Cistern

{{Short description|Waterproof receptacle for holding liquids, usually water}}

{{About|water storage tanks}}

File:El Jadida cistern.jpg (Mazagan), El Jadida, Morocco (1514)]]

File:Well-cistern.jpg is in the source of the water: A cistern collects fresh water where a well draws from groundwater.]]

A cistern ({{etymology|enm|{{wikt-lang|enm|cisterne}}|}}; {{etymology|la|{{wikt-lang|la|cisterna}}|}}, {{etymology||{{wikt-lang|la|cista}}|box}}; {{etymology|grc|{{wikt-lang|grc|κίστη}} ({{grc-transl|κίστη}})|basket}}{{cite encyclopedia |encyclopedia=Webster's New Collegiate Dictionary |edition=9th |title=cistern |year=1990}}) is a waterproof receptacle for holding liquids, usually water. Cisterns are often built to catch and store rainwater.{{cite web |url=https://www.nationalgeographic.org/encyclopedia/reservoir |title=Cisterns |publisher=National Geographic Society}} To prevent leakage, the interior of the cistern is often lined with hydraulic plaster.{{Cite book |last1=Reich |first1=Ronny |title=The Architecture of Ancient Israel |last2=Katzenstein |first2=Hannah |date=1992 |publisher=Israel Exploration Society |isbn=978-965-221-013-5 |editor-last=Kempinski |editor-first=Aharon |location=Jerusalem |pages=312 |chapter=Glossary of Archaeological Terms |editor-last2=Reich |editor-first2=Ronny }}

Cisterns are distinguished from wells by their waterproof linings. Modern cisterns range in capacity from a few liters to thousands of cubic meters, effectively forming covered reservoirs.{{cite web |url=http://www.ncagr.gov/SWC/costshareprograms/CCAP/documents/Chapter7-CisternDesign.pdf |title=Cistern Design |publisher=North Carolina Department of Agriculture and Consumer Services |access-date=2020-04-13}}

Origins

= Early domestic and agricultural use =

File:Cistern in the Mission District, San Francisco, California.jpg

File:Water cistern in San Francisco.jpg

File:Medium sized rock cut cistern at pavuralla konda at bheemunipatnam.jpg in India]]

Waterproof lime plaster cisterns in the floors of houses are features of Neolithic village sites of the Levant at, for instance, Ramad and Lebwe,{{cite journal| title=Water use in Syria and Palestine from the Neolithic to the Bronze Age |journal = World Archaeology |volume = 11|issue=3 |last = Robert |first = Miller |year = 1980 |pages = 331–341|doi=10.1080/00438243.1980.9979771|jstor=124254}} and by the late fourth millennium BC, as at Jawa in northeastern Lebanon, cisterns are essential elements of emerging water management techniques in dry-land farming communities.{{cite journal| title=Water conservation in ancient Arabia |journal = Proceedings of the Seminar for Arabian Studies |volume = 7 |last = Roberts |first = N. |year = 1977 |pages = 134–46|jstor=41223308}}

Early examples of ancient cisterns, found in Israel, include a significant discovery at Tel Hazor, where a large cistern was carved into bedrock beneath a palace dating to the Late Bronze Age. Similar systems were uncovered at Ta'anakh. In the Iron Age, underground water systems were constructed in royal centers and settlements throughout ancient Israel, marking some of the earliest instances of engineering activity in urban planning.{{Cite book |last=Shiloh |first=Yigal |title=The Architecture of Ancient Israel |date=1992 |publisher=Israel Exploration Society |isbn=978-965-221-013-5 |editor-last=Kempinski |editor-first=Aharon |location=Jerusalem |pages=275 |chapter=Underground Water Systems in the Land of Israel in the Iron Age |editor-last2=Reich |editor-first2=Ronny }}

The Ancient Roman impluvium, a standard feature of the domus house, generally had a cistern underneath. The impluvium and associated structures collected, filtered, cooled, and stored the water, and also cooled and ventilated the house.

= Castle cisterns =

File:Citernes malga interieur.jpg, Carthage, 1930]]

In the Middle Ages, cisterns were often constructed in hill castles in Europe, especially where wells could not be dug deeply enough. There were two types: the tank cistern and the filter cistern. Such a filter cistern was built at the Riegersburg in Austrian Styria, where a cistern was hewn out of the lava rock. Rain water passed through a sand filter and collected in the cistern. The filter cleaned the rain water and enriched it with minerals.{{citation needed|date=September 2018}}

Present-day use

File:Unterirdische Zisterne.jpg

Cisterns are commonly prevalent in areas where water is scarce, either because it is rare or has been depleted due to heavy use. Historically, the water was used for many purposes including cooking, irrigation, and washing.{{Cite journal|last1=Mays|first1=Larry|last2=Antoniou|first2=George|author3-link=Andreas N. Angelakis|last3=Angelakis|first3=Andreas|date=2013|title=History of Water Cisterns: Legacies and Lessons|journal=Water|volume=5|issue=4|pages=1916–1940|doi=10.3390/w5041916|doi-access=free|bibcode=2013Water...5.1916M |hdl=2286/R.I.43114|hdl-access=free}} Present-day cisterns are often used only for irrigation due to concerns over water quality. Cisterns today can also be outfitted with filters or other water purification methods when the water is intended for consumption. It is not uncommon for a cistern to be open in some manner in order to catch rain or to include more elaborate rainwater harvesting systems. It is important in these cases to have a system that does not leave the water open to algae or to mosquitoes, which are attracted to the water and then potentially carry disease to nearby humans.{{cite web | url = http://www.yobserver.com/culture%2Dand%2Dsociety/10013028.html | title = Yemen takes another look at cisterns | last = al-Kibsi | first = Huda | date = 2007-09-29 | work = Yemen Observer | access-date = 2020-05-11 | archive-url = https://web.archive.org/web/20120208031829/http://www.yobserver.com/culture-and-society/10013028.html | archive-date = 2012-02-08 | url-status = usurped }}

One particularly unique modern utilization of cisterns is found in San Francisco, which has historically been subject to devastating fires. As a precautionary measure, in 1850, funds were allocated to construct over 100 cisterns across the city to be utilized in case of fire.{{Cite web |title=CISTERNS - FoundSF |url=https://www.foundsf.org/index.php?title=CISTERNS |access-date=2024-08-08 |website=www.foundsf.org}} The city's firefighting network, the Auxiliary Water Supply System (AWSS) maintains a network of 177 independent underground water cisterns, with sizes varying from 75,000 US gallons (280,000 L) to over 200,000 US gallons (760,000 L) depending on location with a total storage capacity of over 11 million U.S. gallons (42 million liters) of water.{{Cite web |last=King |first=Jason |date=2017-12-06 |title=San Francisco's Hidden Water Tanks |url=https://www.hiddenhydrology.org/san-franciscos-hidden-water-tanks/ |access-date=2024-08-08 |website=Hidden Hydrology |language=en-US}} These cisterns are easily spotted at street level with manholes labeled CISTERN S.F.F.D surrounded by red brick circles or rectangles. The cisterns are completely separate from the rest of the city's water supply, ensuring that in the event of an earthquake, additional backup is available regardless of the condition of the city's mainline water system.{{Cite web |date=2021-05-30 |title=The golden legacy of San Francisco's little hydrant that could |url=https://www.firerescue1.com/firefighting-history/articles/the-golden-legacy-of-san-franciscos-little-hydrant-that-could-NlAtbIdmLBoNN8b1/ |access-date=2024-08-08 |website=FireRescue1 |language=en-US}}

Some cisterns sit on the top of houses or on the ground higher than the house, and supply the running water needs for the house. They are often supplied by wells with electric pumps, or are filled manually or by truck delivery, rather than by rainwater collection. Very common throughout Brazil, for example, they were traditionally made of concrete walls (much like the houses themselves), with a similar concrete top (about 5cm/2 inches thick), with a piece that can be removed for water filling and then reinserted to keep out debris and insects. Modern cisterns are manufactured out of plastic (in Brazil with a characteristic bright blue color, round, in capacities of about 10,000 and 50,000 liters (2641 and 13,208 gallons)). These cisterns differ from water tanks in the sense that they are not entirely enclosed and sealed with one form, rather they have a lid made of the same material as the cistern, which is removable by the user.{{citation needed|date=September 2018}}

To keep a clean water supply, the cistern must be kept clean. It is important to inspect them regularly, keep them well enclosed, and to occasionally empty and clean them with a proper dilution of chlorine and to rinse them well. Well water must be inspected for contaminants coming from the ground source. City water has up to 1ppm (parts per million) chlorine added to the water to keep it clean. If there is any question about the water supply at any point (source to tap), then the cistern water should not be used for drinking or cooking. If it is of acceptable quality and consistency, then it can be used for (1) toilets, and housecleaning; (2) showers and handwashing; (3) washing dishes, with proper sanitation methods,{{Cite web|url=https://www.lfu.bayern.de/buerger/doc/uw_88_umgang_mit_regenwasser.pdf|title=Naturnaher Umgang mit Regenwasser|website=Bayerisches Landesamt für Umwelt LfU|language=de|access-date=2020-04-12}} and for the highest quality, (4) cooking and drinking. Water of non-acceptable quality for the aforementioned uses may still be used for irrigation. If it is free of particulates but not low enough in bacteria, then boiling may also be an effective method to prepare the water for drinking.{{citation needed|date=September 2018}}

File:Bermuda roof.jpg Many greenhouses rely on a cistern to help meet their water needs, particularly in the United States. Some countries or regions, such as Flanders, Bermuda and the U.S. Virgin Islands, have strict laws requiring that rainwater harvesting systems be built alongside any new construction, and cisterns can be used in these cases. In Bermuda, for example, its familiar white-stepped roofs seen on houses are part of the rainwater collection system, where water is channeled by roof gutters to below-ground cisterns.{{cite web|author=Low, Harry|title=Why houses in Bermuda have white stepped roofs|work=BBC News|date=23 December 2016|url=https://www.bbc.com/news/magazine-38222271|access-date=30 August 2019}} Other countries, such as Japan, Germany, and Spain, also offer financial incentives or tax credit for installing cisterns.{{Cite web|url=https://www.garten-zisternen.de/blog/geld-sparen-durch-zisternennutzung|title=Geld sparen durch Zisternennutzung|last=Scheidewig|website=Garten-Zisternen|language=de|access-date=2020-04-13}} Cisterns may also be used to store water for firefighting in areas where there is an inadequate water supply. The city of San Francisco, notably, maintains fire cisterns under its streets in case the primary water supply is disrupted. In many flat areas, the use of cisterns is encouraged to absorb excess rainwater which otherwise can overload sewage or drainage systems by heavy rains (certainly in urban areas where a lot of ground is surfaced and doesn't let the ground absorb water).{{citation needed|date=September 2018}}

Bathing

In some southeast Asian countries such as Malaysia and Indonesia showers are traditionally taken by pouring water over one's body with a dipper (this practice comes from before piped water was common). Many bathrooms even in modern houses are constructed with a small cistern to hold water for bathing by this method.{{citation needed|date=September 2018}}

Toilet cisterns

File:Gravity toilet valves handle down.svg

File:Basilica Cistern, Constantinople.jpg, Istanbul, 138 x 65 meter, 80,000 m3; Justinian I]]

File:Red rain barrel.jpg is a form of small cistern]]

The modern toilet utilises a cistern to reserve and hold the correct amount of water required to flush the toilet bowl. In earlier toilets, the cistern was located high above the toilet bowl and connected to it by a long pipe. It was necessary to pull a hanging chain connected to a release valve located inside the cistern in order to flush the toilet. Modern toilets may be close coupled, with the cistern mounted directly on the toilet bowl and no intermediate pipe. In this arrangement, the flush mechanism (lever or push button) is usually mounted on the cistern. Concealed cistern toilets, where the cistern is built into the wall behind the toilet, are also available. A flushing trough is a type of cistern used to serve more than one WC pan at one time. These cisterns are becoming less common, however. The cistern was the genesis of the modern bidet.{{citation needed|date=September 2018}}

At the beginning of the flush cycle, as the water level in the toilet cistern tank drops, the flush valve flapper falls back to the bottom, stopping the main flow to the flush tube. Because the tank water level has yet to reach the fill line, water continues to flow from the tank and bowl fill tubes. When the water again reaches the fill line, the float will release the fill valve shaft and water flow will stop.

One Million Cisterns Program

In Northeastern Brazil, the One Million Cisterns Program (Programa 1 Milhão de Cisternas or P1MC) has assisted local people with water management. The Brazilian government adopted this new policy of rainwater harvesting in 2013.{{cite journal| title=Harvesting water for living with drought: Insights from the Brazilian human coexistence with semi-aridity approach towards achieving the Sustainable Development Goals|journal = Sustainability |volume = 10 |issue = 3 |last1 = Lindoso |first1 = D.P. |last2 = Eiró |first2 = F. |last3 = Bursztyn |first3 = M. |last4 = Rodrigues-Filho |first4 = S. |last5 = Nasuti |first5= S. |year = 2018 |pages = 622|doi = 10.3390/su10030622 |doi-access = free |bibcode = 2018Sust...10..622L |hdl = 2066/183903 |hdl-access = free }} The Semi-Arid Articulation (ASA) has been providing managerial and technological support to establish cement-layered containers, called cisterns, to harvest and store rainwater for small farm-holders in 34 territories of nine states where ASA operates (Minas Gerais, Bahia, Sergipe, Alagoas, Pernambuco, Paraíba, Rio Grande do Norte, Ceará and Piauí).{{cite web|url=https://irpaa.org/noticias/1766/acesso-a-agua-para-producao-e-ampliado-para-mais-de-6-8-mil-familias-do-semiarido| title= Acesso à água para produção é ampliado para mais de 6,8 mil famílias do Semiárido | last = Pragana | first = Verônica | date= 2017-12-29 | work=IRPAA - Instituto Regional da Pequena Agropecuária Apropriada}}

The rainwater falling on the rooftops is directed through pipelines or gutters and stored in the cistern.{{cite journal| title=Harvesting water for living with drought: Insights from the Brazilian human coexistence with semi-aridity approach towards achieving the Sustainable Development Goals|journal = Sustainability |volume = 10 |issue = 3 |last1 = Lindoso |first1 = D.P. |last2 = Eiró |first2 = F. |last3 = Bursztyn |first3 = M. |last4 = Rodrigues-Filho |first4 = S. |last5 = Nasuti |first5= S. |year = 2018 |pages = 622|doi = 10.3390/su10030622 |doi-access = free |bibcode = 2018Sust...10..622L |hdl = 2066/183903 |hdl-access = free }} The cistern is covered with a lid to avoid evaporation. Each cistern has a capacity of 16,000 liters. Water collected in it during 3–4 months of the rainy season can sustain the requirement for drinking, cooking, and other basic sanitation purposes for rest of the dry periods. By 2016, 1.2 million rainwater harvesting cisterns were implemented for human consumption alone.{{cite web|url=http://www.brasil.gov.br/cidadania-e-justica/2016/05/programa-cisternas-democratiza-acesso-a-agua-no-semiarido |title = Programa Cisternas democratiza acesso à água no Semiárido| date= 2016 | work=Government of Brazil}} After positive results of P1MC, the government introduced another program named "One Land, Two Water Program" (Uma Terra, Duas Águas, P1 + 2), which provides a farmer with another slab cistern to support agricultural production.{{cite journal| title=Harvesting water for living with drought: Insights from the Brazilian human coexistence with semi-aridity approach towards achieving the Sustainable Development Goals|journal = Sustainability |volume = 10 |issue = 3 |last1 = Lindoso |first1 = D.P. |last2 = Eiró |first2 = F. |last3 = Bursztyn |first3 = M. |last4 = Rodrigues-Filho |first4 = S. |last5 = Nasuti |first5= S. |year = 2018 |pages = 622|doi = 10.3390/su10030622 |doi-access = free |bibcode = 2018Sust...10..622L |hdl = 2066/183903 |hdl-access = free }}

Notable examples

Gallery

File:The staircase leading to the lower levels of the underground cistern of Mycenae on 26 March 2019.jpg|Staircase leading to the lower levels of the underground cistern of Mycenae, Argolis,
13th cent. B.C.

File:Nabatean Well Negev 031812.JPG|Remains of a Nabataean cistern north of Makhtesh Ramon, southern Israel

File:Tekir ambarı Silifke Mersin Province.jpg|Cistern known as Tekir ambarı in Silifke, Mersin Province, Turkey

File:Palacio de las Veletas, aljibe, Cáceres.JPG|Aljibe of the {{Ill|Palacio de las Veletas|es}}, Cáceres, Spain

File:Cisterna subterrânea.jpg|Cistern in the Peniche Fortress, Peniche, Portugal

File:Fire cistern sign Dec 26 2020 02PM.jpeg|Sign indicating a cistern in Japan

File:Kunststoffzisterne IMG 20170714 120822174.jpg|Plastic cistern

See also

References

{{Reflist}}