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An Overview on Fundamentals of Fluid Mechanics in Buildings
This chapter describes the behaviour and characteristics of both liquids and gases which are known as fluids in general. In a boiling condition, for example, the absolute pressure of the liquid reaches the vapour pressure and thus some molecules start to leave the liquid. When a fluid is investigated, two methods can be used, including Eulerian and Lagrangian methods. Reynolds stress theorem represents a relation between the governing equation defined in a system and control volume of a velocity field. Internal flow is related to the fluid motion in the closed conduits such as pipes and ducts while in most of the cases the flowing fluid is assumed to be incompressible. The laminar flow in a horizontal enclosed pipe is known as Hagen‐Poiseuille flow. In building science, there are a wide range of flow problems that can be experimentally assessed in a subscale scenario.
An Overview on Fundamentals of Fluid Mechanics in Buildings
This chapter describes the behaviour and characteristics of both liquids and gases which are known as fluids in general. In a boiling condition, for example, the absolute pressure of the liquid reaches the vapour pressure and thus some molecules start to leave the liquid. When a fluid is investigated, two methods can be used, including Eulerian and Lagrangian methods. Reynolds stress theorem represents a relation between the governing equation defined in a system and control volume of a velocity field. Internal flow is related to the fluid motion in the closed conduits such as pipes and ducts while in most of the cases the flowing fluid is assumed to be incompressible. The laminar flow in a horizontal enclosed pipe is known as Hagen‐Poiseuille flow. In building science, there are a wide range of flow problems that can be experimentally assessed in a subscale scenario.
An Overview on Fundamentals of Fluid Mechanics in Buildings
Mirzaei, Parham A. (author)
2022-10-17
68 pages
Article/Chapter (Book)
Electronic Resource
English
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