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Vol 219
Pages:
421-427
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RUS
Article

Detection of floods of oil products in the sea radar-tracking means

Authors:
I. E. Ushakov
About authors
  • Ph.D., Dr.Sci. professor Saint-Petersburg Mining University
Date submitted:
2015-09-28
Date accepted:
2015-11-10
Date published:
2016-06-22

Abstract

Based on the analysis of patterns of microwave scattering from the sea surface at different angles of irradiation the features of radar detection of oil spills. The prospects of using radar to detect oil spills at oblique irradiation of the sea surface. The features of monitoring oil pollution of the sea surface using a radar located on offshore oil platforms and transport vessels. Variants of contrast enhancement areas of the sea surface covered with oil film on the radar screen. The basic requirements for the radar monitoring of oil pollution.

Область исследования:
Oil and gas
Keywords:
flood of oil products slick an oil spillage radar-tracking sounding radar-tracking contrast
10.18454/pmi.2016.3.421
Go to volume 219

References

  1. Aerokosmicheskii monitoring ob"ektov neftegazovogo kompleksa (Aerospace monitoring of oil and gas complex). Ed. by V.G.Bondura. Moscow: Nauchnyi mir, 2012, p.558.
  2. Bass F.G., Fuks I.M. Rasseyanie voln na statisticheski nerovnoi poverkhnosti (Wave scattering from statistically rough surfaces). Moscow: Nauka, 1972, p.424.
  3. Gutnik V.G., Kulemin G.P., Sharapov L.I. Osobennosti obratnogo rasseyaniya radiovoln santimetrovogo i millimetrovogo diapazonov morskoi poverkhnost'yu pri malykh uglakh skol'zheniya (Features backscattering of radio waves in the centimeter and millimeter sea surface at small grazing angles). Uspekhi sovremennoi radioelektroniki. 2005. N 1, p.3-19.
  4. Ivanov A.Yu. Sliki i plenochnye obrazovaniya na kosmicheskikh radiolokatsionnykh izobrazheniyakh (Slicks Film and education in space radar images). Issledovanie Zemli iz kosmosa. 2007. N 3, p.73-96.
  5. Istochniki zagryazneniya gidrosfery neft'yu (Sources of pollution of the hydrosphere oil) [Electronic resource]. Available at: URL: http://biofile.ru/geo/23616.html (date of access 07.07.2015).
  6. Nichiporenko N.T., Marenich I.E., Misyuchenko I.L., Petrov A.V., Trofimov B.S., Ushakov I.E. Obnaruzhenie razlivov nefteproduktov s ispol'zovaniem navi-gatsionnoi RLS (Detection of oil spills using radar navigation). Sudostroenie. 2010. N 2, p.39-41.
  7. Patent N 2483323 RF. Bulatov A.A., Marenich I.E., Misyuchenko I.L., Nichiporenko N.T., Ushakov I.E., Trofimov B.S., Yakovlev V.G. Sposob sozdaniya lokatsionnogo izobrazheniya povyshennoi yarkosti i kontrastnosti i ustroistvo dlya ego realizatsii (A method of creating rfdar images enhanced brightness and contrast, and device for its realization). Opubl. 27.05.2013. Byul. № 15.
  8. Volkov A.M., Efimov V.B., Kurekin A.S., Pichugin A.P., Prozorovskii A.A. Radiolokatsionnye issledovaniya neodnorodnostei poverkhnosti okeana (Radar studies of octan surface inhomogeneities). Uspekhi sovre-mennoi radioelektroniki. 2003. N 10, p.41-53.
  9. Sputnikovyi radarnyi monitoring morei (The satellite radar monitoring of the seas) [Electronic resource]. Available at: URL: http://zhivayakarta.rf/ru/environment/monitoring/radar/ (date of access 07.08.2014).
  10. Tekhnologiya mnogourovnevogo ekologicheskogo monitoringa v tselyakh informatsion-nogo obespecheniya bezopasnosti morskoi dobychi nefti i gaza (The technology of multi-level environmental monitoring in order to ensure information security of off shore oil and gas) [Electronic resource]. Available at: URL: http://neftegas.ru/scince/view/181 (date of access 15.05.2015).
  11. Ushakov I.E. Formirovanie radiolokatsionnykh izobrazhenii s ispol'zovaniem funktsional'nykh preobrazovanii kharakteristik otrazhennykh signalov (Radar imaging using transformations using functional characteristics of the reflected signal). Innovatsiina transporte i v mashinostroenii: Sb. tr. III mezhdunarodnoi nauchn.-praktich. Konferentsii. Natsional'nyi mineral'no-syr'evoi universitet «Gornyi». St. Petersburg, 2015, p.103-106.
  12. Ushakov I.E., Shishkin I.F. Radiolokatsionnoe zondirovanie morskoi poverkhnosti (Radar sensing of the sea surface). Moscow: RITs «Tat'yanin den'», 1997, p.264.
  13. Cherepovitsyn A.E. Sotsial'no-ekonomicheskii potentsial krupnomasshtabnykh proektov osvoeniya neftegazovogo shel'fa: riski i ozhidaniya zainteresovannykh storon (Socio-economic potential of large-scale projects to develop offshore oil and gas: risks and stakeholder expectations). Zapiski Gornogo instituta. 2015. Vol.215, p.140-149.
  14. Chen Z., Zhang B., He Y., Qiu Z., Perrie W. A new modulation transfer function for ocean wave spectra retrieval from X band marine radar imagery. Chinese of Oceanology and Limnology. 2015. Vol.33. N 5, p.1132-1141.
  15. Salberg A.-B., Rudjord O., Solberg A.H.S. Oil spill detection in hybrid-polarimetric SAR images. IEEE Transactions on Geoscince and Remote Sensing. 2014. Vol.52. N 10, p.6521-6533.
  16. Satellites oceanography and society / Ed. by D.Halpern. Elslvier, 2000. 368 p.
  17. Shishkin I.F., Ushakov I.E. Radar method of the measuring the degree of the ocean oil product pollution. Proc. of the First Symposium of the IMEKO – TC8, 9-1 september, 1981, p.354-367.

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