By Ladislav Votruba (Eds.)
Water source platforms learn offers a foundation for rational water administration in huge basins. The layout and operation of water source platforms are either the main advanced and crucial projects of water administration. This booklet bargains with the fundamental matters fascinated with the appliance of structures sciences to water administration. A survey of the structures sciences (the common platforms concept, cybernetics, structures engineering, operations examine and structures research) is gifted, in addition to the tools for water source platforms research and for water source platforms research and for his or her evaluate. The mathematical tools utilized in platforms conception were given distinctive remedy. Linear and dynamic programming were used as types of optimum programming. in view that many sensible initiatives require the simulation types of water source platforms, except their rules and a close description, the simulation language for computing programming has been incorporated. different equipment of operations study and their program to water source platforms were analysed and evaluated.
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43 extent of WRS in the GWP t h a t co\ei- approximatelj the area of the main lxihins. 2 and Fig. 1. In the first part of the chgipter entitled ;‘Water Resource Sqstems”, \\ater man;igement in the main basins is described in the following sections: - the main tasks of water t11atidgement i n the basin, - procedures for meetiiip the main objectives. - relationships with other basins of the GWP. In the second part the individual main WRS are described. The comprehensive utilisation of water resources is treated in systems with two discriminating levels the overall (rough) and the detailed level.
E l i m i ~ i ~ tcan i ~ nbe performed by “filtering” the components of the system through the given constraints. g. e. the threshold ( e g withdrawals under a certain limit are omitted); the decrease or increase of the frequency or the number of relationships among the elements can help in the subdivision of the system into subsystems, which simplifies the system. The use of elimination for simplification of the system is often suitable when the optimization of its function is intended. e. e. elements or subsystems whose properties enable them to represent a group in a system with similar properties.
The increase in the speed and capacity of facilities for information processing makes the choice of less reduced systems possible. A simpler system can be reduced directly. For simplification of the WRS the following direct methods can be used: - elimination or aggregation of elements and relationships in the system, substitution and transformation of variables and relationships, subdivision into subsystems. E l i m i ~ i ~ tcan i ~ nbe performed by “filtering” the components of the system through the given constraints.
Analysis of Water Resource Systems by Ladislav Votruba (Eds.)