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Chapter 19

Differential Analysis of Fluid Flow

오일러의 운동 방정식
오일러의 운동 방정식
In a moving fluid, shear stresses develop due to viscosity. For water, which has low viscosity, these effects are negligible, simplifying fluid motion ...
Stream 함수
Stream 함수
In two-dimensional incompressible flow, there are horizontal and vertical velocity components. The continuity equation ensures mass conservation by ...
비회전 흐름
비회전 흐름
Irrotational flow refers to the movement of fluid particles that do not rotate along the flow path, characterized by a velocity field with zero curl and ...
속도 잠재력
속도 잠재력
Consider water flowing steadily through a long, straight pipe with a uniform cross-section. In central regions of the pipe, where flow is irrotational, a ...
평면 전위 흐름
평면 전위 흐름
Plane potential flows simplify fluid motion by assuming irrotational and incompressible flow, governed by a velocity potential function and a stream ...
Navier-Stokes 방정식
Navier-Stokes 방정식
In fluid motion under viscous conditions, shear stress is directly proportional to fluid deformation. In incompressible Newtonian fluids, this stress ...
평행 플레이트 사이의 안정적인 층류
평행 플레이트 사이의 안정적인 층류
Steady, laminar flow between two parallel plates describes fluid movement in a narrow, confined channel, often used to model simple fluid systems. For ...
쿠엣 플로우
쿠엣 플로우
Couette flow describes fluid motion between two parallel plates where one is stationary, and the other moves with constant speed, creating a steady, ...
원형 튜브의 안정적인 층류
원형 튜브의 안정적인 층류
Consider steady, incompressible flow through a straight cylindrical tube of constant radius R, known as Hagen–Poiseuille flow. The cylindrical ...
설계 예: 원형 파이프를 통한 오일의 흐름
설계 예: 원형 파이프를 통한 오일의 흐름
An engineer needs to design a pipeline to transport oil from a storage tank to a processing facility. Given the oil's viscosity, density, and the ...
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