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Created Date:2009-03-16

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energy numbers thinking about energy germany’s offshore wind capacity factors posted by andrew – 2018/05/25 previously i’ve provided the figures for danish offshore windfarms , for the uk , and for belgium too. here are the numbers for the larger german offshore windfarms. the ones shown here are the only ones i’ve been able to get detailed data for, so far. if you know of sources for other windfarms, please let me know on twitter . german offshore wind capacity factors all numbers are to may 2018. analysis by energynumbers.info. latest rolling 12-month capacity factor lifetime capacity factor age (y) installed capacity (mw) total elec. gen. (gwh) power per unit area spanned (w/m 2 ) rolling 12-month capacity factors total 41.4% 41.1% 3128 20 563 3.0 amrumbank west 41.7% 44.1% 2.6 302 2 872 4.0 bard offshore 1 37.0% 37.8% 1.1 400 1 460 2.6 borkum riffgrund i 36.8% 40.5% 2.6 312 2 881 3.5 dantysk 48.0% 50.0% 3.1 288 3 178 2.2 gode wind i 40.3% 1.0 330 1 127 gode wind ii 39.9% 1.0 252 852 nordsee one 32.0% 0.4 331 354 nordsee ost 1 33.9% 36.1% 3.0 144 1 368 2.9 nordsee ost 2 35.8% 36.8% 3.0 144 1 402 2.9 sandbank 46.2% 47.1% 1.3 288 1 552 2.9 windpark baltic 1 & 2 46.7% 46.8% 2.6 336 3 516 4.3 load duration curves i’ve constructed for each of the offshore windfarms for which there is detailed hourly data. use the pause and play buttons to stop and start the sequential display of curves. click on the windfarm name in the legend to toggle the display of that farm’s curve. methodology note that for each individual windfarm, its curve is based on data starting from the date that the windfarm was fully commissioned, and the windfarm’s age is calculated as starting at that date. there is one exception: the bard offshore windfarm was fully commissioned in august 2013, but detailed data on its generation is only available from spring 2017 onwards – so the “age” shown for this windfarm is the age of the oldest available data, not the age of the windfarm itself. the numbers for dantysk did look strange: i had to clean a stretch of five months of data that was clearly wrong. a small kink remains in its load duration curve; this may be an artefact of a small amount of remaining problematic data. windfarms less than a year old are excluded from the calculations of the power density per unit area spanned. the figure for total power density is a weighted average of the windfarms that are a year older or more: this is weighted by size, but not by time. so a windfarm that’s twice as large contributes twice as much to the total; whereas a windfarm that’s twice as old, does not. category: offshore wind comments closed capacity factors at danish offshore wind farms posted by andrew – 2018/03/21 here are the average capacity factors of every danish offshore wind farm, newly updated to include data to the end of february 2018. the anholt 1 windfarm, which only opened in 2013, had a storming year, and reached an average capacity factor of 53.7% for the full year 2017. compare these with the capacity factors for german , and uk , and belgian offshore wind farms . read more… category: offshore wind , public 7 comments uk offshore wind capacity factors posted by andrew – 2018/01/18 here are the average capacity factors for offshore wind farms in uk waters, newly updated to include data to the end of december 2017 (though there are still some figures to come through for the last couple of months of last year, for the smaller windfarms). and you might be interested in comparing these with the capacity factors and load-duration curves for belgium , denmark and germany . read more… category: managing variability , offshore wind comments closed germany’s renewables more than make up for its nuclear phase-out posted by andrew – 2018/01/07 new updated with data for 2017 too. germany has been phasing out its nuclear power, as policy, since 1999. it’s also been expanding its renewable generation. the nuclear phase-out provides the renewables market with a clear, long-term positive signal. as does germany’s commitment to decarbonisation. i’ve previously written about german pv and german offshore wind capacity factors , now, let’s take a look at how quickly the rollout of renewables has happened, relative to the decline of nuclear. the chart below read more… comments closed capacity factors and load-duration curves for belgian offshore windfarms posted by andrew – 2017/11/30 previously i’ve provided capacity factors for danish , german and uk offshore windfarms . now here are the numbers for the larger of the belgian offshore windfarms. the ones shown here are the only ones i’ve been able to get detailed data for, so far. belgian offshore wind all numbers are to 27 november 2017. analysis by energynumbers.info. latest rolling 12-month capacity factor capacity factor since jan 2015 age (y) installed capacity (mw) quantiles to hide belwind 35.6% 38.3% 8 165 nobelwind 29.4% 29.4% 0.6 165 northwind 38.4% 42.9% 3.5 216 thorntonbank ne 30.5% 33.0% 4.9 159 thorntonbank sw 35.3% 36.6% 0.6-4.9 175 load duration curves i’ve constructed for each of the offshore windfarms for which there is sufficient detailed hourly data (this will usually mean at least a year’s worth). use the pause and play buttons to stop and start the sequential display of curves. click on the windfarm name in the legend to toggle the display of that farm’s curve. methodology note that for each individual windfarm, its curve is based on data starting from the date that the windfarm was fully commissioned, or from 1 jan 2015, whichever is later: data is only available from 2015 onwards. the windfarm’s age is calculated from the date it was fully commissioned. the thornton bank windfarm was built out in three phases, i-ii-iii. however, the hourly data is broken down into two groups, sw and ne. as you can see from this map, courtesy of 4coffshore , most of phase ii is in the ne section. the sw section contains the rest of phase ii, as well as all of phases i and iii. my thanks to rémi_c2w on twitter for solving the mystery of the northwind time-series in the entsoe data: he worked out that the reported data is the sum of output from both northwind and nobelwind: so the real northwind output can be calculated by subtracting the reported nobelwind output from it. comments closed a plurality of wind: a landmark on the road to cleaner electricity posted by andrew – 2016/01/11 on 17 december 2015 britain passed a new landmark on the road to cleaner electricity: for four hours, from 03.00 to 07.00, the grid had a plurality of wind: wind was the largest generation type on the grid: there was more wind generation than generation in britain from gas, or from coal, or from nuclear, or any other domestic source. that was the case for the four hours as a whole, and for each half-hour within that four-hour period. read more… category: offshore wind , onshore wind comments closed 100% renewables: there’s more than enough space posted by andrew – 2015/12/15 is land area a barrier, or a significant constraint, to achieving 100% renewables? read more… category: offshore wind , onshore wind , potential resource comments closed another booming year for chinese renewables posted by andrew – 2015/01/17 from china’s 2014 energy statistics : new renewable capacity outstripped new coal capacity; additional output from renewables (the increase in output in 2014 over 2013) was greater than the total output from nuclear; total generation from hydro, wind and solar all went up; total generation from fossil thermal plant went down; coal & gas consumption for electricity went down. and so to the detail. half of the 104 gw of new capacity is renewables; 47 gw is thermal plant (predominantly coal and fossil gas) and 5 gw is nuclear. 22gw of the renewable capacity is hydro, 20 gw wind, and 11 gw solar. i’ve updated this post on 2015-03-12 with the more specific statistics now available from china . generation from wind increased to 17.88gw (average elec

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Domain Name: ENERGYNUMBERS.INFO
Registry Domain ID: D28046383-LRMS
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Registrar URL: www.easyspace.com
Updated Date: 2017-02-16T16:15:24Z
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