Academic literature on the topic 'Additional groundwater replenishment'

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Journal articles on the topic "Additional groundwater replenishment"

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Sierikova, Olena, Elena Strelnikova, and Kyryl Degtyariov. "Underground Water Resources Management for Flooding Prevention." Modeling Control and Information Technologies, no. 6 (November 22, 2023): 207–9. http://dx.doi.org/10.31713/mcit.2023.063.

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Technogenic factors that affect urban area flooding development, forecasts of improving groundwater level changes, and comprehensive management of urban groundwater must be taken into account and controlled. A three-dimensional mathematical model of groundwater level changes in cities has been developed, which takes into account atmospheric water infiltration, additional groundwater replenishment, transpiration, evaporation, evapotranspiration, and groundwater intake.
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Carry, Charles W., Robert P. Miele, Robert W. Horvath, and Margaret H. Nellor. "An Update on Wastewater Reclamation Research and Development in Los Angeles County." Water Science and Technology 21, no. 6-7 (1989): 409–19. http://dx.doi.org/10.2166/wst.1989.0243.

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The Sanitation Districts of Los Angeles County have actively conducted over 25 years of research associated with wastewater reclamation and reuse. Projects have included treatment process evaluations for removal of total dissolved solids, nitrogen, phosphate, heavy metals, organics, bacteria and viruses. Additional research has evaluated the health significance of using treated wastewater for replenishment of potable groundwater aquifers. Results of these various research projects are presented along with recommendations by the State of California Scientific Advisory Panel on Groundwater Recha
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Sierikova, Olena, Volodymyr Koloskov, and Elena Strelnikova. "The groundwater level changing processes modeling in 2D and 3D formulation." Acta Periodica Technologica, no. 53 (2022): 36–47. http://dx.doi.org/10.2298/apt2253036s.

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The objective of this study was to develop a mathematical model to determine the tendency of the groundwater level changes under the influence of external factors to prevent environmentally hazardous impacts and emergency situations. Mathematical methods (analytical solution of differential filtration equations involved the computer program Maple) - for creation the groundwater level changes model, methods of ecological and economic assessment and comparative analysis - for the identification of groundwater level impact important factors and groundwater level impact on the environment, balance
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Ba Dung, Nguyen, and Dang Tuyet Minh. "Land use hierarchical mapping for delineation of groundwater potential zones in the Ba river basin using satellite imagery and GIS technology." IOP Conference Series: Earth and Environmental Science 1383, no. 1 (2024): 012012. http://dx.doi.org/10.1088/1755-1315/1383/1/012012.

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Abstract The evaluation of groundwater potential is crucial for the best use and replenishment of groundwater resources, as well as for the appropriate growth and administration of a region. To study groundwater potential, it is necessary to analyze the factors that directly affect this resource. In addition to the criteria that contribute to the formation of groundwater, such as rainfall, land cover, geology, slope, etc., land use types and their infiltration capacity are also the main factors affecting the groundwater prospect. In recent years, remote sensing and geographic information syste
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Vinh, Dang Hoa, Dung Duc Tran, Dao Dinh Cham, et al. "Integrated Exploitation of Rainwater and Groundwater: A Strategy for Water Self-Sufficiency in Ca Mau Province of the Mekong Delta." Hydrology 11, no. 4 (2024): 55. http://dx.doi.org/10.3390/hydrology11040055.

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Groundwater sources have been exploited excessively for numerous purposes worldwide, leading to increasingly severe depletion. However, the replenishment of groundwater sources has not usually been a focus in economically and socially underdeveloped countries and regions. In coastal provinces of the Vietnamese Mekong Delta (VMD), rural areas are facing difficulties in accessing fresh water due to shortages from the water supply plant and excessive use of groundwater, highlighting an urgent need for sustainable development solutions. Our study first conducted interviews with 200 households in C
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Salam, Muhammad, Muhammad Jehanzeb Masud Cheema, Wanchang Zhang, et al. "GROUNDWATER STORAGE CHANGE ESTIMATION USING GRACE SATELLITE DATA IN INDUS BASIN." Big Data In Water Resources Engineering (BDWRE) 1, no. 1 (2020): 10–15. http://dx.doi.org/10.26480/bdwre.01.2020.10.15.

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Over exploitation of Ground Water (GW) has resulted in lowering of water table in the Indus Basin. While waterlogging, salinity and seawater intrusion has resulted in rising of water table in Indus Basin. The sparse piezometer network cannot provide sufficient data to map groundwater changes spatially. To estimate groundwater change in this region, data from Gravity Recovery and Climate Experiment (GRACE) satellite was used. GRACE measures (Total Water Storage) TWS and used to estimate groundwater storage change. Net change in storage of groundwater was estimated from the change in TWS by incl
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Giunti, Giuseppe, and Daniel Miczek. "Benefits of pervious concrete for urbanized habitats." Acta Polytechnica CTU Proceedings 33 (March 3, 2022): 188–92. http://dx.doi.org/10.14311/app.2022.33.0188.

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Pervious (draining) concrete is a new generation concrete which, for its structure, allows rainwater to enter the subsoil and at the same time is determining the final surface without the need for any additional layer. Pervious concrete allows to drain off up to 95 % of precipitation, which represents a significant contribution to ecology and sustainability. Therefore, its use is particularly suitable in city parks, bike paths, in the vicinity of apartment buildings, swimming pools and parking lots. Rainwater is not purposelessly be drained by the city sewer system, but it is absorbed directly
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Giunti, Giuseppe, and Daniel Miczek. "Benefits of Pervious Concrete for Urbanized Habitats." Modern Environmental Science and Engineering 8, no. 1 (2022): 25–31. http://dx.doi.org/10.15341/mese(2333-2581)/01.08.2022/003.

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Pervious (draining) concrete is a new generation concrete which, for its structure, allows rainwater to enter the subsoil and at the same time is determining the final surface without the need for any additional layer. Pervious concrete allows to drain off up to 95% of precipitation, which represents a significant contribution to ecology and sustainability. Therefore, its use is particularly suitable in city parks, bike paths, in the vicinity of apartment buildings, swimming pools and parking lots. Rainwater is not purposelessly be drained by the city sewer system, but it is absorbed directly
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Piayda, A., M. Dubbert, C. Rebmann, et al. "Drought impact on carbon and water cycling in a Mediterranean <i>Quercus suber</i> L. woodland during the extreme drought event in 2012." Biogeosciences 11, no. 24 (2014): 7159–78. http://dx.doi.org/10.5194/bg-11-7159-2014.

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Abstract. Savannah-type ecosystems account for 26–30% of global gross primary productivity GPP, with water being one of the major driving factors. In Europe, savannah-type woodlands cover an area of about 1.5 million ha. Here, the recent past has shown a significant decrease in precipitation P in winter and spring as well as a decrease in total annual precipitation. Strong effects on local water balance and carbon sink strength have thus been reported due to changes in precipitation regime. The objective of this study is to quantify the impact of the extreme drought event in 2012 on the water
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Трегубов, О. Д., Б. И. Гарцман, В. В. Шамов, Л. С. Лебедева, and А. М. Тарбеева. "Response of streams and suprapermafrost waters of the Anadyr lowland to atmospheric pressure drop." Гидросфера. Опасные процессы и явления 3, no. 3 (2022): 297–309. http://dx.doi.org/10.34753/hs.2021.3.3.297.

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В статье представлены результаты исследования источников питания и суточного режима стока рек и ручьев Анадырской низменности в меженный период 2019 года. На примере полевых материалов рассмотрена проблема воздействия скачков атмосферного давления на водно-физические свойства торфяных почв и режим стока малых рек низменностей криолитозоны. Установлено, что суточный перепад атмосферного давления амплитудой 1,2 кПа в районе реки Угольная-Дионисия, расположенной в границах Анадырской низменности на Чукотке, привел к синхронному понижению, а затем повышению уровня надмерзлотных подземных и поверхн
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Dissertations / Theses on the topic "Additional groundwater replenishment"

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Сєрікова, О. М. "Прогнозування і управління рівнем ґрунтових вод для підвищення екологічної безпеки забудованих територій України". Thesis, Харківський національний університет міського господарства ім. О.М. Бекетова, 2019. http://essuir.sumdu.edu.ua/handle/123456789/72650.

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Дисертація присвячена підвищенню рівня екологічної безпеки урбанізованих територій, що зазнають підтоплення ґрунтовими водами, за рахунок наукового обґрунтування методів та засобів прогнозування та управління підтопленням. Підтоплення територій не тільки негативно впливає на життєдіяльність населення, а і може привести до виникнення екологічних катастроф та значних матеріальних збитків. Вперше розроблено крайові умови математичної моделі зміни рівня ґрунтових вод, що враховують вплив штучних покриттів поверхні ґрунту і евапотранспірацію для вдосконалення прогнозів та управління рівнем ґрунтов
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Book chapters on the topic "Additional groundwater replenishment"

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Xu Y.S., Shen S.L., and Chai J.C. "Cutoff Effect on Groundwater Seepage of Underground Structure in Aquifers." In Information Technology in Geo-Engineering. IOS Press, 2010. https://doi.org/10.3233/978-1-60750-617-1-623.

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The Quaternary deposit in Shanghai is composed of an alternated multi-aquifer-aquitard system (MAAS) with aquitard over aquifer one another. In the MAAS groundwater system, any drawdown of groundwater head of lower aquifer will cause the consolidation of overburden aquitard. If the underground infrastructure is built in the aquifers, the balanced ground water seepage route will alternate and drawdown will occur in the greater depth of flow, which will cause additional subsidence and unbalancing load on the structures. In order to investigate this impact, a series of numerical analyses are cond
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Conference papers on the topic "Additional groundwater replenishment"

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Matovu, Stewart, Ahmed Abdulhamid Mahmoud, and Talal Al Shafloot. "High-Performance Lightweight Cements: A Review." In 58th U.S. Rock Mechanics/Geomechanics Symposium. ARMA, 2024. http://dx.doi.org/10.56952/arma-2024-0946.

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ABSTRACT: The pursuit of high-performance lightweight formulations in well cementing plays a crucial role in the oil and gas sector. This paper provides a comprehensive examination of the development and practical application of lightweight cement formulations, focusing on their essential attributes and impact on the industry. Through research findings and real-world case studies, the paper investigates the formulation process, material selection, and application techniques. It highlights the promising advantages of lightweight cement formulations, emphasizing their effectiveness in reducing h
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