computation model
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2022 ◽  
Vol 961 (1) ◽  
pp. 012064
Author(s):  
Bayda A Dhaidan ◽  
Imzahim A Alwan ◽  
Mahmoud S Al-Khafaji

Abstract Water pollution is now a major threat to the existence of living beings. Accordingly, Water quality monitoring is an important activity toward restoring water quality. As wetland eutrophication is one of the essential ecosystem elements, devastation of this element is a significant issue. The Trophic State Index (TSI) provides information about trophic condition of water bodies. This paper aims to conduct spatiotemporal monitoring for the eutrophication of the west part of Al-Hammar Marsh for the period 2013-2020. To this end, a satellite-based TSI computation model was developed and implemented by using a series of OLI Landsat satellite images. The results showed that there was no improvement in the eutrophication state in the marsh, the percentage of the low class of TSI decreased in 2015 and 2018 to 7.9% and 2.6% and increased in 2017 and 2020 to 39.8%, and 56.3%. In general, the TSI was in the poor class in all the considered periods. Fluctuation of quantity and quality of the inflow prevents restoring the eutrophication of the marsh because this process requires stability in the levels of inundation above the critical limits for the water depth and periods. Therefore, it is necessary to find suitable alternatives to provide water drainage in quantities and quality that ensure the sustainability of the marsh ecosystem.


2021 ◽  
Vol 2021 ◽  
pp. 1-10
Author(s):  
Taoli Xiao ◽  
Yanlu Yang ◽  
Hua Cai ◽  
Shaoxin Yan ◽  
Fang Cao

Engineering practices indicate that narrow braced excavation exhibits a clear size effect. However, the slip circle method in the design codes fails to consider the effect of excavation width on basal heave stability, causing waste for narrow excavation. In this paper, numerical simulation for basal heave failure of excavation with different widths was performed by FEM with SSRT (shear strength reduction technique). The results revealed that the failure mechanism of narrow excavation is different from the complete slip circle mode. In addition, the safety factor decreases increasingly slowly as the excavation widens and stabilizes when approaching the critical width. Subsequently, the corresponding computation model was presented, and an improved SCM (slip circle method) was further developed. Finally, the engineering case illustrated that it can effectively optimize the design, which exhibits clear superiority.


2021 ◽  
Vol 7 ◽  
pp. 9133-9149
Author(s):  
Marzia Alam ◽  
Mehreen Saleem Gul ◽  
Tariq Muneer

2021 ◽  
Vol 7 (5) ◽  
pp. 816-823
Author(s):  
Jiang Nan ◽  
Xue Weixian

This paper aims to solve the strategic balance issues in tobacco industry energy markets in the post-epidemic era, based on the game theory, a strategic equilibrium model for power networks is proposed after evaluating users, power grid company in tobacco industry, and new power entities. By analyzing the claims and interests of relevant transaction subjects, an optimization computation model for tobacco industry power energy markets is constructed, meanwhile the flowchart of finding the Nash optimized solutions is also presented on basis of the genetic algorithm (GA), and the physical meaning of the Nash solutions are explained. The research results can provide some fundamental support and practical suggestions for the related aspects of the power energy markets, along with the economists who study the market design and prediction.


2021 ◽  
Author(s):  
Yuanda Wang ◽  
Ye Xia ◽  
Youlin Zhang ◽  
Dimitrios Melissourgos ◽  
Olufemi Odegbile ◽  
...  

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