between the motions lost furnished him with equations representing the
motion of the fluid. It remained a desideratum to express by equations
the motion of a particle of the fluid in any assigned direction. These
equations were found by d'Alembert from two principles--that a
rectangular canal, taken in a mass of fluid in equilibrium, is itself
in equilibrium, and that a portion of the fluid, in passing from one
place to another, preserves the same volume when the fluid is
incompressible, or dilates itself according to a given law when the
fluid is elastic. His ingenious method, published in 1752, in his
_Essai sur la résistance des fluides_, was brought to perfection in
his _Opuscules mathématiques_, and was adopted by Leonhard Euler.
The resolution of the questions concerning the motion of fluids was
effected by means of Euler's partial differential coefficients. This
calculus was first applied to the motion of water by d'Alembert, and
enabled both him and Euler to represent the theory of fluids in
formulae restricted by no particular hypothesis.
One of the most successful labourers in the science of hydrodynamics
at this period was Pierre Louis Georges Dubuat (1734-1809). Following
in the steps of the Abbé Charles Bossut (_Nouvelles Experiences sur la
résistance des fluides_, 1777), he published, in 1786, a revised
edition of his _Principes d'hydraulique_, which contains a
satisfactory theory of the motion of fluids, founded solely upon
experiments. Dubuat considered that if water were a perfect fluid, and
the channels in which it flowed infinitely smooth, its motion would be
continually accelerated, like that of bodies descending in an inclined
plane. But as the motion of rivers is not continually accelerated, and
soon arrives at a state of uniformity, it is evident that the
viscosity of the water, and the friction of the channel in which it
descends, must equal the accelerating force. Dubuat, therefore,
assumed it as a proposition of fundamental importance that, when water
flows in any channel or bed, the accelerating force which obliges it
to move is equal to the sum of all the resistances which it meets
with, whether they arise from its own viscosity or from the friction
of its bed. This principle was employed by him in the first edition of
his work, which appeared in 1779. The theory contained in that edition
was founded on the experiments of others, but he soon saw that a
theory so new, and leading to results so different from the ordinary
theory, should be founded on new experiments more direct than the
former, and he was employed in the performance of these from 1780 to
1783. The experiments of Bossut were made only on pipes of a moderate
declivity, but Dubuat used declivities of every kind, and made his
experiments upon channels of various sizes.
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