José Baptista

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Universidade de Trás-os-Montes e Alto Douro
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Portugal

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Recent Grants

Grant: Close

Energy Transition Entrepreneurs in Action - ETEIA, developing a supportive academic environment for the young talents

Open Date: 2021-07-01

Close Date: 2021-12-01

Grant: Close

Continental FoF – Continental AA''s Factory of the Future

Open Date: 2021-01-01

Close Date: 2024-01-01

Articles (11)

Wind Farm Cable Connection Layout Optimization Using a Genetic Algorithm and Integer Linear Programming

This work addresses the wind farm (WF) optimization layout considering several substations. It is given a set of wind turbines jointly with a set of substations, and the goal is to obtain the optimal design to minimize the infrastructure cost and the cost of electrical energy losses during the wind farm lifetime. The turbine set is partitioned into subsets to assign to each substation. The cable type and the connections to collect wind turbine-produced energy, forwarding to the corresponding substation, are selected in each subset. The technique proposed uses a genetic algorithm (GA) and an integer linear programming (ILP) model simultaneously. The GA creates a partition in the turbine set and assigns each of the obtained subsets to a substation to optimize a fitness function that corresponds to the minimum total cost of the WF layout. The fitness function evaluation requires solving an ILP model for each substation to determine the optimal cable connection layout. This methodology is applied to four onshore WFs. The obtained results show that the solution performance of the proposed approach reaches up to 0.17% of economic savings when compared to the clustering with ILP approach (an exact approach).

Year:

2023

Self-Sustainability Assessment for a High Building Based on Linear Programming and Computational Fluid Dynamics

With excess energy use from non-renewable sources, new energy generation solutions must be adopted to make up for this excess. In this sense, the integration of renewable energy sources in high-rise buildings reduces the need for energy from the national power grid to maximize the self-sustainability of common services. Moreover, self-consumption in low-voltage and medium-voltage networks strongly facilitates a reduction in external energy dependence. For consumers, the benefits of installing small wind turbines and energy storage systems include tax benefits and reduced electricity bills as well as a profitable system after the payback period. This paper focuses on assessing the wind potential in a high-rise building through computational fluid dynamics (CFD) simulations, quantifying the potential for wind energy production by small wind turbines (WT) at the installation site. Furthermore, a mathematical model is proposed to optimize wind energy production for a self-consumption system to minimize the total cost of energy purchased from the grid, maximizing the return on investment. The potential of a CFD-based project practice that has wide application in developing the most varied processes and equipment results in a huge reduction in the time and costs spent compared to conventional practices. Furthermore, the optimization model guarantees a significant decrease in the energy purchased at peak hours through the energy stored in energy storage systems (ESS). The results show that the efficiency of the proposed model leads to an investment amortization period of 7 years for a lifetime of 20 years.

Year:

2023

Collaborators (3)

Eduardo Solteiro Pires

Prof. Auxiliary

Universidade de Trás-os-Montes e Alto Douro

PORTUGAL

Adelaide Cerveira

-

PORTUGAL

Simon Schneider

Researcher / Lecturer

University of Applied Sciences

AUSTRIA
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