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Monitoring of Methane Bubble Seepage and Hydrological Parameters in Laspi Bay (Crimea)
The work is dedicated to the study of the temporal variability of shallow methane seepage activity in the coastal area of Laspi Bay and the high-frequency monitoring of daily dynamics of hydrological parameters on this site. The paper presents the results obtained during the summer months of 2016, 2...
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Published in: | Moscow University physics bulletin 2023-08, Vol.78 (4), p.571-577 |
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container_title | Moscow University physics bulletin |
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creator | Budnikov, A. A. Ivanova, I. N. Khurchak, A. I. Malakhova, T. V. |
description | The work is dedicated to the study of the temporal variability of shallow methane seepage activity in the coastal area of Laspi Bay and the high-frequency monitoring of daily dynamics of hydrological parameters on this site. The paper presents the results obtained during the summer months of 2016, 2018–2021, and in early February 2023. Using the passive acoustic method, it is shown that the intensity and periodicity of bubble gas emissions from individual seep sources can vary throughout the day and from season to season. It is found that the active seepage area exhibits drop in dissolved oxygen content and saturation compared to a distant (background) area. Moments of sharp decrease in oxygen content, not accompanied by changes in temperature and other hydrological parameters, are noted. |
doi_str_mv | 10.3103/S0027134923040057 |
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A. ; Ivanova, I. N. ; Khurchak, A. I. ; Malakhova, T. V.</creator><creatorcontrib>Budnikov, A. A. ; Ivanova, I. N. ; Khurchak, A. I. ; Malakhova, T. V.</creatorcontrib><description>The work is dedicated to the study of the temporal variability of shallow methane seepage activity in the coastal area of Laspi Bay and the high-frequency monitoring of daily dynamics of hydrological parameters on this site. The paper presents the results obtained during the summer months of 2016, 2018–2021, and in early February 2023. Using the passive acoustic method, it is shown that the intensity and periodicity of bubble gas emissions from individual seep sources can vary throughout the day and from season to season. It is found that the active seepage area exhibits drop in dissolved oxygen content and saturation compared to a distant (background) area. 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It is found that the active seepage area exhibits drop in dissolved oxygen content and saturation compared to a distant (background) area. Moments of sharp decrease in oxygen content, not accompanied by changes in temperature and other hydrological parameters, are noted.</description><subject>Coastal zone</subject><subject>Dissolved oxygen</subject><subject>Emissions</subject><subject>Mathematical and Computational Physics</subject><subject>Methane</subject><subject>Monitoring</subject><subject>Oxygen content</subject><subject>Parameters</subject><subject>Physics</subject><subject>Physics and Astronomy</subject><subject>Seepage</subject><subject>Theoretical</subject><issn>0027-1349</issn><issn>1934-8460</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2023</creationdate><recordtype>article</recordtype><recordid>eNp1UE1Lw0AQXUTBWv0B3ha86CG6X0k2R1vUCi0KVa9hspnUlDQbd5ND_70bKngQTzPwPubNI-SSs1vJmbxbMyZSLlUmJFOMxekRmfBMqkirhB2TyQhHI35KzrzfBkYiZDYhHyvb1r11dbuhtqIr7D-hRTobiqJBukbsYIMU2pIu9qWzjd3UBhr6Cg522KPztG7pEnxX0xns6fXc1TuEm3NyUkHj8eJnTsn748PbfBEtX56e5_fLyIhE95HGyoAKq1GJMEoiFwa4wUKyOA6Rs1hVkPJAEmVmCm0wLUuspOasFCG_nJKrg2_n7NeAvs-3dnBtOJkLrZlW48uBxQ8s46z3Dqu8CzHB7XPO8rG-_E99QSMOGt-N5aD7df5f9A23mHBX</recordid><startdate>20230801</startdate><enddate>20230801</enddate><creator>Budnikov, A. 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The paper presents the results obtained during the summer months of 2016, 2018–2021, and in early February 2023. Using the passive acoustic method, it is shown that the intensity and periodicity of bubble gas emissions from individual seep sources can vary throughout the day and from season to season. It is found that the active seepage area exhibits drop in dissolved oxygen content and saturation compared to a distant (background) area. Moments of sharp decrease in oxygen content, not accompanied by changes in temperature and other hydrological parameters, are noted.</abstract><cop>Moscow</cop><pub>Pleiades Publishing</pub><doi>10.3103/S0027134923040057</doi><tpages>7</tpages></addata></record> |
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subjects | Coastal zone Dissolved oxygen Emissions Mathematical and Computational Physics Methane Monitoring Oxygen content Parameters Physics Physics and Astronomy Seepage Theoretical |
title | Monitoring of Methane Bubble Seepage and Hydrological Parameters in Laspi Bay (Crimea) |
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