Лазерный метод обнаружения утечек из нефтепроводов - page 11

REFERENCES
[1] Patin S.A. Neft’ i ekologiya kontinental’nogo shel’fa [Oil and ecology of the
continental shelf]. Moscow, VNIRO Publ., 2001. 247 p.
[2] Drugov Yu.S., Rodin A.A.
Ekologicheskie analizy pri razlivakh nefti i
nefteproduktov [Environmental analyzes of oil and oil products spills]. Moscow,
BINOM Publ., 2007. 270 p.
[3] Vasil’eva N.
Utechki nefti v Rossii nanosyat nepopravimyy ushcherb
[Oil
spills in Russia cause irreparable damage].
Available at:
(accessed 1 June 2012).
[4] Suprunchik V.V. Bezopasnost’ truboprovodnogo transporta uglevodorodov
[Safety of pipeline transportation of hydrocarbons].
Available at:
(accessed 1 June 2012).
[5] Measures R.M. Laser remote sensing. New York, Wiley, 1984. 510 p. (Russ. ed.:
Mezheris R. Lazernoe distantsionnoe zondirovanie. Moscow, Mir Publ., 1987. 550 p.).
[6] Klimkin V.M., Sokovikov V.G., Fedorishchev V.N. New possibilities for remote
analysis of oil products on water surface.
Atmos. Oceanic Opt.
, 1993, vol. 6, no. 2,
pp. 189–204.
[7] Belov M.L., Gorodnichev V.A., Kozintsev V.I., Fedotov Yu.V., Smirnova O.A.,
Khrustaleva A.M. Detection of oil spills on the sea surface by the dual-frequency
remote laser method.
Vestn. Mosk. Gos. Tekh. Univ. im. N.E. Baumana, Ser. Priborostr.
[Herald of the Bauman Moscow State Tech. Univ. Ser. Instrum. Eng.], 2006, no. 4,
pp. 3–12 (in Russ.).
[8] Fedotov Yu.V., Belov M.L., Matrosova O.A., Gorodnichev V.A., Kozintsev V.I.
The method of detection of oil spills on the water surface based on registering
fluorescent radiation in two narrow spectrum bands.
Vestn. Mosk. Gos. Tekh. Univ.
im. N.E. Baumana, Ser. Priborostr.
[Herald of the Bauman Moscow State Tech. Univ.
Ser. Instrum. Eng.], 2010, no. 2, pp. 39–47 (in Russ.).
[9] Belov M.L., Belov A.M., Gorodnichev V.A., Kozintsev V.I. Laser method of control
for thin oil films on water surface based on measurement of first-order and second-
order derivatives of reflection coefficient.
Atmos. Oceanic Opt.
, 2011, vol. 24, no. 7,
pp. 568–571.
[10] Fedotov Yu.V., Matrosova O.A., Belov M.L., Gorodnichev V.A., Kozintsev V.I.
Experimental research of fluorescent spectrums of natural formations and oil
pollution.
Nauka Obraz. MGTU im. N.E. Baumana. Elektron. Zh.
[Sci. Educ. Bauman
Moscow State Tech. Univ. Electron. J.], 2011, no. 11 (in Russ.). Available at:
(accessed 1 Oct. 2012).
[11] Patsayeva S., Yuzhakov V., Lamotte M., Fantoni R., Lai A., Palucci A. Variation
of the UV-to-blue fluorescence ratio for organic matter in water under conditions of
fluorescence.
Proc. EARSeL-SIG-Workshop LIDAR
. Dresden, 2000, pp. 157–164.
[12] Middleton E.M., McMurtrey III J.E., Entcheva Campbell P.K., Corp L.A.,
Butcher L.M., Chappelle E.W. Optical and fluorescence properties of corn leaves
from different nitrogen regimes.
Proc. SPIE
, 2003, vol. 4879, pp. 72–83. doi:
10.1117/12.463087
[13] Glushkov S.M., Fadeev V.V., Filippova E.M., Chubarov V.V. Problems of laser
fluorometry of organic admixtures in natural water.
Atmos. Oceanic Opt.
, 1994,
vol. 7, no. 4, pp. 231–238.
[14] Orlov V.M., Samokhvalov I.V., Belov M.L., Shamanaev V.S., Klinkin V.M.,
Belokhvostikov A.V., Penner I.E., Safin R.G., Yudovskiy A.B. Distantsionnyy
kontrol’ verkhnego sloya okeana [Remote control of the upper ocean]. Novosibirsk,
Nauka Publ., 1991. 149 p.
[15] Vlasov D.V., Tsipenyuk D.Yu., Vartapetov S.K., Bukreev V.S., Obidin A.Z.
Investigation of the possibility of using an excimer KR-F laser in lidar experiments
on detection of oil films on a water surface.
Atmos. Oceanic Opt.
, 1990, vol. 3, no. 11,
pp. 1224–1225.
118 ISSN 0236-3933. Вестник МГТУ им. Н.Э. Баумана. Сер. “Приборостроение”. 2013. № 3
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