Glacial Lake Missoula

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Template:Short description Template:Use American English Template:Use mdy dates Template:Infobox protected area Template:Infobox body of water

Sediment deposited by the lake with a hammer for scale.

Lake Missoula was a prehistoric proglacial lake in western Montana that existed periodically at the end of the last ice age between 15,000 and 13,000 years ago. The lake measured about Template:Convert and contained about Template:Convert of water, half the volume of Lake Michigan.<ref>Template:Cite book</ref>

The Glacial Lake Missoula National Natural Landmark is located about 110 kilometers (68 mi) northwest of Missoula, Montana, at the north end of the Camas Prairie Valley, just east of Montana Highway 382 and Macfarlane Ranch. It was designated as a National Natural Landmark in 1966 because it contains the great ripples (often measuring Template:Convert high and Template:Convert long) that served as a strong supporting element for J Harlen Bretz's contention that Washington State's Channeled Scablands were formed by repeated cataclysmic floods over only about 2,000 years, rather than through the millions of years of erosion that had been previously assumed.<ref>Template:Cite book</ref><ref>Template:Cite web</ref>

The lake was the result of an ice dam on the Clark Fork caused by the southern encroachment of a finger of the Cordilleran ice sheet into the Idaho Panhandle (at the present-day location of Clark Fork, Idaho, at the east end of Lake Pend Oreille). The height of the ice dam typically approached Template:Convert, flooding the valleys of western Montana approximately Template:Convert eastward. It was the largest ice-dammed lake known to have occurred.<ref name = "Alt">Template:Cite book</ref>

The periodic rupturing of the ice dam resulted in the Missoula Floods – cataclysmic floods that swept across eastern Washington and down the Columbia River Gorge approximately 40 times during a 2,000 year period. The cumulative effect of the floods was to excavate Template:Convert of loess, sediment and basalt from the channeled scablands of eastern Washington and to transport it downstream.<ref name = "Allen">Template:Cite book</ref> These floods are noteworthy for producing canyons and other large geologic features through cataclysms rather than through more typical gradual processes.

In addition, Middle and Early Pleistocene Missoula flood deposits have been documented to comprise parts of the glaciofluvial deposits, informally known as the Hanford formation that are found in parts of the Othello Channels, Columbia River Gorge, Channeled Scabland, Quincy Basin, Pasco Basin, and the Walla Walla Valley. The age of these deposits is demonstrated by the presence of multiple interglacial calcretes interbedded in these glaciofluvial deposits, sequences of sediments with normal and reverse magnetostratigraphy, optically stimulated luminescence dating, and unconformity truncated clastic dikes. Based upon these criteria, Quaternary geologists estimated that the oldest of the Pleistocene Missoula floods happened before 1.5 million years ago. The older Pleistocene glaciofluvial deposits within the Hanford formation are fragmentary in nature because they have been repeatedly eroded and largely removed by subsequent Missoula floods. Because of the fragmentary nature of older glaciofluvial deposits, the exact number of older Missoula floods, which are known as Ancient Cataclysmic Floods, that occurred during the Pleistocene cannot be estimated with any confidence. Although Lake Missoula likely was the source of many of the Ancient Cataclysmic Floods, the fragmentary nature of the older deposits within the Hanford formation makes precise determination of the precise origin of the floods that deposited them very difficult.<ref name="Medley2012a">Medley, E. (2012) Ancient Cataclysmic Floods in the Pacific Northwest: Ancestors to the Missoula Floods. Unpublished Masters thesis, Portland State University, Portland, Oregon. 174 pp.</ref><ref name="Spencerothers2012a">Spencer, P. K., and M. A. Jaffee (2002) Pre-Late Wisconsinan Glacial Outburst Floods in Southeastern Washington—The Indirect Record. Washington Geology. vol. 30, no. 1/2, pp. 9–16.</ref>

Geology

Ice dam on the Clark Fork River

The Cordilleran ice sheet originating in British Columbia expanded out of the mountains and southward. A tongue of ice pushed down the Purcell Valley or Purcell Trench, reaching south beyond Lake Pend Oreille. This Purcell Lobe blocked the natural outlet of the Clark Fork River. Including its tributaries, Clark Fork represented western Montana's most important river system. The ice mass that effectively dammed Clark Fork was about Template:Convert deep and extended for at least 10 miles; some say it extended as much as 30 miles.<ref name=Floods>Glacial Lake Missoula; The glacial lake, at its maximum height and extent, may have contained 500 – 600 cubic miles of water; 9/18/2019; hugefloods.com/LakeMissoula.html</ref> The ice dam reached east up the Clark's Fork to Cabinet, Montana, and southward around the mountain to Bayview, Idaho on the south tip of Lake Pend Oreille in Farragut State Park. Here, the ice sheet stood over Template:Convert and Template:Convert south of Lake Missoula.<ref name=Deluge>Our Cataclysmic Floodscape, A Guide to the Incredible Ice Age Floods in Northern Idaho; Ice Age Flood Institute, Oregon-Washington-Idaho-Montana; IAFI.org</ref>

Lake levels

The Clark Fork's drainage is a network of valleys among high mountain ranges. Lake Missoula formed through this region of western Montana. It is named for the city of Missoula in the upper reaches of the Clark Fork watershed. The mountains surrounding the city show the strandlines from the lake nearly 20,000 years ago.<ref name=Floods/> At its largest extent, Lake Missoula's depth exceeded Template:Convert and may have held Template:Convert of water, as much as Lake Erie and Lake Ontario combined. The surface area covered Template:Convert and the shoreline attained an elevation of Template:Convert.

The lake spread through the Clark Fork River basin, reaching east of Missoula, Template:Convert to Gold Creek; northeast up the Blackfoot River Template:Convert to Lake Alva; Template:Convert and east of Ovando Template:Convert. Two large lobes formed to the south and north. To the south the Bitterroot Valley filled as far as Sula, Montana, Template:Convert. To the north the Flathead River basin became an expansive body of water, creating an island of Red Sleep Mountain (in the CSKT Bison Range) and extending north Template:Convert to Polson at the basin of the Flathead Ice Lobe and Template:Convert up the Little Bitterroot River to Niarada some Template:Convert above the Flathead Rivers mouth at the Clarks Fork.<ref name=Floods/>

The water was deep (average – Template:Convert): maximum – Template:Convert), dark and murky with sediment. Fish fossils have not been found in deposits of Lake Missoula. Possibly, glacial sediment, rock flour, suspended in the turbid lake water which created an hostile aquatic habitat for fish. In addition, fossils of large mammals (megafauna), i.e.; mammoths, mastodons and bison which may have roamed nearby, not been found. Similarly, neither the remains or artifacts of contemporaneous humans have been found associated with Lake Missoula.<ref name=Floods/> The Clark Fork River flows into Lake Pend Oreille at Template:Convert.<ref name=Floods/>

Basins of Lake Missoula

Reaches of Glacial Lake Missoula
Reach<ref name=Floods/> Riverway<ref name=Floods/> Length Max depth<ref>My Elevation, RDH Software, Version 11.52; 2014–2019 by RDH Software</ref> Outlet<ref name=Floods/> Features
Clark Fork Canyon Clark Fork River Template:Convert from the ice dam at Lake Pend Oreille to Ninemile Template:Convert Blocked at Lake Pend Orielle in Idaho Eddy Narrows, St. Regis Notch, Ninemile Rhythmites
Flathead River Basin Flathead River Template:Convert from the Clark Fork at Paradise to Polson, where the glacier stood Template:Convert at Perma Joins the Clark Fork River at Paradise Ninepipes Pingo Scars, Paradise Center, CSKT Bison Range, Sloan Bridge Sediments
Little Bitterroot Valley Little Bitterroot River Template:Convert from the Flathead River to the glacial front near Niarada Template:Convert at Camas Prairie Joins the Clark Fork River near Ninepipe National Wildlife Refuge at Sloan Bridge and crossed the divide between the Clark Fork and the Little Bitterroot Rivers at Rainbow Lake Gulch Fill, Rainbow "Dog" Lake, Markle Pass Kolk, Camas Prairie Ripples
Missoula Basin Clark Fork River Template:Convert from Ninemile to Lolo Template:Convert at Ninemile Enters the lower Clark Fork Canyon Reach at Ninemile Glacial erratic and Strandlines
Bitterroot Valley Bitterroot River Template:Convert from Lolo in the Missoula Basin to near Sula Template:Convert at Lolo Enters Missoula Basin at Lolo Features
Blackfoot River Valley Blackfoot River Template:Convert from Bonner to Rainy Lake on the Clearwater River and Template:Convert up the Blackfoot River to near Helmsville Template:Convert at Potomac Joins the Clark Fork River Features
Upper Clark Fork Clark Fork River Template:Convert from the Bonner Flats to near Gold Creek on Interstate 90 Template:Convert at Bonner Enters the Missoula Basin of the Clark Fork River west of Bonner Gold Creek High Water Monument

Clark Fork Canyon

This reach follows Montana Route 200 up the Clark Fork River canyon, Template:Convert to Paradise, then follows the Clark Fork, then Template:Convert through the Paradise-St. Regis Canyon along Montana Highway 135. At St. Regis, the canyon opens out and continues to the east Template:Convert with the river paralleled by Interstate 90 to as far as Ninemile, where it opens out into the Missoula basin. A western branch of this basin runs up the St. Regis River another Template:Convert along with Interstate 90 to near Riverbend.

  • Lookout Pass, Template:Convert asl along Interstate 90
  • Thompson Falls – Located in the northern or western reach of the basin, the modern river passes through a layer of harder rock, forming a cascade.
    Nine Mile Rhythmites – Located at the eastern end of the basin, near Nine Mile. A light pink sand and silt deposited on the bottom of the lake. The silt deposits exist where the basin was wide, and when the lake drained, the area was not reached by the fast current of the water moving downstream. Each lay represents a period of still water behind the ice dam. The series reflects each period of still water with the intervening draining of the lake. As with "varves", darker layers are winter deposits, comprising fine particles in quiet water, and the lighter layers are coarser particles from the more active summer currents. Here, the number of layers represent 1,000 years of sediment.<ref name=CataclysmicLake2019>A Guide to the Incredible Ice Age Floods "Where IT Began" – Glacial Lake Missoula, Our Cataclysmic Floodscape; Ice Age Flood Institute, Oregon – Washington – Idaho – Montana; IAFI.org; 9/25/2019</ref>

Flathead Basin

The Flathead basin abutted the south face of the ice sheet. For most of this period, the glacial ice reached south to Polson, covering the entirety of Flathead Lake. The basin drains from the Polson Moraine at the south end of Flathead Lake, south to Ravalli, with a major lobe up the Little Bitterroot River and a minor basin on Camas Creek near Perma.

  • Little Money Creek Gulch Fill – Exit 96, north on US 93 to Ravalli. The coarse materials filled the side gulches on the narrow valley as Lake Missoula drained; eddy currents in tributary gulches deposited debris.<ref name=CataclysmicLake2019/>
  • Rainbow "Dog" Lake – Drains into the Clark Fork near Plains. During the existence of Lake Missoula, it was a drain for the Little Bitterroot basin when the lake level exceeded Template:Convert asl and for the Camas Prairie basin when the lake level exceeded Template:Convert asl. At the maximum depth of Lake Missoula, the valley was a Template:Convert waterway. Rainbow Lake is thought to be a cataract retreat lake, formed by a Template:Convert waterfall. The Clark Fork River dropped Template:Convert near Plains, creating a Template:Convert current through Boyer Creek. A weaker layer of rock beneath a more resistant layer was removed, causing the lip of the falls to retreat backward. Evidence is provided by the debris that lines the valley bottom.<ref name=CataclysmicLake2019/>
  • Camas Prairie Mega ripples – Camas Prairie is a small basin on Camas Creek, north of Perma. At the maximum water levels of the Hwy 382 through the prairie to information sign at mile marker13. Multiple long ridges of sediment, Template:Convert height and Template:Convert apart. Average height between Template:Convert. Formed during the outflow of water during a break in the ice dam.<ref name=CataclysmicLake2019/> The Camas Prairie Basin filled when Lake Missoula reached Template:Convert asl. As the water in the Lake Missoula Basin rose, this basin gained a second outlet through Rainbow Lake at Template:Convert asl; Willis Gulch Template:Convert asl; Markle Pass Template:Convert asl; and Big Gulch Template:Convert asl.
  • Markle Pass Kolks – Montana Highway 382 travels through Markle Pass between Camas Prairie and the Little Bitterroot Valley. The Kolks were carved out of the bedrock by strong underwater vortices created as Lake Missoula quickly drained during the great floods. When the tornado-like currents reached the bottom of the waterway, rocks were pulled out of the bottom surface. This debris can be found downstream towards Camas Prairie and Burgess Lake.<ref name=CataclysmicLake2019/>

Missoula Basin

The basin extends from Missoula, west to Ninemile and up the Ninemile Creek valley. This Template:Convert valley broadens from Template:Convert at Ninemile to Template:Convert at Missoula. The central part of this basin around Missoula is Template:Convert wide east–west and Template:Convert north-south. The basin is bordered by Rattlesnake Ridge on the north and Petty Mountain on the south(west). Features: strandlines along the valleys east flank.

Hamilton Basin

The basin extends from south of Conner to Lolo, Template:Convert to the north. The Bitterroot Mountains form the west shore and the Sapphire Mountains the east.

Blackfoot River Basin

The valleys of Potomac, Greenough, and Ovando-Helmville are linked by the Blackfoot River east of Missoula. A second reach, up the Clearwater River, joins the Blackfoot River at Clearwater. This basin joins the Clark Fork at Bonner. Upper valleys of the Clearwater-Blackfoot River basins run Template:Convert from Seeley Lake, eastward to Browns Lake along Montana Route 83 and Montana Route 200.

Upper Clark Fork

The Clark Fork of the Columbia River has its headwater near Butte, Template:Convert east of Missoula. Lake Missoula reached up the valley, about Template:Convert to the east along I-90 to just east of Gold Creek. Smaller reaches formed along the tributary valleys of Gold Creek, Template:Convert up Flint Creek, forming an Template:Convert basin, up Lower Willow Creek, and Template:Convert up Rock Creek.

See also

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References

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Template:Ice Age Floods Template:Pleistocene Lakes and Seas Template:Missoula, Montana

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