prof. dr hab. inż. Adam Szymkiewicz | Politechnika Gdańska

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prof. dr hab. inż. Adam Szymkiewicz

Kontakt:

email:
adams@pg.edu.pl
strona:
https://mostwiedzy.pl/adam-szymkiewicz,22976-1

Zajmowane stanowiska:

Profesor

miejsce pracy:
Katedra Geotechniki i Inżynierii Wodnej
Budynek Wydziału Inżynierii Lądowej i Środowiska - HYDRO, 312
telefon:
(58) 347 10 85

Pełnione funkcje:

Kierownik katedry

miejsce pracy:
Katedra Geotechniki i Inżynierii Wodnej
Budynek Wydziału Inżynierii Lądowej i Środowiska - HYDRO, 312

Prodziekan ds. nauki

miejsce pracy:
Wydział Inżynierii Lądowej i Środowiska
Budynek " Żelbet" pokój 110
telefon:
(58) 347 17 51, (58) 347 22 05
prof. dr hab. inż. Adam Szymkiewicz

Publikacje:

  1. Publikacja

    - SoftwareX - Rok 2024

    A new software HMSE has been developed to facilitate external coupling between two well-known programs for subsurface flow modeling: MODFLOW-2005 (saturated zone flow) and HYDRUS-1D (unsaturated zone flow). Two coupling schemes have been implemented. In the first case the groundwater recharge flux is calculated by HYDRUS-1D assuming a fixed water table position and then passed to MODFLOW input files. In the second case the water...

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  2. In this study, we investigated the effects of soil organic carbon (SOC) distribution and water uptake by plant roots on PFAS movement in the vadose zone with a deep groundwater table under temperate, humid climate conditions. Two series of numerical simulations were performed with the HYDRUS computer code, representing the leaching of historical PFOS contamination and the infiltration of water contaminated with PFOA, respectively. We...

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  3. Accurate information about soil water retention curves (SWRCs) of sands is essential for evaluating groundwater recharge and vulnerability to contamination in many shallow sandy aquifers which are widespread on post glacial areas in Northern Europe and North America. Pedotransfer functions (PTFs) allow to estimate SWRC from basic physical characteristics of soils, such as textural composition. However, in the case of clean sands...

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  4. We investigated the influence of climate change in the period 1951–2020 on shallow aquifers in the Brda and Wda outwash plains (Pomeranian Region, Northern Poland). There was a significant temperature rise (0.3 °C/10 years), which accelerated after 1980 (0.66 °C/10 years). Precipitation became increasingly irregular – extremely rainy years occurred right after or before extremely dry years, and intensive rainfall events became...

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  5. Accurate estimation of soil permeability is crucial in many geotechnical applications. Empirical and theoretical equations based on soil particle size distribution (PSD) offer a fast and cheap way for preliminary estimation of permeability in granular soils, however the results obtained from various formulas available in the literature often show significant discrepancies. While several comparative studies on this topic have been...

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