Differences
This shows you the differences between two versions of the page.
| Both sides previous revision Previous revision Next revision | Previous revision | ||
| mhdr:micro-hydro [2026/03/10 12:41] – external edit 127.0.0.1 | mhdr:micro-hydro [2026/08/19 00:24] (current) – external edit 127.0.0.1 | ||
|---|---|---|---|
| Line 1: | Line 1: | ||
| - | # Micro-hydro | + | This topic is part of [[gt: |
| + | ====== | ||
| - |  |
| --- | --- | ||
| Line 10: | Line 11: | ||
| - | ## What is micro-hydro? | + | ===== What is micro-hydro? |
| A micro-hydro system converts the potential energy in a stream of moving water into electrical energy. The principles of hydropower are the same whatever the size of the system. Micro-hydro refers to small systems that can be installed by individual homes, businesses or farms. | A micro-hydro system converts the potential energy in a stream of moving water into electrical energy. The principles of hydropower are the same whatever the size of the system. Micro-hydro refers to small systems that can be installed by individual homes, businesses or farms. | ||
| Line 27: | Line 28: | ||
| </ | </ | ||
| - | ### History | + | ==== History |
| Hydropower has been utilised since ancient times, via waterwheels for milling grain and lifting water for irrigation. Turbines that generate electricity were first developed in the late 19th century. | Hydropower has been utilised since ancient times, via waterwheels for milling grain and lifting water for irrigation. Turbines that generate electricity were first developed in the late 19th century. | ||
| Line 35: | Line 36: | ||
| <WRAP center centeralign> | <WRAP center centeralign> | ||
| < | < | ||
| - | {{url> | + | {{url> |
| < | < | ||
| _How small-scale hydro works_ | _How small-scale hydro works_ | ||
| Line 42: | Line 43: | ||
| </ | </ | ||
| - | ### Types of turbine | + | ==== Types of turbine |
| **Pelton:** typically used for high-head sites (large vertical drop, usually in the upper courses of rivers); operating head starts around 50m and can be over 1000m, with flow over 2000 litres / second. They’re like breakfast bowls mounted on a spindle, hit with a jet of high-pressure water. | **Pelton:** typically used for high-head sites (large vertical drop, usually in the upper courses of rivers); operating head starts around 50m and can be over 1000m, with flow over 2000 litres / second. They’re like breakfast bowls mounted on a spindle, hit with a jet of high-pressure water. | ||
| Line 71: | Line 72: | ||
| - | ## What are the benefits of micro-hydro? | + | ===== What are the benefits of micro-hydro? |
| There are all the usual benefits of renewable energy generation, in that it avoids the burning of fossil fuels, with their associated pollution and carbon emissions. Plus it’s one of the more efficient renewable technologies. The load (or capacity) factor on small hydro is typically around 45% (load factor is the ratio of energy output per year to the maximum output if the system works at full-rated capacity all year round). PV is typically around 8-9%, and a 250kW wind turbine is in the 18-22% range, depending on the site. | There are all the usual benefits of renewable energy generation, in that it avoids the burning of fossil fuels, with their associated pollution and carbon emissions. Plus it’s one of the more efficient renewable technologies. The load (or capacity) factor on small hydro is typically around 45% (load factor is the ratio of energy output per year to the maximum output if the system works at full-rated capacity all year round). PV is typically around 8-9%, and a 250kW wind turbine is in the 18-22% range, depending on the site. | ||
| Line 105: | Line 106: | ||
| <WRAP center centeralign> | <WRAP center centeralign> | ||
| < | < | ||
| - | {{url> | + | {{url> |
| < | < | ||
| _Discussion of how electricity can be provided sustainably by small hydro schemes to remote communities in developing countries that are without grid electricity – rather than giant hydro projects._ | _Discussion of how electricity can be provided sustainably by small hydro schemes to remote communities in developing countries that are without grid electricity – rather than giant hydro projects._ | ||
| Line 113: | Line 114: | ||
| - | ## What can I do? | + | ===== What can I do? ===== |
| If you live near a stream and you’re thinking of installing micro-hydro, | If you live near a stream and you’re thinking of installing micro-hydro, | ||
| Line 143: | Line 144: | ||
| <WRAP center centeralign> | <WRAP center centeralign> | ||
| < | < | ||
| - | {{url> | + | {{url> |
| < | < | ||
| _Couple in Scotland buy an old watermill and become self-sufficient in electricity and heating from a micro-hydro turbine._ | _Couple in Scotland buy an old watermill and become self-sufficient in electricity and heating from a micro-hydro turbine._ | ||
| Line 167: | Line 168: | ||
| - | ## Further resources | + | ===== Forum ===== |
| + | |||
| + | This topic belongs to the section [[gt: | ||
| + | |||
| + | ===== Further resources | ||
| - [International Hydropower Association](https:// | - [International Hydropower Association](https:// | ||
| Line 180: | Line 185: | ||
| - [National River Flow Archive UK](https:// | - [National River Flow Archive UK](https:// | ||
| - [Pico-hydro for cost-effective lighting](https:// | - [Pico-hydro for cost-effective lighting](https:// | ||
| - | - [Building a waterwheel](https:// | + | - [Building a waterwheel](https:// |
| - [How to build a micro hydro turbine generator](https:// | - [How to build a micro hydro turbine generator](https:// | ||
| - [History of waterwheels](https:// | - [History of waterwheels](https:// | ||
| Line 188: | Line 193: | ||
| - | ## Related topics | + | ===== Related topics |
| + | - [[batt: | ||
| + | - [[grel: | ||
| + | - [[lien: | ||
| - | ## Specialist curators of this topic | + | ===== Specialist curators of this topic ===== |