straight line."

 

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