This paper deals with one of the aspects important from the point
of view of water quality maintenance in storage reservoirs, namely the
dynamics of water currents that accompany changes of the water surface
elevation in such reservoirs. Numerical simulations were conducted to
back observations that high discharges are in the long term beneficial to
water quality in the reservoir. Calculations made using the AdH finite elements
model confirmed that the water current pattern in shallow regions
varies greatly with the total discharge value. The sample analysis shown
in this article concerns a mid-size storage reservoir of Tresna located in
southern Poland.
It appears that for small discharges the currents that wet some areas
of the previously dry reservoir bed are similar to reversed currents that
occur when the area is dried. Thus some amounts of water may move from
one stagnant area to another forth and back and then the water exchange is
limited. It means that it is not enough to lower the water level within the
reservoir steering rules and then raise it again to be assured that the water
quality improves in the reservoir, especially in the lull parts. But for higher
discharges the current pattern is different and the exchange of the reservoir
water really does happen. In most cases in order to “flush” a reservoir that way
one could just wait for high water to come, but if reservoirs form a cascade
creating an artificial controlled freshet that propagates down the cascade
may be a considerable means of altering water quality in lower reservoirs.
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