FACTOID # 77: Moldova has one of the smallest artillery forces in Europe, and the highest rate in the world of death by powered lawnmower. Coincidence? Surely not.
 
 Home   Encyclopedia   Statistics   Countries A-Z   Flags   Maps   Education   Forum   FAQ   About 
 
WHAT'S NEW
RECENT ARTICLES
More Recent Articles »
 

SEARCH ALL

FACTS & STATISTICS    Advanced view

Search encyclopedia, statistics and forums:

 

 

(* = Graphable)

 

 


Encyclopedia > Long wave

Longwave radio frequencies are those below 500 kHz, which correspond to wavelengths longer than 600 meters. They have the property of following the curvature of the earth, making them ideal for continuous, continental communications. Unlike shortwave radio, longwave signals do not reflect or refract using the ionosphere, so there are fewer phase-caused fadeouts.


The earliest radio transmitters, including the Alexanderson alternator, were all longwave transmitters.


In Europe, North Africa and Asia, longwave radio frequencies between 153 and 279 kHz are used for domestic and international broadcasting. In the Americas, frequencies between 200 and 430 kHz are used for non-directional beacons, and do not necessarily follow the same 9 kHz spacing that other areas do.


The frequency of 60 kHz is used by several nations, such as the USA, UK, and Japan, for extremely accurate time and precision frequency signals. (77.5 kHz is used in Germany.) Many commercial appliances (such as self-setting clocks) sold since approximately 2000 have a VLF receiver capable of receiving these signals, which penetrate indoors more effectively than mediumwave or shortwave signals.


Radio signals below 50 kHz are capable of penetrating ocean depths to approximately 200 meters. The United States, Russian, British, Swedish, and Indian navies communicate with submarines on these frequencies.


In addition, Royal Navy nuclear submarines carrying ballistic missiles are allegedly under standing orders to monitor the BBC Radio 4 transmission on 198 kHz in waters near the U.K. It is rumoured that they are to construe a sudden halt in transmission as an indicator that the U.K. is under attack, whereafter their sealed orders take effect.


Longwave transmitting antennas take up large amounts of space, and have been the cause of controversy in the United States and Europe due to fears over proximity to high-power radio waves.


List of longwave broadcasting transmitters

List of the most important longwave broadcasting transmitters (Source: http://de.wikipedia.org/wiki/Langwelle  (http://de.wikipedia.org/wiki/Langwelle)).

Frequency Name of transmitter Country Location Kind of aerial Power Remarks
153 kHz Deutschlandfunk Germany Donebach directional aerial, two guyed steel framework masts, 363 m high, fed at the top 500 kW night 250 kW
Radio Romania Romania Brasov 1200 kW  
NRK Finnmark Norway Ingoy omnidirectional aerial, guyed steel framework mast of 362 m height 100 kW  
162 kHz France Inter France Allouis two guyed steel framework masts, height 350 m, fed on the top 2000 kW  
171 kHz Radio Medi Morocco Nador 1200 kW  
Radio Rossiya Russia Kaliningrad 1200 kW  
177 kHz DeutschlandRadio Berlin Germany Zehlendorf near Oranienburg reusen aerial mounted on 359.7 m high guyed mast, triangle aerial on 3 150 m high guyed steel framework masts 500 kW  
183 kHz Europe 1 Germany Felsberg directional aerial, 4 insulated guyed steel framework masts, heights: 282 m, 280 m, 26 m and 270 m 2000 kW French Program
189 kHz RUV Iceland Hellissandur omnidirectional aerial, guyed steel framework mast, height 412 m 300 kW
189 kHz RAI Italia Caltanissetta omnidirectional aerial, guyed steel framework mast, height 282 m 10 kW inactive since August 2004
198 kHz BBC Radio 4 United Kingdom Droitwich T-aerial on 2 guyed steel framework masts with a height of 213 metre 500 kW BBC World Service
BBC Radio 4 United Kingdom Burghead Guyed steel framework mast 50 kW  
BBC Radio 4 United Kingdom Westerglen Guyed steel framework mast, height 152 m 50 kW  
Radio Polonia Poland Raszyn Guyed insulated mast, 335 m high 500 kW only active at daytime
207 kHz Deutschlandfunk Germany Aholming directional aerial, two guyed steel framework masts, 265 m high, fed at the top 500 kW night 250 kW
216 kHz Radio Monte Carlo France Roumoules directional aerial, 3 300 metre high guyed steel framework masts, 330 metre high guyed steel framework mast as backup aerial 1200 kW Transmitter site exterritorial, exclave of Monaco
225 kHz Radio Polonia Poland Solec Kujawski 2 guyed radio masts fed on the top, heights 330 m and 289 m 1000 kW Earlier tranmitter site Konstantynow
234 kHz RTL Luxemburg Beidweiler directional aerial, 3 guyed grounded steel framework masts, 290 m high, with vertikal reusens 2000 kW Spare transmitter site Junglinster
243 kHz Danmarks Radio Danmark Kalundborg Alexanderson aerial, carried from 2 118 Meter high freestanding steel framework towers 300 kW  
252 kHz RTA Algier Algeria Tipaza 1500 kW French programme; during nighttime half transmitter-power
RTÉ Radio 1 Ireland Clarkestown Guyed steel framework mast, insulated against ground, height 248 m 500 kW Earlier used by Atlantic 252 and TeamTalk 252
261 kHz Transmitter Burg Germany Burg Reusen aerial on 324 m high guyed steel framework mast, 210 m high steel tube mast, insulated against ground, omnidirectional radiation 200 kW inactive at the moment
Radio Rossiya Russia Taldom 2500 kW Most powerful transmitter in the world
270 kHz ČRO 1 - Radiožurnál Czech Republic Topolna two grounded guyed steel framework mast with reusen aerials, height 257 m, directional radiation with maximum of radiation in East-West direction 500 kW  
279 kHz Musicmann279 Isle of Man ± 5 km off Ramsey Cross-field-antenna 500 kW Tests planned to begin in early 2005 pending a summer 2005 launch
BR1 Belarus Minsk 500 kW  

See also

External links

  • "Longwave Club of America (http://www.lwca.org/)".

Radio spectrum
ELF | SLF | ULF | VLF | LF/LW | MF/MW | HF/SW | VHF | UHF | SHF | EHF
3 Hz | 30 Hz | 300 Hz | 3 kHz | 30 kHz | 300 kHz | 3 MHz | 30 MHz | 300 MHz | 3 GHz | 30 GHz | 300 GHz


  Results from FactBites:
 
The Long Wave Gold Cycle (2745 words)
He summarized these findings saying that "During the period of a rising wave in the long cycles, the intermediate capitalist cycles are characterized by the brevity of depressions and the intensity of the upswings.
During the period of a downward wave in the long cycles, the picture is the opposite.
Long wave cycle theory suggests that now is the best time to invest in gold mining stocks.
Whole Earth: The Long Wave (6046 words)
That necessity is the central cause of the long wave.
In Forrester's model the long wave period is fifty to sixty years because of the combined delays of capital build-up and depreciation in both the consumer-goods and capital sectors, with the added delay of capital self-ordering.
The long wave trough is the time to ease the lot of the poor, tax away the uninvestable excess of the rich, and run deficits.
  More results at FactBites »


 

COMMENTARY     


Share your thoughts, questions and commentary here
Your name
Your comments
Please enter the 5-letter protection code

Want to know more?
Search encyclopedia, statistics and forums:

 


Lesson Plans | Student Area | Student FAQ | Reviews | Press Releases |  Feeds | Contact
The Wikipedia article included on this page is licensed under the GFDL.
Images may be subject to relevant owners' copyright.
All other elements are (c) copyright NationMaster.com 2003-5. All Rights Reserved.
Usage implies agreement with terms.