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1.


   
    Generalized refractive mixing dielectric model of moist soils considering ionic relaxation of soil water / V. L. Mironov [et al.] // Rus. Phys. J. - 2013. - Vol. 56, Is. 3. - P. 319-324DOI 10.1007/s11182-013-0034-4
Аннотация: A generalized multi-relaxation refractive mixing dielectric model of moist soils is suggested for frequencies in the range from 0.2 to 14.8 GHz. The model is based on dielectric measurements in this frequency range at a temperature of 20A degrees D for relative moisture content (by weight) changing from 2 to 43%. The model expands the range of applicability of the single-relaxation model suggested previously to the megahertz frequency range with allowance for the Maxwell-Wagner ionic relaxation which is clearly manifested in this frequency range for bound soil water. It is demonstrated that the error in calculating the complex dielectric permittivity spectra of the moist soil has the same order of magnitude as the error of experimental data used for model construction.

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Публикация на русском языке Обобщенная рефракционная диэлектрическая модель влажных почв, учитывающая ионную релаксацию почвенной воды // Известия высших учебных заведений. Физика. - 2013. - Т. 56, № 3. - С. 75-79

Держатели документа:
Russian Acad Sci, Siberian Branch, LV Kirenskii Inst Phys, Krasnoyarsk, Russia
Omsk State Pedag Univ, Omsk, Russia
Academician MF Reshetnev Siberian State Aerosp Un, Krasnoyarsk, Russia

Доп.точки доступа:
Mironov, V. L.; Миронов, Валерий Леонидович; Bobrov, P. P.; Fomin, S. V.; Фомин, Сергей Викторович; Karavaiskii, A. Yu.; Каравайский, Андрей Юрьевич
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2.


    Mironov, V. L.
    Multirelaxation generalized refractive mixing dielectric model of moist soils / V. L. Mironov, P. P. Bobrov, S. V. Fomin // IEEE Geosc. Remote Sens. Letters. - 2013. - Vol. 10, Is. 3. - Ст. 6332477. - P. 603-606, DOI 10.1109/LGRS.2012.2215574 . - ISSN 1545-598X
   Перевод заглавия: Многорелаксационная обобщенная рефракционная диэлектрическая модель влажных почв
Кл.слова (ненормированные):
Bound soil water -- dielectric model -- dielectric relaxations -- dielectric spectra -- free soil water -- moist soil -- Bound waters -- Complex dielectric constant -- Debye relaxation -- Dielectric models -- Dielectric spectra -- Dipole relaxation -- Frequency ranges -- Gigahertz frequencies -- Gigahertz range -- Moist soil -- Soil water -- Spectroscopic parameters -- Water molecule -- Dielectric relaxation -- Mixing -- Molecules -- Soil moisture -- Geologic models
Аннотация: In this letter, a multirelaxation generalized refractive mixing dielectric model (GRMDM) for moist soil is proposed and substantiated in the frequency range from 0.04 to 26.5 GHz. This model is based on the methodology of a single-relaxation GRMDM which accounts only for the dipole relaxation of water molecules in the gigahertz frequency range. The proposed multirelaxation GRMDM takes into account both the dipole (Debye) and ionic (Maxwell-Wagner) relaxations of soil water molecules. For this purpose, it uses a two-frequency Debye relaxation equation for the dielectric spectra of bound water. The spectroscopic parameters of the multirelaxation GRMDM were derived by fitting the spectra calculated by this model to the respective measured ones. The main advantage of this model is that it predicts the complex dielectric constant of moist soils throughout the megahertz and gigahertz frequency ranges with the same error as the single-relaxation GRMDM does only in the gigahertz range.

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Держатели документа:
Russian Acad Sci, LV Kirensky Phys Inst, Siberian Branch, Krasnoyarsk 660036, Russia
Siberian State Aerosp Univ, Krasnoyarsk 660014, Russia
Omsk State Pedag Univ, Omsk 644099, Russia

Доп.точки доступа:
Bobrov, P. P.; Fomin, S. V.; Фомин, Сергей Викторович; Миронов, Валерий Леонидович
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3.


    Mironov, V. L.
    Dielectric model of moist soils with varying clay content in the 0.04 to 26.5 GHz frequency range / V. L. Mironov, P. P. Bobrov, S. V. Fomin // Int. Sib. Conf. on Control and Communicat. : Proc. - 2013. - Ст. 6693613, DOI 10.1109/SIBCON.2013.6693613. - This work was supported by the Program of the Siberian Branch of the Russian Academy of Sciences, 2013-2016. Project II.12.1.1. . - ISSN 978-1-479. - ISSN 978-14799
Кл.слова (ненормированные):
moist soil -- dielectric model -- dielectric spectra -- dielectric relaxations -- bound soil water -- free soil water
Аннотация: In this paper, a soil texture dependent multirelaxation generalized refractive mixing dielectric model (MR GRMDM) for moist soils was developed. The model provides for complex permittivity of moist soils in both the gigahertz and megahertz frequency ranges, namely, from 40 MHz to 26.5 GHz.

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Доп.точки доступа:
Bobrov, P. P.; Fomin, S. V.; Фомин, Сергей Викторович; Миронов, Валерий Леонидович; International Siberian Conference on Control and Communications(10 ; 2013 ; Sept. 12-13 ; Krasnoyarsk)
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4.


    Бобров, Павел Петрович.
    Алгоритм восстановления влажности почв по радиояркостной температуре, измеренной спутником smos и его сравнение со штатным алгоритмом SMOS / П. П. Бобров, В. Л. Миронов, А. С. Ященко // Изв. вузов. Физика. - 2012. - Т. 55, № 8/3. - С. 145-148
Аннотация: На основании изучения данных уровней 1с и 2 спутника SMOS по территории юга Западной Сибири за период с 29.09.10 г. по 10.11.11г., периодических наземных измерений яркостной температуры на частоте 1,4 ГГц и прямых измерений влажности сделаны выводы об основных недостатках данных уровня Level 2. Предложен простой алгоритм дистанционного определения влажности почв по значениям яркостной температуры на уровне Level 1c и проведено его тестирование с использованием данных о влажности почвы, приводимых на уровне Level 2, и отдельными результатами прямых измерений влажности.

Держатели документа:
Институт физики им. Л.В. Киренского СО РАН

Доп.точки доступа:
Миронов, Валерий Леонидович; Mironov, V. L.; Ященко, Александр Сергеевич; Bobrov P.P.
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5.


    Бобров, Павел Петрович.
    Статистический анализ данных спутника SMOS о яркостной температуре территории юга Омской области и Северного Казахстана / П. П. Бобров, В. Л. Миронов, А. С. Ященко // Изв. вузов. Физика. - 2012. - Т. 55, № 8/3. - С. 142-144
Кл.слова (ненормированные):
микроволновая радиометрия -- влажность почв
Аннотация: Изучено около 400 радиометрических снимков SMOS на частоте 1,4 ГГц. Проведен анализ данных уровня 1с, привязанных к координатной сетке и обработанных с учётом влияния атмосферы. Обнаружено, что значительные отклонения от стандартной угловой зависимости наблюдаются для территории Северного Казахстана. Показано, что для этой же территории наблюдаются аномально высокие значения яркостной температуры (более 400 К). Проведен анализ временных рядов яркостной температуры в периоды оттаивания и высыхания почвы. Выявлено отклонение значений диэлектрической проницаемости почвы, приводимых на Level 2, от измеренных в лабораторных условиях.

Держатели документа:
Институт физики им. Л.В. Киренского СО РАН

Доп.точки доступа:
Миронов, Валерий Леонидович; Mironov, V. L.; Ященко, Александр Сергеевич; Bobrov P.P.
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6.


   
    Comparison of Two Retrieval Soil Moisture Algorithms on SMOS Data / P. P. Bobrov [и др.] // IEEE International Geoscience and Remote Sensing Symposium (IGRASS) : Proceedings. - Munich, 2012. - P1131-1134, DOI 10.1109/IGARSS.2012.6351349 . - ISBN 978-1-4673-1159-5
Аннотация: We made the conclusion about the main deficiencies of the SMOS data Level 1c and Level 2 for the south part of Western Siberia. This was done for the period from 12.07.10 to 10.11.11 by studying SMOS data, periodic ground base measurements of the brightness temperature at 1.4 GHz and ground base measurements of moisture. We developed a simple algorithm for remote retrieval of soil moisture using data of brightness temperature given at SMOS Level 1c, compared the data of soil moisture, given at SMOS Level 2 with data calculated by our algorithm and in situ measurements of moisture.

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Доп.точки доступа:
Bobrov, P. P.; Mironov, V. L.; Миронов, Валерий Леонидович; Yashchenko, A. S.; Kosolapova, L. G.; Косолапова, Людмила Георгиевна; IEEE International Geoscience and Remote Sensing Symposium (2012 ; July ; 22-27 ; Munich, Germany)
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7.


    Mironov, V. L.
    Multi-relaxation generalized refractive mixing dielectric model of moist soils / V. L. Mironov, P. P. Bobrov, S. V. Fomin // IEEE International Geoscience and Remote Sensing Symposium (IGRASS) : Proceedings. - Munich, 2012. - P. 5177-5179, DOI 10.1109/IGARSS.2012.6350887 . - ISBN 978-1-4673-1159-5
Аннотация: In this paper, a multi-relaxation generalized refractive mixing dielectric model (GRMDM) for moist soil is proposed and substantiated in the frequency range from 0.03 to 26.5 GHz. This model is based on the GRMDM of [1] developed in the range of GHz frequencies, considering only the dipole relaxation of water in the soil. The error of this model was shown to noticeably increase with the transition to the MHz range. Because in this range, one more relaxation, that is, ionic (Maxwell-Wagner) relaxation largely affects on the complex dielectric constant. The multi-frequency relaxation GRMDM developed in this paper compensates for this disadvantage of the single-relaxation GRMDM. In this model, the two-frequency relaxation Debye equation for the dielectric spectra of bound water has been used, thus expanding the scope of the GRMDM to the MHz range. The main advantage of this model is that it predicts complex dielectric constant of moist soils simultaneously in the GHz and MHz ranges.

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Доп.точки доступа:
Bobrov, P. P.; Fomin, S. V.; Фомин, Сергей Викторович; Миронов, Валерий Леонидович; IEEE International Geoscience and Remote Sensing Symposium (2012 ; July ; 22-27 ; Munich, Germany)
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8.


    Bobrov, P. P.
    Dielectric permittivity spectra of oil-water-saturated sandy-clayey rocks of different mineralogical compositions and relaxation properties of water in these rocks / P. P. Bobrov, V. L. Mironov, A. V. Repin // Russ. Geol. Geophys. - 2015. - Vol. 56, Is. 7. - P. 1065-1073, DOI 10.1016/j.rgg.2015.06.007. - Cited References: 21. - This work was supported by RFBR (grant nos. 12-05-00502a and 14-05-00151a). . - ISSN 1068-7971
РУБ Geosciences, Multidisciplinary
Рубрики:
MOIST SOILS
   FREQUENCY

   MODEL

   TEMPERATURE

   SALINITY

   RANGE

   GHZ

Кл.слова (ненормированные):
Conductivity -- Dielectric permittivity -- Multifrequency dielectric relaxation -- Oil-bearing deposits -- Sandy-clayey rocks
Аннотация: Experimental measurements of the dielectric permittivity and equivalent conductivity of sandy-clayey samples (a mixture of river sand with bentonite or kaolin) saturated with salt-solution-diesel-fuel emulsions were performed in the frequency range from 10 kHz to 1 GHz at temperatures of 25-65 °C. It is shown that when the content of the salt solution in the saturating fluid does not exceed 10%, the dielectric permittivity in the frequency range from 1 MHz to 1 GHz depends little on the mineral composition of the sample and on the concentration of the saturating solution. When the portion of water is 33.3% or higher, increasing the concentration of the salt solution leads to an increase in the equivalent conductivity and the real part of the complex dielectric permittivity. Using the refractive model of the complex dielectric permittivity, we have estimated the dielectric properties of bound water, which depend on temperature and the type of clay (bentonite or kaolin) in the sand-clay mixture but are independent of the water saturation and the amount of clay in the sample.

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Публикация на русском языке Бобров, Павел Петрович. Спектры диэлектрической проницаемости нефтеводонасыщенных песчано-глинистых пород различного минералогического состава и релаксационные свойства воды в этих породах [Текст] / П. П. Бобров, В. Л. Миронов, А. В. Репин // Геол. и геофиз. - Новосибирск : Изд-во СО РАН, 2015. - Т. 56 № 7. - С. 1359-1368

Держатели документа:
Omsk State Pedagogical University, Naberezhnaya im. Tukhachevskogo 14, Omsk, Russian Federation
L.V. Kirenskii Institute of Physics, Siberian Branch of the Russian Academy of Sciences, Akademgorodok 50, str. 38, Krasnoyarsk, Russian Federation
M.F. Reshetnev Siberian State Aerospace University, pr. im. Gazety Krasnoyarskii Rabochii 31, Krasnoyarsk, Russian Federation

Доп.точки доступа:
Mironov, V. L.; Миронов, Валерий Леонидович; Repin, A. V.; RFBR [12-05-00502a, 14-05-00151a]
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9.


    Yashchenko, A. S.
    The use of navigation satellites signals for measurement the absorbance of the forest canopy / A. S. Yashchenko, P. P. Bobrov, V. L. Mironov // Progress in Electromagnetics Research Symposium - Spring : IEEE, 2017. - P. 1227-1231, DOI 10.1109/PIERS.2017.8261936. - Cited References:5. - This research was supported by the Russian Foundation for Basic Research, project 16-35-50182 mol_nr. . - ISBN 978-1-5090-6269-0
РУБ Engineering, Electrical & Electronic

Аннотация: The results of measurement of the electromagnetic wave attenuation by the forest canopy at L-band are presented. The soil moisture mapping with reasonable accuracy in a global scale is only possible using the data of satellite radiometers at L-band frequency (SMOS and SMAP remote sensing programs). In the process of soil moisture retrieval from remote sensing data it is necessary to know the state of ecosystems on the Earth's surface. Forests are one of the dominant terrestrial ecosystems of Earth covering a large area of the surface. The attenuation coefficient of the forest canopy has high value even at L-band frequency. In the absence of forest canopy attenuation data the error of retrieval of the soil moisture for woodlands areas will have very high values. For this reason the emissivity model of Earth surface needs a priory data of the emissive and attenuate properties of the forest cover. One of methods of measurement of forest canopy attenuation coefficient at L-band frequency is using the signals of Global Navigation Satellite System (GNSS). Measurement showed that for elevation angle of 50 and 35 degrees the attenuation has a value range of -6 -10 dB and -10 -15 dB respectively. This makes it possible to claim that under certain conditions the soil radiothermal emission can make a noticeable contribution to the overall emission of surface covered forest. The results obtained in the measurement can be used in SMOS and SMAP sub-pixel data processing.

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Держатели документа:
Omsk State Pedag Univ, Omsk, Russia.
RAS, SB, Kirensky Inst Phys, Krasnoyarsk, Russia.

Доп.точки доступа:
Bobrov, P. P.; Mironov, V. L.; Миронов, Валерий Леонидович; Russian Foundation for Basic Research [16-35-50182 mol_nr]; Progress in Electromagnetics Research Symposium - Spring 2017(May 22-25, 2017 ; St Petersburg)
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10.


   
    Microwave Dielectric Spectroscopy of Moist Soils for a Forest-tundra Region / V. L. Mironov, P. P. Bobrov, A. P. Bobrov [et al.] // IEEE International Geoscience and Remote Sensing Symposium (IGRASS) : Proceedings. - Seoul, 2005. - Vol. 6. - Ст. 1525917. - P. 4485-4488, DOI 10.1109/igarss.2005.1525917. - Библиогр.: 8 . - ISBN 978-078039050-8
Аннотация: In this paper, the measured microwave dielectric data are presented for some soils collected in the forest-tundra area located at 64° N and 100° E, which is near the city of Tura in East Siberia. The measurements were developed in the range from 0.3 to 12.5 GHz at the temperature of 24°C. The Debye spectroscopic parameters related to the bound soil water (BSW) and free soil water (FSW) were derived with the use of the generalized refractive mixing dielectric model (GRMDM) [1], [2]. The foresttundra soils analyzed were found to contain the smaller percentage of bound water, with its complex dielectric constant (CDC) being less than that of the soils in the agricultural zones of Siberia [3]-[5], in spite of the fact that the forest-tundra soils demonstrated smaller clay and humus percentage as compared to the agricultural soils. The results obtained can be considered as a substantial contribution to the soil dielectric data base for the northern circumpolar region, which is a compulsory element of physically based both the remote sensing models and retrieving algorithms.

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Доп.точки доступа:
Mironov, V. L.; Миронов, Валерий Леонидович; Bobrov, P. P.; Bobrov, A. P.; Mandrygina, V. N.; Stasuk, V. D.; IEEE International Geoscience and Remote Sensing Symposium(25 ; 2005 ; July ; 25-29 ; Seoul, South Korea)
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