The impact of sulfur precipitation in developing a sour gas reservoir with pressure-sensitive effects
During the development of high sulfur gas fields, gaseous sulfur is likely to precipitate and deposit in the reservoirs due to the changes of temperature, pressure, and gas compositions. Therefore, how to establish an accurate prediction model of elemental sulfur solubility in gas mixtures is a key...
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2019-09-01
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doaj-172ef830a7dd408c9e5af2b1eae218312020-11-25T03:21:40ZengYandy Scientific PressAdvances in Geo-Energy Research2208-598X2208-598X2019-09-013326827610.26804/ager.2019.03.05The impact of sulfur precipitation in developing a sour gas reservoir with pressure-sensitive effectsZhixing Ru0Kang An1Jinghong Hu2Beijing Key Laboratory of Unconventional Natural Gas Geology Evaluation and Development Engineering, School of Energy Resources, China University of Geosciences, Beijing 100083, P. R. ChinaBeijing Key Laboratory of Unconventional Natural Gas Geology Evaluation and Development Engineering, School of Energy Resources, China University of Geosciences, Beijing 100083, P. R. ChinaBeijing Key Laboratory of Unconventional Natural Gas Geology Evaluation and Development Engineering, School of Energy Resources, China University of Geosciences, Beijing 100083, P. R. ChinaDuring the development of high sulfur gas fields, gaseous sulfur is likely to precipitate and deposit in the reservoirs due to the changes of temperature, pressure, and gas compositions. Therefore, how to establish an accurate prediction model of elemental sulfur solubility in gas mixtures is a key issue. At present, most scholars use Roberts elemental sulfur solubility model (SPE Reserv. Eng. 1997, 12(2): 118-123) to describe the damage caused by sulfur deposition in high-sulfur gas reservoirs. However, some scholars believe that the Roberts model needs to be improved and relevant works have been done. In this study, a one-dimensional radial production model is established using the HU model (J. Nat. Gas. Sci. Eng. 2014, 18: 31-38) and the Roberts elemental sulfur solubility model. These models can be used to describe the permeability and pressure changes caused by sulfur deposition more accurately. The results show that the permeability and pressure changes in the Roberts model are larger than that of which in the HU model and the pressure-sensitive effects may increase the reservoir damage. The comparison of the calculated results with the true values shows that the HU model is more accurate. This paper may change a number of views about sulfur deposition in high-sulfur gas reservoirs.https://www.yandy-ager.com/index.php/ager/article/view/142High-sulfur gaselemental sulfur solubilitysulfur depositionpressure-sensitive effectsmathematical model |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Zhixing Ru Kang An Jinghong Hu |
spellingShingle |
Zhixing Ru Kang An Jinghong Hu The impact of sulfur precipitation in developing a sour gas reservoir with pressure-sensitive effects Advances in Geo-Energy Research High-sulfur gas elemental sulfur solubility sulfur deposition pressure-sensitive effects mathematical model |
author_facet |
Zhixing Ru Kang An Jinghong Hu |
author_sort |
Zhixing Ru |
title |
The impact of sulfur precipitation in developing a sour gas reservoir with pressure-sensitive effects |
title_short |
The impact of sulfur precipitation in developing a sour gas reservoir with pressure-sensitive effects |
title_full |
The impact of sulfur precipitation in developing a sour gas reservoir with pressure-sensitive effects |
title_fullStr |
The impact of sulfur precipitation in developing a sour gas reservoir with pressure-sensitive effects |
title_full_unstemmed |
The impact of sulfur precipitation in developing a sour gas reservoir with pressure-sensitive effects |
title_sort |
impact of sulfur precipitation in developing a sour gas reservoir with pressure-sensitive effects |
publisher |
Yandy Scientific Press |
series |
Advances in Geo-Energy Research |
issn |
2208-598X 2208-598X |
publishDate |
2019-09-01 |
description |
During the development of high sulfur gas fields, gaseous sulfur is likely to precipitate and deposit in the reservoirs due to the changes of temperature, pressure, and gas compositions. Therefore, how to establish an accurate prediction model of elemental sulfur solubility in gas mixtures is a key issue. At present, most scholars use Roberts elemental sulfur solubility model (SPE Reserv. Eng. 1997, 12(2): 118-123) to describe the damage caused by sulfur deposition in high-sulfur gas reservoirs. However, some scholars believe that the Roberts model needs to be improved and relevant works have been done. In this study, a one-dimensional radial production model is established using the HU model (J. Nat. Gas. Sci. Eng. 2014, 18: 31-38) and the Roberts elemental sulfur solubility model. These models can be used to describe the permeability and pressure changes caused by sulfur deposition more accurately. The results show that the permeability and pressure changes in the Roberts model are larger than that of which in the HU model and the pressure-sensitive effects may increase the reservoir damage. The comparison of the calculated results with the true values shows that the HU model is more accurate. This paper may change a number of views about sulfur deposition in high-sulfur gas reservoirs. |
topic |
High-sulfur gas elemental sulfur solubility sulfur deposition pressure-sensitive effects mathematical model |
url |
https://www.yandy-ager.com/index.php/ager/article/view/142 |
work_keys_str_mv |
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