Difference between revisions of "Aqueduct" - New World Encyclopedia

From New World Encyclopedia
(13 intermediate revisions by 5 users not shown)
Line 1: Line 1:
{{otheruses}}{{Claimed}}
+
{{Images OK}}{{Submitted}}{{Approved}}{{Paid}}{{Copyedited}}
[[Image:Pont du gard.jpg|right|thumb|300px|A Roman aqueduct at Pont du Gard, France, was built around 19 BCE. It is one of France's major tourist attractions and a World Heritage Site.]]
+
[[Image:Pont du gard.jpg|right|thumb|300px|A Roman aqueduct at Pont du Gard, France, was built around 19 B.C.E. It is one of France's major tourist attractions and a World Heritage Site.]]
 
 
An '''aqueduct''' is an artificial channel that is constructed to convey water from one location to another. The word is derived from the [[Latin language|Latin]] ''aqua'', "water," and ''ducere'', "to lead." Many aqueducts are raised above the landscape, resembling [[bridge]]s rather than [[river]]s. Structurally, they are similar to viaducts,<ref>A viaduct is a bridge composed of several small spans. It may be constructed over land or water.</ref> which are used for roads or railways.
 
  
 +
An '''aqueduct''' is an artificial channel that is constructed to convey water from one location to another. The word is derived from the [[Latin language|Latin]] ''aqua,'' "water" and ''ducere,'' "to lead." Many aqueducts are raised above the landscape, resembling [[bridge]]s rather than [[river]]s. Structurally, they are similar to viaducts, which is a bridge composed of several small spans constructed over land or water. Viaducts are are used for roads or railways.
 +
{{toc}}
 
Aqueducts have been built to supply water to large cities and to irrigate agricultural lands. If they are sufficiently large, they may also be used for transportation, allowing barges to cross ravines and valleys.
 
Aqueducts have been built to supply water to large cities and to irrigate agricultural lands. If they are sufficiently large, they may also be used for transportation, allowing barges to cross ravines and valleys.
  
Line 9: Line 9:
 
[[Image:Roman aqueduct from Pools of Solomon to Jerusalem.jpg|thumb|right|250px|View from inside a Roman aqueduct, from the Pools of Solomon to Jerusalem.]]
 
[[Image:Roman aqueduct from Pools of Solomon to Jerusalem.jpg|thumb|right|250px|View from inside a Roman aqueduct, from the Pools of Solomon to Jerusalem.]]
  
Although famously associated with the [[ancient Romans]]*, aqueducts were devised centuries earlier in the [[Middle East]], where peoples such as the [[Ancient Egypt|Egyptians]]* built sophisticated irrigation systems. Roman-style aqueducts were used as early as the seventh century BCE, when the [[Assyrian people|Assyrians]]* built a limestone aqueduct 30 feet (10 meters) high and 900 feet (300 m) long to carry water across a valley to their capital city, [[Nineveh]]*. The full length of the aqueduct ran for 50 miles (80 km).
+
Although famously associated with the [[ancient Romans]], aqueducts were devised centuries earlier in the [[Middle East]], where people including the [[Ancient Egypt|Egyptians]] built sophisticated irrigation systems. Roman-style aqueducts were used as early as the seventh century B.C.E., when the [[Assyrian people|Assyrians]] built a limestone aqueduct 30 feet (10 meters) high and 900 feet (300 m) long to carry water across a valley to their capital city, [[Nineveh]]. The full length of the aqueduct ran for 50 miles (80 km).
  
In the New World, the [[Aztec]] capital of [[Tenochtitlán]]* was watered by two aqueducts in the middle of the second millennium.
+
In the New World, the [[Aztec]] capital of [[Tenochtitlán]] was supplied with water by two aqueducts in the middle of the second millennium.
  
 
===Roman aqueducts===
 
===Roman aqueducts===
  
[[Aqueduct (Roman)|Roman aqueducts]]* were built in all parts of the [[Roman Empire]], from Germany to Africa, and especially in the city of Rome itself, where they totaled over 260 miles (416 km). The aqueducts were important for supplying water to large cities across the empire, and they set a high standard of engineering that was not surpassed for more than a thousand years.
+
[[Aqueduct (Roman)|Roman aqueducts]] were built in all parts of the [[Roman Empire]], from Germany to Africa, and especially in the city of Rome itself, where they totaled over 260 miles (416 km). The aqueducts were important for supplying water to large cities across the empire, and they set a high standard of engineering that was not surpassed for more than a thousand years.
  
 
==Modern aqueducts==
 
==Modern aqueducts==
 
[[Image:Arizona cap canal.jpg|left|thumb|250px|The Central Arizona Project Aqueduct, the largest and most expensive aqueduct system ever constructed in the United States.]]
 
[[Image:Arizona cap canal.jpg|left|thumb|250px|The Central Arizona Project Aqueduct, the largest and most expensive aqueduct system ever constructed in the United States.]]
  
Much of the expertise of the [[Roman engineering|Roman engineers]]* was lost in the [[Dark Ages]], and in Europe the construction of aqueducts largely ceased until the [[High Middle Ages]]. An example of an extant small scale aqueduct system built in 1202 by [[Cistercian]]* [[monk]]s is the Spanish [[Real Monasterio de Nuestra Senora de Rueda]]*, whose central heating and waste disposal system relied upon a series of aqueducts originating from a diversion of the [[Ebro River]]*. Through most of the [[Middle Ages]] and even up to the nineteenth century, water was instead usually supplied through the digging of [[water well|well]]*s, though this could cause serious public health problems when local water supplies became contaminated. One notable exception was the [[New River (England)|New River]]*, a manmade [[waterway]]* in [[England]], opened in 1613 to supply [[London]] with fresh drinking water over a distance of 38 miles (62 km). The development of [[canal]]*s provided another spur to aqueduct building.
+
Much of the expertise of the [[Roman engineering|Roman engineers]] was lost in the [[Dark Ages]], and in Europe the construction of aqueducts largely ceased until the [[High Middle Ages]]. An example of an extant small scale aqueduct system built in 1202 by [[Cistercian]] [[monk]]s is the Spanish [[Real Monasterio de Nuestra Senora de Rueda]], whose central heating and waste disposal system relied upon a series of aqueducts originating from a diversion of the [[Ebro River]]. Through most of the [[Middle Ages]] and even up to the nineteenth century, water was instead usually supplied through the digging of [[water well|well]]s, though this could cause serious public health problems when local water supplies became contaminated. One notable exception was the [[New River (England)|New River]], a manmade [[waterway]] in [[England]], opened in 1613 to supply [[London]] with fresh drinking water over a distance of 38 miles (62 km). The development of [[canal]]s provided another spur to aqueduct building.
 
 
The nineteenth century saw aqueduct building resume on a large scale to supply fast-growing cities and water-hungry industries. The development of new materials (such as cast [[iron]]) and new technologies (such as [[steam power]]) enabled significant improvements. For instance, cast iron permitted the construction of larger, more highly pressurised [[inverted siphon]]*s, while steam and electrically powered [[pump]]s enabled a major increase in the quantity and speed of water flow. England led the world in aqueduct construction, with notable examples being built to convey water to [[Birmingham]]*, [[Liverpool]]*, and [[Manchester]]*.
 
  
[[Image:Schoharie crossing2.jpg|thumb|right|250px|Remains of the Schoharie Crossing, an aqueduct that once carried the Erie Canal over the Schoharie Creek near Amsterdam, New York.]]
+
The nineteenth century saw aqueduct building resume on a large scale to supply fast-growing cities and water-hungry industries. The development of new materials (such as cast [[iron]]) and new technologies (such as [[steam power]]) enabled significant improvements. For instance, cast iron permitted the construction of larger, more highly pressurized [[inverted siphon]]s, while steam and electrically powered [[pump]]s enabled a major increase in the quantity and speed of water flow. England led the world in aqueduct construction, with notable examples being built to convey water to [[Birmingham]], [[Liverpool]], and [[Manchester]].
  
In modern times, the largest aqueducts of all have been built in the [[United States]] to supply its biggest cities. The [[Catskill Aqueduct]]* carries water to [[New York]]* over a distance of 120 miles (190 km), but it is [[dwarf]]*ed by aqueducts in the [[far west]]* of the country, most notably the [[Colorado River Aqueduct]]*, which supplies the [[Los Angeles]] area with water from the [[Colorado River]]* nearly 250 miles (400 km) to the east, and the 444 mile (714.5 km) [[California Aqueduct]]* which runs from the Sacramento Delta to Lake Perris.
+
In modern times, the largest aqueducts of all have been built in the [[United States]] to supply its biggest cities. The [[Catskill Aqueduct]] carries water to [[New York]] over a distance of 120 miles (190 km), but it is [[dwarf]]ed by aqueducts in the [[far west]] of the country, most notably the [[Colorado River Aqueduct]], which supplies the [[Los Angeles]] area with water from the [[Colorado River]] nearly 250 miles (400 km) to the east, and the 444 mile (714.5 km) [[California Aqueduct]] which runs from the Sacramento Delta to Lake Perris.
  
 
==Uses of aqueducts==
 
==Uses of aqueducts==
[[Image:Nanzenji aqueduct channel.jpg|right|thumb|250px|Water channel of the Nanzen-ji aqueduct in Kyoto, Japan.]]
 
  
Historically, many agricultural societies have constructed aqueducts to [[irrigation|irrigate]]* crops. [[Archimedes]] invented the [[Archimedes' screw|water screw]]* to raise water for use in irrigation of croplands.
+
Historically, many agricultural societies have constructed aqueducts to [[irrigation|irrigate]] crops. [[Archimedes]] invented the [[Archimedes' screw|water screw]] to raise water for use in irrigation of croplands.
  
Another widespread use for aqueducts is to supply large cities with clean drinking water. Some of the famed Roman aqueducts still supply water to [[Rome]] today. In [[California]]*, three large aqueducts supply water over hundreds of miles to the [[Los Angeles, California|Los Angeles]]* area. Two are from the [[Owens River]]* area, and a third is from the [[Colorado River]]*.
+
Another widespread use for aqueducts is to supply large cities with clean drinking water. Some of the famed Roman aqueducts still supply water to [[Rome]] today. In [[California]], three large aqueducts supply water over hundreds of miles to the [[Los Angeles, California|Los Angeles]] area. Two are from the [[Owens River]] area, and a third is from the [[Colorado River]].
  
In more recent times, aqueducts were used for transportation purposes to allow [[canal]] [[barge]]*s to cross ravines or valleys. During the [[Industrial Revolution]] of the eighteenth century, many aqueducts were constructed as part of the general boom in canal-building.
+
In more recent times, aqueducts were used for transportation purposes to allow [[canal]] [[barge]]s to cross ravines or valleys. During the [[Industrial Revolution]] of the eighteenth century, many aqueducts were constructed as part of the general boom in canal-building.
  
In modern [[civil engineering]] projects, detailed study and analysis of [[open channel flow]]* is commonly required to support flood control, irrigation systems, and large water supply systems when an aqueduct rather than a pipeline is the preferred solution. The aqueduct is a simple way to get water to other ends of a field.
+
In modern [[civil engineering]] projects, detailed study and analysis of [[open channel flow]] is commonly required to support flood control, irrigation systems, and large water supply systems when an aqueduct rather than a pipeline is the preferred solution. The aqueduct is a simple way to get water to other ends of a field.
  
 
In the past, aqueducts often had channels made of dirt or other porous materials. Significant amounts of water were lost through such unlined aqueducts. As water gets increasingly scarce, these canals are being lined with [[concrete]], [[polymer]]s, or impermeable soil. In some cases, a new aqueduct is built alongside the old one because the water supply cannot be shut down during construction.
 
In the past, aqueducts often had channels made of dirt or other porous materials. Significant amounts of water were lost through such unlined aqueducts. As water gets increasingly scarce, these canals are being lined with [[concrete]], [[polymer]]s, or impermeable soil. In some cases, a new aqueduct is built alongside the old one because the water supply cannot be shut down during construction.
Line 44: Line 41:
  
 
===Ancient Greek aqueducts===
 
===Ancient Greek aqueducts===
*The [[Eupalinian aqueduct]]* on the [[Greece|Greek]] island of [[Samos Island|Samos]]*. An ancient subterranean aqueduct.
+
*The [[Eupalinian aqueduct]] on the [[Greece|Greek]] island of [[Samos Island|Samos]]. An ancient subterranean aqueduct.
  
 
===Roman aqueducts===
 
===Roman aqueducts===
 
[[Image:Aqueduct-segovia.jpg|right|250px|thumb|Roman aqueduct in Segovia, Spain.]]
 
[[Image:Aqueduct-segovia.jpg|right|250px|thumb|Roman aqueduct in Segovia, Spain.]]
 
[[Image:Aqueduc.jpg|right|thumb|Roman aqueduct supplying Carthage, Tunisia.]]
 
[[Image:Aqueduc.jpg|right|thumb|Roman aqueduct supplying Carthage, Tunisia.]]
[[Image:Aquaduct_of_Valens.jpg|right|thumb|Aqueduct of Valens in Istanbul, Turkey.]]
 
  
*The [[Pont du Gard]]* in southern [[France]]
+
*The [[Pont du Gard]] in southern [[France]]
*[[Barbegal aqueduct]]*, France
+
*[[Barbegal aqueduct]], France
*[[Eifel aqueduct]]*, [[Germany]]
+
*[[Eifel aqueduct]], [[Germany]]
*[[Caesarea Palaestina]]*, [[Israel]]
+
*[[Caesarea Palaestina]], [[Israel]]
*[[Segovia]]*, [[Spain]]
+
*[[Segovia]], [[Spain]]
*[[Mérida, Spain|Mérida]]*, Spain
+
*[[Mérida, Spain|Mérida]], Spain
*[[Tarragona]]*, Spain
+
*[[Tarragona]], Spain
*[[Almuñécar]]*, Spain (5 aqueducts - 4 still in use)
+
*[[Almuñécar]], Spain (five aqueducts - four are still in use)
*[[Valens aqueduct]]*, [[Istanbul]]*, [[Turkey]]
+
*[[Valens aqueduct]], [[Istanbul]], [[Turkey]]
*[[Aqua Augusta]]*, Italy
+
*[[Aqua Augusta]], Italy
*[[Aqua Claudia]]* and the [[Anio Novus]]*, as part of the [[Porta Maggiore]]*, Rome, Italy
+
*[[Aqua Claudia]] and the [[Anio Novus]], as part of the [[Porta Maggiore]], Rome, Italy
  
 
===Other aqueducts===
 
===Other aqueducts===
  
*[[Aqueduct of Teruel]]*, Spain
+
*[[Aqueduct of Teruel]], Spain
*[[Central Arizona Project Aqueduct]]*
+
*[[Central Arizona Project Aqueduct]]
*[[Chirk Aqueduct]]*, Wales - built between 1796 and 1801
+
*[[Chirk Aqueduct]], Wales - built between 1796 and 1801
*[[Pontcysyllte Aqueduct]]*, Wales - built between 1795 and 1805
+
*[[Pontcysyllte Aqueduct]], Wales - built between 1795 and 1805
*[[Roquefavour aqueduct]]*, France - built between 1842 and 1847
+
*[[Roquefavour aqueduct]], France - built between 1842 and 1847
*[[Aqueduct St-Clément]]*, [[Montpellier]]*, France - 17th century
+
*[[Aqueduct St-Clément]], [[Montpellier]], France - seventeenth century
*[[Winnipeg Aqueduct]]*, [[Manitoba]]*, Canada - built between 1915 and 1919
+
*[[Winnipeg Aqueduct]], [[Manitoba]], Canada - built between 1915 and 1919
*[[Päijänne-tunneli]]* is 120 kilometers long underground aqueduct (continuous tunnel) connecting lake [[Päijänne]]* to [[Greater Helsinki]]*.
+
*[[Päijänne-tunneli]] is 120 kilometers long underground aqueduct (continuous tunnel) connecting lake [[Päijänne]] to [[Greater Helsinki]].
*[[Wan Mat Saman Aqueduct]]*, [[Kedah]]*, [[Malaysia]] - built between 1900 and 1909
+
*[[Wan Mat Saman Aqueduct]], [[Kedah]], [[Malaysia]] - built between 1900 and 1909
*Aqueduct of [[Santiago de Querétaro|Querétaro]]*, [[Mexico]] - built between 1726 and 1738, 1.3 km long and featuring 74 arches.
+
*Aqueduct of [[Santiago de Querétaro|Querétaro]], [[Mexico]] - built between 1726 and 1738, 1.3 km long and featuring 74 arches.
*[[Levada]]*s, 1350 miles of 17th century aqueducts on the [[Portugal|Portuguese]] island of [[Madeira]]*.
+
*[[Levada]]s, 1350 miles of seventeenth century aqueducts on the [[Portugal|Portuguese]] island of [[Madeira]].
*[[Quabbin Aqueduct]]*, 24.6 miles long tunnel, in [[Massachusetts]]*, [[United States]].
+
*[[Quabbin Aqueduct]], 24.6 miles long tunnel, in [[Massachusetts]], [[United States]].
*[[Chicopee Valley Aqueduct]]*, 13.1 miles long, in [[Massachusetts]]*, [[United States]].
+
*[[Chicopee Valley Aqueduct]], 13.1 miles long, in [[Massachusetts]], [[United States]].
*[[California Aqueduct]]*, a 444 miles (approx. 714.5 kilometers) long combination of canals, pipelines and tunnels, United States.
+
*[[California Aqueduct]], a 444 miles (approx. 714.5 kilometers) long combination of canals, pipelines and tunnels, United States.
  
 
===Navigable aqueducts===
 
===Navigable aqueducts===
  
*Aqueduct near [[Roelofarendsveen]]*, [[Netherlands]] ({{coor dms|52|12|55.96|N|4|37|35.46|E}}): carries the [[Ringvaart]]* [[canal]]* over the A4 [[highway]] and the [[HSL Zuid]]* being constructed, which are situated on land below the level of the canal (and below sea level)
+
*Aqueduct near [[Roelofarendsveen]], [[Netherlands]] ({{coor dms|52|12|55.96|N|4|37|35.46|E}}): carries the [[Ringvaart]] [[canal]] over the A4 [[highway]] and the [[HSL Zuid]] being constructed, which are situated on land below the level of the canal (and below sea level)
*Gouwe aqueduct, near [[Gouda]]*, [[Netherlands]]: carries the [[Gouwe (river)|Gouwe]]* [[river]] over the A12 highway, which is on land below the level of the river
+
*Gouwe aqueduct, near [[Gouda]], [[Netherlands]]: carries the [[Gouwe (river)|Gouwe]] [[river]] over the A12 highway, which is on land below the level of the river
*[[Benjamin Outram]]*'s 44ft-long single-span Holmes Aqueduct on the [[Derby Canal]]* in [[Derby]]* was the world's first navigable [[cast iron]]* aqueduct, narrowly predating [[Thomas Telford]]*'s 186ft-long [[Longdon-on-Tern]]* Aqueduct on the [[Shrewsbury Canal]]*, sometimes described as the world's first ''large-scale'' navigable cast iron aqueduct.
+
*[[Benjamin Outram]]'s 44-foot-long single-span Holmes Aqueduct on the [[Derby Canal]] in [[Derby]] was the world's first navigable [[cast iron]] aqueduct, narrowly predating [[Thomas Telford]]'s 186-foot-long [[Longdon-on-Tern]] Aqueduct on the [[Shrewsbury Canal]], sometimes described as the world's first ''large-scale'' navigable cast iron aqueduct.
*[[Pontcysyllte Aqueduct]]* carries the [[Llangollen Canal]]* over the River Dee valley in north [[Wales]]*, and was designed by [[Thomas Telford]]* and opened in 1805. The same canal, which includes a tunnelled section crosses a second valley on the [[Chirk Aqueduct]]*. This navigable canal also supplies water to the borough of [[Crewe and Nantwich]]*.
+
*[[Pontcysyllte Aqueduct]] carries the [[Llangollen Canal]] over the River Dee valley in north [[Wales]], and was designed by [[Thomas Telford]] and opened in 1805. The same canal, which includes a tunnelled section crosses a second valley on the [[Chirk Aqueduct]]. This navigable canal also supplies water to the borough of [[Crewe and Nantwich]].
*[[Union Canal (Scotland)|Union Canal]]* in [[Scotland]]* has many aqueducts, including the [[Slateford Aqueduct]]* that takes the canal over the [[Water of Leith]]*, the [[Almond Aqueduct]]* over the River Almond at [[Ratho]]* and the very impressive [[Avon Aqueduct]]* over the River Avon. This is the second longest aqueduct in the [[United Kingdom]].
+
*[[Union Canal (Scotland)|Union Canal]] in [[Scotland]] has many aqueducts, including the [[Slateford Aqueduct]] that takes the canal over the [[Water of Leith]], the [[Almond Aqueduct]] over the River Almond at [[Ratho]] and the very impressive [[Avon Aqueduct]] over the River Avon. This is the second longest aqueduct in the [[United Kingdom]].
*In recent years the building of the [[Lichfield Aqueduct]]* prompted the UK government to pass legislation preventing a road being built in the path of a canal being renovated without providing a tunnel or aqueduct for it to pass.
+
*In recent years the building of the [[Lichfield Aqueduct]] prompted the UK government to pass legislation preventing a road being built in the path of a canal being renovated without providing a tunnel or aqueduct for it to pass.
*[[Barton Swing Aqueduct]]* - a form of [[swing bridge]]* that carries the [[Bridgewater Canal]]* across the lower [[Manchester Ship Canal]]*. A 234-foot section of the aqueduct rotates through 90 degrees to allow vessels to pass along the Ship Canal.
+
*[[Barton Swing Aqueduct]] - a form of [[swing bridge]] that carries the [[Bridgewater Canal]] across the lower [[Manchester Ship Canal]]. A 234-foot section of the aqueduct rotates through 90 degrees to allow vessels to pass along the Ship Canal.
*The [[Magdeburg Water Bridge]]* in [[Germany]] connects the [[Elbe-Havel canal]]* to the important [[Mittellandkanal]]*. Nearly 1 km long, it is the longest Water Bridge in Europe.
+
*The [[Magdeburg Water Bridge]] in [[Germany]] connects the [[Elbe-Havel canal]] to the important [[Mittellandkanal]]. Nearly 1 km long, it is the longest Water Bridge in Europe.
  
 
==See also==
 
==See also==
Line 95: Line 91:
 
*[[Drought]]
 
*[[Drought]]
 
*[[Irrigation]]
 
*[[Irrigation]]
 +
*[[Water]]
 
*[[Water resources]]
 
*[[Water resources]]
  
 
==References==
 
==References==
  
* Hodge, A. Trevor (2002). ''Roman Aqueducts and Water Supply''. London, UK: Gerald Duckworth & Co., 2nd edition. ISBN 0715631713 (ISBN-13: 978-0715631713).
+
* Hodge, A. Trevor (2002). ''Roman Aqueducts and Water Supply.'' London, UK: Gerald Duckworth & Co., 2nd edition. ISBN 0715631713  
  
* Sealey, Antony (1976). ''Bridges and aqueducts (Excursions into architecture)''. H. Evelyn. ISBN 023878990X (ISBN-13: 978-0238789908).
+
* Sealey, Antony (1976). ''Bridges and aqueducts (Excursions into architecture).'' H. Evelyn. ISBN 023878990X  
  
* Tompkins, Christopher R. (2002). ''The Croton Dams and Aqueduct''. Charleston, SC: Arcadia Publishing. ISBN 0738504556 (ISBN-13: 978-0738504551).
+
* Tompkins, Christopher R. (2002). ''The Croton Dams and Aqueduct.'' Charleston, SC: Arcadia Publishing. ISBN 0738504556  
  
*[[Sextus Julius Frontinus]], ''[http://www.uvm.edu/~rrodgers/Frontinus.html De Aquaeductu Urbis Romae]'' (''On the water management of the city of Rome''), Translated by R. H. Rodgers, 2003, University of Vermont
+
*[[Sextus Julius Frontinus]], [http://www.uvm.edu/~rrodgers/Frontinus.html De Aquaeductu Urbis Romae] ''(On the water management of the city of Rome),'' Translated by R. H. Rodgers, 2003, University of Vermont. Retrieved December 3, 2007.
  
*[http://encyclopedia.jrank.org/APO_ARN/AQUEDUCT_Lat_aqua_water_and_duc.html Aqueduct entry] from [[Encyclopædia Britannica Eleventh Edition]]
+
*[http://encyclopedia.jrank.org/APO_ARN/AQUEDUCT_Lat_aqua_water_and_duc.html Aqueduct] originally from ''Encyclopædia Britannica, Eleventh Edition.'' (1911) Retrieved December 3, 2007.
  
 
==External links==
 
==External links==
 +
All links retrieved October 31, 2021.
  
*[http://aquaduct.hobbysite.info/ Website about aqueducts]
 
 
*[http://www.waterhistory.org/histories/rome/ Imperial Rome Water Systems]
 
*[http://www.waterhistory.org/histories/rome/ Imperial Rome Water Systems]
*[http://www.dl.ket.org/latin3/mores/aqua/rome.htm Roman Aqueducts Today]
 
 
*[http://www.romanaqueducts.info/ 600 Roman aqueducts with 25 descriptions in detail]
 
*[http://www.romanaqueducts.info/ 600 Roman aqueducts with 25 descriptions in detail]
 
*[http://penelope.uchicago.edu/Thayer/E/Gazetteer/Periods/Roman/Topics/Engineering/waterworks/home.html Lacus Curtius entry on Roman waterworks]
 
*[http://penelope.uchicago.edu/Thayer/E/Gazetteer/Periods/Roman/Topics/Engineering/waterworks/home.html Lacus Curtius entry on Roman waterworks]

Revision as of 12:11, 31 October 2021

A Roman aqueduct at Pont du Gard, France, was built around 19 B.C.E. It is one of France's major tourist attractions and a World Heritage Site.

An aqueduct is an artificial channel that is constructed to convey water from one location to another. The word is derived from the Latin aqua, "water" and ducere, "to lead." Many aqueducts are raised above the landscape, resembling bridges rather than rivers. Structurally, they are similar to viaducts, which is a bridge composed of several small spans constructed over land or water. Viaducts are are used for roads or railways.

Aqueducts have been built to supply water to large cities and to irrigate agricultural lands. If they are sufficiently large, they may also be used for transportation, allowing barges to cross ravines and valleys.

Ancient aqueducts

View from inside a Roman aqueduct, from the Pools of Solomon to Jerusalem.

Although famously associated with the ancient Romans, aqueducts were devised centuries earlier in the Middle East, where people including the Egyptians built sophisticated irrigation systems. Roman-style aqueducts were used as early as the seventh century B.C.E., when the Assyrians built a limestone aqueduct 30 feet (10 meters) high and 900 feet (300 m) long to carry water across a valley to their capital city, Nineveh. The full length of the aqueduct ran for 50 miles (80 km).

In the New World, the Aztec capital of Tenochtitlán was supplied with water by two aqueducts in the middle of the second millennium.

Roman aqueducts

Roman aqueducts were built in all parts of the Roman Empire, from Germany to Africa, and especially in the city of Rome itself, where they totaled over 260 miles (416 km). The aqueducts were important for supplying water to large cities across the empire, and they set a high standard of engineering that was not surpassed for more than a thousand years.

Modern aqueducts

The Central Arizona Project Aqueduct, the largest and most expensive aqueduct system ever constructed in the United States.

Much of the expertise of the Roman engineers was lost in the Dark Ages, and in Europe the construction of aqueducts largely ceased until the High Middle Ages. An example of an extant small scale aqueduct system built in 1202 by Cistercian monks is the Spanish Real Monasterio de Nuestra Senora de Rueda, whose central heating and waste disposal system relied upon a series of aqueducts originating from a diversion of the Ebro River. Through most of the Middle Ages and even up to the nineteenth century, water was instead usually supplied through the digging of wells, though this could cause serious public health problems when local water supplies became contaminated. One notable exception was the New River, a manmade waterway in England, opened in 1613 to supply London with fresh drinking water over a distance of 38 miles (62 km). The development of canals provided another spur to aqueduct building.

The nineteenth century saw aqueduct building resume on a large scale to supply fast-growing cities and water-hungry industries. The development of new materials (such as cast iron) and new technologies (such as steam power) enabled significant improvements. For instance, cast iron permitted the construction of larger, more highly pressurized inverted siphons, while steam and electrically powered pumps enabled a major increase in the quantity and speed of water flow. England led the world in aqueduct construction, with notable examples being built to convey water to Birmingham, Liverpool, and Manchester.

In modern times, the largest aqueducts of all have been built in the United States to supply its biggest cities. The Catskill Aqueduct carries water to New York over a distance of 120 miles (190 km), but it is dwarfed by aqueducts in the far west of the country, most notably the Colorado River Aqueduct, which supplies the Los Angeles area with water from the Colorado River nearly 250 miles (400 km) to the east, and the 444 mile (714.5 km) California Aqueduct which runs from the Sacramento Delta to Lake Perris.

Uses of aqueducts

Historically, many agricultural societies have constructed aqueducts to irrigate crops. Archimedes invented the water screw to raise water for use in irrigation of croplands.

Another widespread use for aqueducts is to supply large cities with clean drinking water. Some of the famed Roman aqueducts still supply water to Rome today. In California, three large aqueducts supply water over hundreds of miles to the Los Angeles area. Two are from the Owens River area, and a third is from the Colorado River.

In more recent times, aqueducts were used for transportation purposes to allow canal barges to cross ravines or valleys. During the Industrial Revolution of the eighteenth century, many aqueducts were constructed as part of the general boom in canal-building.

In modern civil engineering projects, detailed study and analysis of open channel flow is commonly required to support flood control, irrigation systems, and large water supply systems when an aqueduct rather than a pipeline is the preferred solution. The aqueduct is a simple way to get water to other ends of a field.

In the past, aqueducts often had channels made of dirt or other porous materials. Significant amounts of water were lost through such unlined aqueducts. As water gets increasingly scarce, these canals are being lined with concrete, polymers, or impermeable soil. In some cases, a new aqueduct is built alongside the old one because the water supply cannot be shut down during construction.

Notable aqueducts

Ancient Greek aqueducts

  • The Eupalinian aqueduct on the Greek island of Samos. An ancient subterranean aqueduct.

Roman aqueducts

Roman aqueduct in Segovia, Spain.
Roman aqueduct supplying Carthage, Tunisia.
  • The Pont du Gard in southern France
  • Barbegal aqueduct, France
  • Eifel aqueduct, Germany
  • Caesarea Palaestina, Israel
  • Segovia, Spain
  • Mérida, Spain
  • Tarragona, Spain
  • Almuñécar, Spain (five aqueducts - four are still in use)
  • Valens aqueduct, Istanbul, Turkey
  • Aqua Augusta, Italy
  • Aqua Claudia and the Anio Novus, as part of the Porta Maggiore, Rome, Italy

Other aqueducts

  • Aqueduct of Teruel, Spain
  • Central Arizona Project Aqueduct
  • Chirk Aqueduct, Wales - built between 1796 and 1801
  • Pontcysyllte Aqueduct, Wales - built between 1795 and 1805
  • Roquefavour aqueduct, France - built between 1842 and 1847
  • Aqueduct St-Clément, Montpellier, France - seventeenth century
  • Winnipeg Aqueduct, Manitoba, Canada - built between 1915 and 1919
  • Päijänne-tunneli is 120 kilometers long underground aqueduct (continuous tunnel) connecting lake Päijänne to Greater Helsinki.
  • Wan Mat Saman Aqueduct, Kedah, Malaysia - built between 1900 and 1909
  • Aqueduct of Querétaro, Mexico - built between 1726 and 1738, 1.3 km long and featuring 74 arches.
  • Levadas, 1350 miles of seventeenth century aqueducts on the Portuguese island of Madeira.
  • Quabbin Aqueduct, 24.6 miles long tunnel, in Massachusetts, United States.
  • Chicopee Valley Aqueduct, 13.1 miles long, in Massachusetts, United States.
  • California Aqueduct, a 444 miles (approx. 714.5 kilometers) long combination of canals, pipelines and tunnels, United States.

Navigable aqueducts

  • Aqueduct near Roelofarendsveen, Netherlands ({{#invoke:Coordinates|coord}}{{#coordinates:52|12|55.96|N|4|37|35.46|E|

| |name= }}): carries the Ringvaart canal over the A4 highway and the HSL Zuid being constructed, which are situated on land below the level of the canal (and below sea level)

  • Gouwe aqueduct, near Gouda, Netherlands: carries the Gouwe river over the A12 highway, which is on land below the level of the river
  • Benjamin Outram's 44-foot-long single-span Holmes Aqueduct on the Derby Canal in Derby was the world's first navigable cast iron aqueduct, narrowly predating Thomas Telford's 186-foot-long Longdon-on-Tern Aqueduct on the Shrewsbury Canal, sometimes described as the world's first large-scale navigable cast iron aqueduct.
  • Pontcysyllte Aqueduct carries the Llangollen Canal over the River Dee valley in north Wales, and was designed by Thomas Telford and opened in 1805. The same canal, which includes a tunnelled section crosses a second valley on the Chirk Aqueduct. This navigable canal also supplies water to the borough of Crewe and Nantwich.
  • Union Canal in Scotland has many aqueducts, including the Slateford Aqueduct that takes the canal over the Water of Leith, the Almond Aqueduct over the River Almond at Ratho and the very impressive Avon Aqueduct over the River Avon. This is the second longest aqueduct in the United Kingdom.
  • In recent years the building of the Lichfield Aqueduct prompted the UK government to pass legislation preventing a road being built in the path of a canal being renovated without providing a tunnel or aqueduct for it to pass.
  • Barton Swing Aqueduct - a form of swing bridge that carries the Bridgewater Canal across the lower Manchester Ship Canal. A 234-foot section of the aqueduct rotates through 90 degrees to allow vessels to pass along the Ship Canal.
  • The Magdeburg Water Bridge in Germany connects the Elbe-Havel canal to the important Mittellandkanal. Nearly 1 km long, it is the longest Water Bridge in Europe.

See also

References
ISBN links support NWE through referral fees

  • Hodge, A. Trevor (2002). Roman Aqueducts and Water Supply. London, UK: Gerald Duckworth & Co., 2nd edition. ISBN 0715631713
  • Sealey, Antony (1976). Bridges and aqueducts (Excursions into architecture). H. Evelyn. ISBN 023878990X
  • Tompkins, Christopher R. (2002). The Croton Dams and Aqueduct. Charleston, SC: Arcadia Publishing. ISBN 0738504556
  • Sextus Julius Frontinus, De Aquaeductu Urbis Romae (On the water management of the city of Rome), Translated by R. H. Rodgers, 2003, University of Vermont. Retrieved December 3, 2007.
  • Aqueduct originally from Encyclopædia Britannica, Eleventh Edition. (1911) Retrieved December 3, 2007.

External links

All links retrieved October 31, 2021.

Credits

New World Encyclopedia writers and editors rewrote and completed the Wikipedia article in accordance with New World Encyclopedia standards. This article abides by terms of the Creative Commons CC-by-sa 3.0 License (CC-by-sa), which may be used and disseminated with proper attribution. Credit is due under the terms of this license that can reference both the New World Encyclopedia contributors and the selfless volunteer contributors of the Wikimedia Foundation. To cite this article click here for a list of acceptable citing formats.The history of earlier contributions by wikipedians is accessible to researchers here:

The history of this article since it was imported to New World Encyclopedia:

Note: Some restrictions may apply to use of individual images which are separately licensed.