SILVA, J. G.; http://lattes.cnpq.br/7703281655306054; SILVA, José Gomes da.
Resumo:
For decades, the water supply system design was held by the
traditional methods of Hardy-Cross and Fictitious Sectioning. Only since the
end of the sixty decade, with the use of microcomputers it was possible the application
of the mathematics optimization techniques in the economical design of the water supply
systems, in order to obtain the minimal total cost. Based on these techniques, many
methods of optimisation in the water supply system appeared. However, in all of them the
parameters of the project's boundary conditions are considered invariable during all its
range. It does not take into account the variation that can occur in the following aspects:
population, internal roughness pipe walls, daily water consumption, project's average
demand, number of pumping hours and in the economical factors, since the moment of the
project's implantation until the end of its exploration period. It was also verified that in
these methods the costs effects of the structural concrete of the elevated reservoir
necessary for the water supply are not taking in account. Therefore, it was proved the
necessity of studying these parameters variation and incorporating them in the process of
the economical water supply system projects. In this work, deeper studies about the
variation of these parameters along the time were carried out, in which some formulas
were developed or adapted for roughness calculation, head loss, population, project
average demand, annual number of pumping hours and economical factors. These studies
were incorporated to the method of systems optimization developed with base on the
mathematics model of the non-linear programming, in which the variation of these
parameters are considered during all the project range. The costs effects of the elevated
reservoir were also studied in the optimisation process. The solution of this method was
held by a computation program developed in this work, which is able to carry out the
system optmization. The method was applied in the networks economical system design in
the Bessa district (Joao Pessoa -PB) and in the city of Itotoro (Bahia). It was proved that
the method and the computation program developed in this work were efficient in the
determination of the total optimum cost of the project. It was possible to conclude that the
variation effects of the parameters of the project's boundary conditions should be
considered in the optimization of the water supply system, taking into account that they
have meaningful influence in the design. Finally, it was observed that the concrete cost of
the elevated reservoir can be included in the optimization process.