Showing posts with label wwNorthwest. Show all posts
Showing posts with label wwNorthwest. Show all posts

Thursday, April 2, 2026

1910 Little Falls and 1915 100/88mw Long Lake Dams on Spokane River near Long Lake, WA

Little Falls: (HAERSatellite)
Long Lake: (HAERSatellite)

Little Falls Dam


schnabel
"The Spillway Dam is a 59-foot[18m]-high, 597-foot[182m]-long cyclopean concrete gravity overflow spillway dam. Its 37-foot[11.3m]-high and 73-foot[22.3m]-long concrete gated spillway section has two 20-foot[9m]-wide by 24-foot[7.3m]-high Tainter [Parkergates."

The powerhouse takes advantage of a rock outcrop so that it is further downstream from the Spillway Dam. Thus it is at the foot of a rapids and has more head.
Satellite

Street View, Jun 2023

Street View, Jun 2023

Street View, Jun 2023

Facebook Reel

BigBendRailroadHistory, Credit: Clayton photo collection held by the Reardan Memorial Library
"Washington Water Power Co (now Avista) built Little Falls Dam between 1907 and 1910. Every part of the dam was shipped to Reardan and then carted by wagon to Little Falls. This includes the cement, turbines, penstocks, generators, transformers, and wiring. The dam had four turbines which each weighed 750 tons. These were the largest in the world at the time."

"It boasted having the largest turbines in the world, matching the size of the Niagara Falls turbines." [odessarecord]

 HAER WASH,33-WELPI.V,1--8
8. VIEW OF SOUTHEAST ELEVATION OF LITTLE FALLS TIE LINE TOWER NO. 185. LOOKING NORTHWEST. - Little Falls Tie Line Towers, Near Little Dam Falls on Spokane River, Wellpinit, Stevens County, WA

"Significance: The Little Falls Tie Line Towers are significant as components of one of the trans-Mississippian West's earliest steel tower transmission lines. This system distributed electrical power from The Washington Water Power Company's Little Falls Dam (a National Register of Historic Places property, 12/15/88) to the Spokane vicinity of eastern Washington, beginning in the early twentieth century. Its construction pioneered the use of steel towers for electrical transmission by utilizing modular units adapted from existing technologies of the U.S. windmill industry. In terms of engineering, the towers are unique as examples of the evolution in long distance transmission lines from wooden poles to metal structures, which facilitated regional hydroelectric development and resulted in wide-scale distribution of electrical power at affordable rates to urban Spokane and its outlying rural geographical region." [HAER_data]

These towers are a significant advance over the towers used in the Chicagoland area in 1907, including the voltage.
20140820 0236 via Dennis DeBruler

Long Lake Dam


HAER WASH,33-FORD.V,4--1
1. Contextual view of four operating houses, control gates, penstock and power plant, looking east of the spillway dam - Long Lake Hydroelectric Plant, Spanning Spokane River, Ford, Stevens County, WA

"Significance: The Long Lake hydroelectric facility is significant as one of the earliest and, for many years, largest hydroelectric generating facilities in The Washington Water Power Company's electrical power generating network. It is the largest hydroelectric facility on the Spokane River. Its construction played a vital role in facilitating the urban, industrial, and agricultural development of eastern Washington and northern Idaho. The Long Lake Dam possesses engineering significance as a reflection of advanced hydroelectric technology of the early twentieth century. It is architecturally important for the imposing Romanesque Revival style of its power house. The Long Lake Hydroelectric Plant and its setting have remained largely unaltered since original construction of the facility in 1915. The historic property was nominated to the National Register of Historic Places in 1988. Constituent elements include the spillway dam, control dam (intake), cut-off (arch dam), and the four brick operating houses situated on top of the spillway dam." [HAER_data]
lll
“Spokane -- Washington Water Power Company (#04),” Spokane Public Library, accessed April 2, 2026, https://lange.spokanelibrary.org/items/show/2005.
"WWP's Long Lake Dam is still an impressive structure more than 75 years after its construction. The project which would have spillways 170 feet [52m] high- the highest in the world at the time- and the largest turbines then in operation, was a mammoth undertaking. To ship the 100,000 tons of materials required, a railroad spur was run 19 miles from the Great Northern Railroad main line at Springfield to the river, where a bridge - with a 172-foot span- was constructed to cross the river to the construction site."


RenewableEnergyWorld
"More than 100 years ago, the 88 MW Long Lake hydro plant was completed on the Spokane River in Washington State, U.S. The plant, owned by Avista, was built to serve rural communities and provide power for mining operations. The dam stands 213 feet [65m] high and is located where the river makes a horseshoe bend and passes through a canyon with tall granite walls. When it was built, it was the world’s highest spillway dam with the largest turbines then in use. Because of its historic significance, the property was nominated to the National Register of Historic Places in 1988."
"Beginning in 2016, Avista, working with the Department of Ecology, Spokane Tribe, and many other stakeholders, began examining ways of improving river conditions at the dam for the benefit of the fish living downstream. Water testing below the dam showed elevated levels of dissolved gases in the river during times the dam spills a lot of water. Supersaturation of dissolved gas can cause bubble trauma in fish, resulting in injury or mortality. Production of total dissolved gas is a complex process but is affected by the amount of air entrained in the spillway and during plunging of spillway flows.
"Avista installed deflectors on the lower face of Long Lake Dam to make the water skim instead of plunge at the dam’s base, and at the same time the depth of the dam’s plunge pool was reduced and rock at a nearby outcropping removed so it would not obstruct the flow of the river. Together, these changes are lowering dissolved gas levels in the water and keep the fish healthy.
"In January 2022, Avista contracted work to rehabilitate and modernize the four generator units at Long Lake, as they were installed in the late 1970s and have a 40-year design life. The project scope includes the complete renewal and supply of the stators, poles, fans and spider/rim designs. The main objective of the refurbishment is to maintain the overall plant equipment reliability for decades to come. When the refurbishment is complete, the facility will have an installed capacity exceeding 100 MW. The first modernized unit is scheduled to go into operation at the end of 2024 and the last one in 2029."

iwac

Note the concrete pump at the toe of the dam.
mcmillen
"McMillen’s team designed and built a solution to reduce excess total dissolved gases (TDG) during overflow spill events at Long Lake Dam. The result is a reduction in fish mortality and ongoing environmental benefits to sensitive riparian and aquatic habitats in the Spokane River."

In 2016, the $11m project "installed deflectors on the lower face of the dam to make the water skim instead of plunge at the dam’s base. They also reduced the depth of the dam’s plunge pool and removed rock at a nearby outcropping so it would not obstruct the flow of the river. Together, these changes should lower dissolved gas levels in the water and keep the fish healthy and happy." [myavista]

Facebook Reel

Friday, March 13, 2026

1970 810mw Little Goose Lock, Dam and Fish Ladder on Snake River and Lake Bryan near Starbuck, WA

(Satellite)

USACE
The dam "is 3,200 feet [975m] long with an effective height of about 100 feet [30m]. It is a concrete gravity dam with an earthfill abutment embankment."

USACE_article
This USACE page specifies a length of 2,655' (809m) and a height of 149' (45m).
The powerhouse has six units of 135mw each. The hydraulic capacity is 130kcfs, and the spillway capacity is 850kcfs.
"In 2015, more than 1.9 million tons of cargo passed through the Little Goose lock."

USACE_photo, cropped
"The dam is 2,655 feet long with an effective height of about 100 feet. It is located on the Snake River near Starbuck, Wash., and upstream of Lake West, the reservoir formed by Lower Monumental Dam. It is a concrete gravity dam with an earthfill abutment embankment. It includes a navigation lock and eight-bay spillway 512 feet long, which has eight 50 feet by 60 feet tainter [Parker] gates."


cbr, credit USACE Image File Number: 4414-48
6 units @ 135mw = 810mw

Oliver Lawrence, Oct 2023

The thing that looks like a conveyor belt between the powerhouse and the lock is the fish ladder.
USACE
"The dam, located on the Snake River, is 3,200 feet [953m] long with an effective height of about 100 feet [30m]. It is a concrete gravity dam with an earthfill abutment embankment."

D E W Adventures, Jun 2022

Bryan Hermans, Apr 2026

Bryan Hermans, Apr 2026

Rather than open each radial gate a little bit, they open one gate all the way. I think flow at the far end of the spillway is from an outlet conduit.
Facebook Reel

This view shows part of the fish ladder.
Same Reel

Facebook Reel

A wide open gate creates some impressive water turbulence.
Same Reel

Wednesday, February 11, 2026

1925,1999 Montlake Bridge over Lake Washington Ship Canal in Seattle, WA

(Archived Bridge Hunter; Bridge Hunter; no Historic Bridges; HAERSatellite)

Postcard via BridgeHunter
This 345' (105m) long bridge has a 182' (55.5m) span.

"Significance: This bridge, a Seattle landmark, is one of six bascule bridges based on a design developed by the City of Seattle which was derived from the Chicago bascule bridge type. It is unique because of its trunnion supports, employed to avoid a patent infringement lawsuit by the Strauss Bascule Bridge Company, and its architectural treatment. The bridge has been placed on the National Register of Historic Places." [HAER_data]

Boat View, Mar 2016

Bridges Now and Then posted
"Bascule opening mechanism during construction, Montlake Bridge, Seattle, January 23, 1924." (Photo by Jame P. Lee, Courtesy MOHAI)

HAER WASH,17-SEAT,14--9
9. NORTH TOWER IN OPEN POSITION - Montlake Bridge, Spanning Montlake Cut at State Route 513, Seattle, King County, WA

Saturday, January 24, 2026

1961,1979 2.6gw Chief Joseph Dam and Rufus Woods Lake on Columbia River at Bridgeport, WA

(Satellite)

Street View, May 2023

Columbia Basin Research, Image Source: USACE Digital Visual Library. Image File Number: 4900-19. Photographer: Unknown. Date: 1/1/81.
Units 1-16 were constructed in 1961 with a nameplate capacity of 64mw and an overload capacity of 88.3mw.
Units 17-27 were added in 1979 with a nameplate capacity of 95mw and an overload capacity of 109.3mw.
The hydraulic capacity is 219kcfs.
The spillway is 980' (299m) long with 19 gates.
USACE, Headquarters posted
Siri Nelson: the photo is Chief Joseph Dam.
Dennis DeBruler: Siri Nelson The USACE consistently doesn't identify the photo in their posts. It drives me nuts. Thanks for the identification.

USACE
"Chief Joseph Dam is the second largest hydropower producing dam in the United States."

USACE_hydropower
"Chief Joseph Dam is a 'run of the river' dam which means the lake behind the dam is not able to store large amounts of water. Water coming to Chief Joseph Dam from Grand Coulee Dam must be passed on to Wells Dam at approximately the same rate. With 27 main generators in the powerhouse, it has the hydraulic capacity of 213,000 cubic feet per second (cfs), or 1,593,000 gallons per second.    In the event more water was passed on to Chief Joseph Dam than could be used for power generation, the spillway gates would be opened to pass the excess water. With an average annual flow rate of 108,000 cfs, the Columbia River seldom exceeds the powerplant's capability to pass water. Spilling of water is infrequent at Chief Joseph Dam."

USACE, Seattle District posted
“What the heck am I looking at here?” A lot of hydropower is what. 
It doesn’t look like much to the untrained eye, but this is a "busy" photo of Chief Joseph Dam’s powerhouse. 
Extensive capital improvement work is currently underway at Chief Joseph, near Bridgeport, Wash. on the Columba River.
Seattle District operates and manages USACE’s largest hydropower project and the Nation’s second largest hydropower producing dam. (We like to gloat.)
Zoom in a little and you can see two upper brackets stacked on top of Units 3 & 4, while our General Electric contractors simultaneously work the generator rewind project on Units 7 & 10. 
Also, there's a tiny human for scale near the bottom left, because these units are massive!
Just another day to ensure clean, reliable hydropower makes it to the power grid.

They had to dig a huge power canal on the side of the river in order to get a powerhouse that was long enough to handle the flow of the river. So the spillway is effectively a huge diversion dam.
SpokaneHistorical

Thomas O'Keefe Flickr via hydroreform
hydroreform specifies a capacity of 2.5gw and an annual net output of 11,239gwh.

And this specifies a capacity of 2.6mw. They must be upgrading the units.
USACE, Seattle District 0:25 video
Chief Joseph Dam is the nation’s second leading producer of hydropower, capable of producing over 2,600 megawatts (MW) of electricity – enough to power the Seattle metro area.
Its discharge outflow on the day of this video was approximately 250,000 cubic feet per second (cfs) or 12 MILLION gallons per minute. That’s enough to fill about 170 Olympic sized pools in a minute!
[Or one pool in 2.8 seconds.]

The dam does not have a fish ladder, and the blockage of fish is an issue.

Saturday, December 27, 2025

1945 50mw Alder Dam on Nisqually River near Eatonville, WA

(Satellite)

Note that the spillway is off to the side in the background of this photo.
K Grimm, Sep 2023

Dec 2025 Flood:
Facebook Reel

Google search results [I could not find a link to the page that sourced this photo.]

The dam is 285' (87m) above the riverbed and 330' (101m) above bedrock. It is 1,600' (488m) long. It has two 25mw generators. [mytpu]

EatonvilleToRainier
Construction in 1944.

Russ Kurkov, Jul 2021

The dam does have an outlet works.
angel kaiz, Jun 2019

1939 75mw Claytor Dam on New River near Radford, VA

(Satellite)

Jamie Henley, Apr 2020

Facebook Reel

ClaytorHydro

ClaytorHydro_about
"Construction of the left abutment of Claytor Dam, 1938. Dam workers are standing on the future spillway basin.  Note the extensive form work which would have required gifted carpentry skills.  Imprints of the wooden forms remain today."
"All four turbines are of the Francis type rated at 26,000 horsepower and directly connected to four AC generators rated at 18,750 kW. The total installed capacity of the Project is 75MW. The total hydraulic capacity of the Project turbines is 10,000 cfs."

ClaytorHydro_about