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1

Alberta. Alberta Energy. Research and Technology Branch. Evaluation of wind- and solar-powered water-pumping systems. Edmonton, Alta: Alberta Energy, Research and Technology Branch, 1990.

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2

Sinton, Christopher W. Guide to solar-powered water pumping systems in New York State. Albany, NY: NYSERDA, 2004.

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3

Aftim, Acra, i International Development Research Centre (Canada), red. Water disinfection by solar radiation: Assessment and application. Ottawa, Ont., Canada: International Development Research Centre, 1990.

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4

Anderson, Susan. Commercial application of solar energy in Bellingham, Washington: Three case studies. Bellingham, Wash: Huxley College of Environmental Studies, Western Washington University, 1985.

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5

Barlow, Roy. Solar pumping: An introduction and update on the technology, performance, costs, and economics. Washington, D.C: World Bank, 1992.

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6

Barlow, Roy. Solar pumping: An introduction and update on the technology, performance, costs, and economics. London, U.K: Intermediate Technology Publications, 1993.

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7

King, Scott N. Energy-efficient motors: A study of their application in Idaho municipal water supply systems. Boise, Idaho: Idaho Dept. of Water Resources, Energy Division, 1993.

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8

Kenna, Jeff, i Bill Gillet. Solar Water Pumping: A Handbook. ITDG Publishing, 1985.

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9

Foster, Robert, Windy Dankoff i Alma Cota. Solar Water Pumping: The Earthscan Expert Guide. Taylor & Francis Group, 2019.

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10

Foster, Robert, Windy Dankoff i Alma Cota. Solar Water Pumping: The Earthscan Expert Guide. Taylor & Francis Group, 2018.

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11

Llario, Alberto Ibáñez, i Asenath W. Kiprono. Solar Pumping for Water Supply: Harnessing Solar Power in Humanitarian and Development Contexts. Practical Action Publishing, 2020.

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12

Llario, Alberto Ibáñez, i Asenath W. Kiprono. Solar Pumping for Water Supply: Harnessing Solar Power in Humanitarian and Development Contexts. Practical Action Publishing, 2020.

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13

Acra, A. Water Disinfection by Solar Radiation: Assessment and Application. Unipub, 1990.

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14

Kalogirou, Soteris A. The application of solar desalination for water purification in Cyprus. 1995.

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15

The Principles, Construction, and Application of Pumping Machinery (Steam and Water Pressure): With Practical Illustrations of Engines and Pumps Applied ... and Efficiency Trials of Pumping Machinery. Adamant Media Corporation, 2001.

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16

Davey, Henry 1843-1928. Principles, Construction, and Application of Pumping Machinery (steam and Water Pressure) with Practical Illustrations of Engines and Pumps Applied to Mining, Town Water Supply, Drainage of Lands, etc. Also Economy and Efficiency Trials of Pumping... Creative Media Partners, LLC, 2021.

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17

Worthington, Henry R. The Worthington Steam Pumping Engine: History of Its Invention and Development. Consideration of Its Duty Performances. Its Application to Reservoir, ... Description of Worthington Water Meters, Etc. Franklin Classics Trade Press, 2018.

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18

The Worthington Steam Pumping Engine: History Of Its Invention And Development. Consideration Of Its Duty Performances. Its Application To Reservoir, ... Description Of Worthington Water Meters, Etc. Franklin Classics, 2018.

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19

Worthington, Henry R. The Worthington Steam Pumping Engine: History of Its Invention and Development. Consideration of Its Duty Performances. Its Application to Reservoir, ... Description of Worthington Water Meters, Etc. Franklin Classics Trade Press, 2018.

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20

Rez, Peter. Electrical Power Generation: Hydroelectricity, Tides and Pumped Storage. Oxford University Press, 2017. http://dx.doi.org/10.1093/oso/9780198802297.003.0008.

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Streszczenie:
Hydroelectricity already contributes to electrical supply in places where it can. What are needed are rivers with adequate flow that can be dammed to provide a significant vertical drop. These are usually found in mountainous regions where runoff from snowmelt provides adequate water supply. Renewables such as solar and wind have low power densities. That means large areas will be needed to meet the electrical energy needs of cities in developed countries. The other problem is that they do not supply power when it is needed. Energy can be stored by pumping water uphill into a reservoir at a higher elevation. All the energy needs of a desert city can be met with solar in places where every day is sunny. Low-density development means there is enough roof area, and there are elevation differences for pumped storage. There are not many places in the world that meet all these conditions.
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