Adu Sakyi
Department of MathematicsPhysical SciencesLife Sciences

Adu Sakyi

11 Publications7 Research Themes11 Open Access
Research Overview & Focus

The researcher's work spans across multiple disciplines in physical sciences, focusing on energy load and power forecasting, advanced mathematical modeling, groundwater flow studies, fractional differential equations solutions, flood risk assessment, field-flow fractionation techniques, and bacterial infections. Their core focus is on developing and applying sophisticated models to address challenges in these diverse areas, including energy systems, environmental flows, pharmacokinetics, hydrology, and public health.

Faculty Biography

Mathematics, the basis of creation. Adu Sakyi is  a mathematician with great interest in the physical and biological applications of mathematics namely; hydrodynamic modeling, system dynamics, disease modeling, reservior simulation etc. He has specialty in the area of applied and computational mathematics. Having completed a BSc. and Mphil in Applied Mathematics, he obtained a PhD in Scientific Computing and Industrial Modeling. A program facilitated by the National Institute for Mathematical sciences, KNUST where he is currently a fellow. He is  a Lecturer in the Mathematics Department, KNUST. Adu Sakyi believes in self development and his principles are grounded on continuous research and curiosity in the strength of mathematics and computations.

Key Research Themes (7)
Physical Sciences

Advanced Mathematical Modeling in Engineering

Life Sciences

Bacterial Infections and Vaccines

Physical Sciences

Energy Load and Power Forecasting

Physical Sciences

Field-Flow Fractionation Techniques

Physical Sciences

Flood Risk Assessment and Management

Physical Sciences

Fractional Differential Equations Solutions

Physical Sciences

Groundwater flow and contamination studies

Publications (11)

Corrigendum to “Seemingly unrelated time series model for forecasting the peak and short-term electricity demand: Evidence from the Kalman filtered Monte Carlo method” [Heliyon Volume 9, Issue 8, August 2023, Article e18821]

Open Access
2025Energy Load and Power ForecastingDOI: 10.1016/j.heliyon.2025.e43865

Mathematical modelling of meningitis serogroups A and C transmission in Sub-Saharan Africa: A case study in Ghana

Open Access
2025Bacterial Infections and VaccinesDOI: 10.1016/j.sciaf.2025.e02758

Investigation of fractional compartmental models in pharmacokinetics with application to amiodarone drug diffusion

Open Access
2025Fractional Differential Equations SolutionsDOI: 10.1016/j.sciaf.2025.e02700

Investigation of Fractional Compartmentalmodels in Pharmacokinetics with Application Toamiodarone Drug Diffusion

Open Access
2024Field-Flow Fractionation TechniquesDOI: 10.2139/ssrn.4963046

Seemingly unrelated time series model for forecasting the peak and short-term electricity demand: Evidence from the Kalman filtered Monte Carlo method

Open Access
2023Energy Load and Power ForecastingDOI: 10.1016/j.heliyon.2023.e18821

Investigation of Fractional Compartmental Models with Application to Amiodarone Drug Diffusion in Pharmacokinetics

Open Access
2023Fractional Differential Equations SolutionsDOI: 10.48550/arxiv.2306.08015

A Stable Implementation of a Well-posed 2-D Curvilinear Shallow Water Equations with No-Penetration Wall and Far-Field Boundary conditions

Open Access
2022Flood Risk Assessment and ManagementDOI: 10.48550/arxiv.2206.11615

A new macro-scale volume averaged transport model for diffusive dominated non-Darcian flow problem in multi-scaled naturally fractured reservoirs

Open Access
2022Groundwater flow and contamination studiesDOI: 10.1007/s13202-022-01498-x

A New Multicontinuum Model for Advection-Diffusion Process of Single-Phase Nonlinear Flow in a Multiscale Fractured Porous Media

Open Access
2022Advanced Mathematical Modeling in EngineeringDOI: 10.1155/2022/5731988

A Formal Homogenization Approach to Piping Flow Erosion with Deposition in a Spatially Heterogeneous Soil

Open Access
2020Advanced Mathematical Modeling in EngineeringDOI: 10.9734/jamcs/2020/v35i330257

A Rigorous Homogenization for a Two-Scale Convergence Approach to Piping Flow Erosion with Deposition in a Spatially Heterogeneous Soil

Open Access
2020Advanced Mathematical Modeling in EngineeringDOI: 10.9734/jamcs/2020/v35i330256
Academic Metrics
DepartmentDepartment of Mathematics
Total Publications11
Research Themes7
Open Access Papers11

Department of Mathematics

Kwame Nkrumah University of Science and Technology

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