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Hydraulic head



 
 
Hydraulic head or piezometric head is a specific measurement of water pressure
Fluid pressure

Fluid pressure is the pressure at some point within a fluid, such as water or air.Fluid pressure occurs in one of two situations:#an open condition, such as the ocean, a swimming pool, or the atmosphere; or...
 above a geodetic datum. It is usually measured as a water surface elevation, expressed in units of length, at the entrance (or bottom) of a piezometer
Piezometer

A piezometer is a small diameter water well used to measure the hydraulic head of groundwater in aquifers. Similarly, it may also be a Standpipe , tube, vibrating wire piezometer or manometer used to measure the pressure of a fluid at a specific location in a column....
. In an aquifer, it can be calculated from the depth to water in a piezometric well (a specialized water well
Water well

A water well is an excavation or structure created in the ground ??by digging, driving, boring or drilling to access water in underground aquifers....
), and given information of the piezometer's elevation and screen depth. Hydraulic head can similarly be measured in a column of water using a standpipe piezometer by measuring the height of the water surface in the tube relative to a common datum.






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Hydraulic head or piezometric head is a specific measurement of water pressure
Fluid pressure

Fluid pressure is the pressure at some point within a fluid, such as water or air.Fluid pressure occurs in one of two situations:#an open condition, such as the ocean, a swimming pool, or the atmosphere; or...
 above a geodetic datum. It is usually measured as a water surface elevation, expressed in units of length, at the entrance (or bottom) of a piezometer
Piezometer

A piezometer is a small diameter water well used to measure the hydraulic head of groundwater in aquifers. Similarly, it may also be a Standpipe , tube, vibrating wire piezometer or manometer used to measure the pressure of a fluid at a specific location in a column....
. In an aquifer, it can be calculated from the depth to water in a piezometric well (a specialized water well
Water well

A water well is an excavation or structure created in the ground ??by digging, driving, boring or drilling to access water in underground aquifers....
), and given information of the piezometer's elevation and screen depth. Hydraulic head can similarly be measured in a column of water using a standpipe piezometer by measuring the height of the water surface in the tube relative to a common datum. The hydraulic head can be used to determine a hydraulic gradient between two or more points.

"Head" in fluid dynamics

In fluid dynamics
Fluid dynamics

In physics, fluid dynamics is the sub-discipline of fluid mechanics dealing with fluid flow — the natural science of fluids in motion....
, head is a concept that relates the energy in an incompressible fluid to the height of an equivalent static column of that fluid. From Bernoulli's Principle
Bernoulli's principle

In fluid dynamics, Bernoulli's principle states that for an inviscid flow, an increase in the speed of the fluid occurs simultaneously with a decrease in pressure or a decrease in the fluid's potential energy....
, the total energy at a given point in a fluid is the energy associated with the movement of the fluid, plus energy from pressure in the fluid, plus energy from the height of the fluid relative to an arbitrary datum. Head is expressed in units of height such as meters and feet.

The static head of a pump
Pump

A pump is a device used to move fluids, such as gases, liquids or Slurry. A pump displaces a volume by physical or mechanical action. One common misconception about pumps is the thought that they create pressure....
 is the maximum height (pressure) it can deliver. The capability of the pump can be read from its Q-H curve (flow vs. height).

Head is equal to the fluid's energy per unit weight
Weight

In the physical sciences, weight is a measurement of the gravitational force acting on an object. Near the surface of the Earth, the Earth's gravity is approximately constant; this means that an object's weight is roughly proportional to its mass....
. Head is useful in specifying centrifugal pump
Centrifugal pump

A centrifugal pump is a rotodynamic pump that uses a rotating impeller to increase the pressure of a fluid. Centrifugal pumps are commonly used to move liquids through a piping system....
s because their pumping characteristics tend to be independent of the fluid's density.

There are four types of head used to calculate the total head in and out of a pump:
  • Velocity head is due to the bulk motion of a fluid (kinetic energy
    Kinetic energy

    The kinetic energy of an object is the extra energy which it possesses due to its motion. It is defined as the mechanical work needed to accelerate a body of a given mass from rest to its current velocity....
    ).
  • Elevation head is due to the fluid's weight, the gravitational force acting on a column of fluid.
  • Pressure head
    Pressure head

    Pressure head is a term used in fluid mechanics to represent the internal energy of a fluid due to the pressure exerted on its container. It may also be called static pressure head or simply static head ....
     is due to the static pressure
    Static pressure

    * In the design and operation of aircraft, static pressure is the air pressure in the aircraft?s Pitot-static system#Static pressure.* In fluid dynamics, static pressure is the pressure at a nominated point in a fluid....
    , the internal molecular motion of a fluid that exerts a force on its container.
  • Resistance head (or friction head or Head Loss
    Hydraulic head

    Hydraulic head or piezometric head is a specific measurement of Fluid pressure#Hydrostatic pressure above a geodetic datum. It is usually measured as a water surface elevation, expressed in units of length, at the entrance of a piezometer....
    ) is due to the frictional forces acting against a fluid's motion by the container.


Components of hydraulic head

A mass free falling from an elevation (in a vacuum
Vacuum

A vacuum is a volume of space that is essentially empty of matter, such that its gaseous pressure is much less than atmospheric pressure. The word comes from the Latin term for "empty," but in reality, no volume of space can ever be perfectly empty....
) will reach a speed
Speed

Speed is the rate of Motion , or equivalently the rate of change of distance.Speed is a Scalar quantity with dimensions length/time; the equivalent Vector quantity to speed is velocity....


when arriving at elevation z=0, or when we rearrange it as a head: where is the acceleration due to gravity

The term
Term (mathematics)

The word term is from the Latin terminus which literally means "boundary line, limit", from the Proto-Indo-European root "peg, post, boundary"....
  is called the velocity head, expressed as a length measurement. In a flowing fluid, it represents the energy of the fluid due to its bulk motion.

The velocity head, or total hydraulic head of a fluid is composed of pressure head and elevation head. The pressure head is the equivalent gauge
Gauge (engineering)

In engineering, a gauge or gage, is used to make measurements. Various types of gauges include:...
 pressure
Pressure measurement

Many techniques have been developed for the measurement of pressure and vacuum. Instruments used to measure pressure are called pressure gauges or vacuum gauges....
 of a column of water at the base of the piezometer, and the elevation head is the relative potential energy
Potential energy

Potential energy can be thought of as energy stored within a physical system. It is called potential energy because it has the potential to be converted into other forms of energy, such as kinetic energy, and to do Mechanical work in the process....
 in terms of an elevation. The Head Equation, a simplified form of the Bernoulli Principle for incompressible fluids, can be expressed as: where is the hydraulic head (Length
Length

Length is the long dimension of any object. The length of a thing is the distance between its ends, its linear extent as measured from end to end....
 in m or ft), also known as the velocity head. is the pressure head
Pressure head

Pressure head is a term used in fluid mechanics to represent the internal energy of a fluid due to the pressure exerted on its container. It may also be called static pressure head or simply static head ....
, in terms of the elevation difference of the water column relative to the piezometer bottom (Length
Length

Length is the long dimension of any object. The length of a thing is the distance between its ends, its linear extent as measured from end to end....
 in m or ft), and is the elevation at the piezometer bottom (Length
Length

Length is the long dimension of any object. The length of a thing is the distance between its ends, its linear extent as measured from end to end....
 in m or ft)

In an example with a 400 m deep piezometer, with an elevation of 1000 m, and a depth to water of 100 m: z = 600 m, ? = 300 m, and h = 900 m.

The pressure head can be expressed as: where is the gauge pressure (Force per unit area, often Pa or psi), is the unit weight of water (Force per unit volume, typically N·m-3 or lbf
Pound-force

The pound-force or simply pound is a Units of measurement of force....
/ft³), is the density
Density

The density of a material is defined as its mass per unit volume. The symbol of density is ....
 of the water (Mass per unit volume, frequently kg·m-3), and is the gravitational acceleration
Gravitational acceleration

In physics, gravitational acceleration is the acceleration of an object caused by the force of gravity from another object. In the absence of any other forces, any object will accelerate in a gravitational field at the same rate, regardless of the mass of the object....
 (velocity change per unit time, often m·s-2)

Fresh water head

The pressure head is dependent on the density
Density

The density of a material is defined as its mass per unit volume. The symbol of density is ....
 of water, which can vary depending on both the temperature
Temperature

In physics, temperature is a physical property of a Physical system that underlies the common notions of hot and cold; something that feels hotter generally has the greater temperature....
 and chemical composition (salinity
Salinity

Salinity is the saltiness or dissolved salt content of a body of water. Salinity in Australian English and North American English may also refer to the salt in soil ....
, in particular). This means that the hydraulic head calculation is dependent on the density of the water within the piezometer. If one or more hydraulic head measurements are to be compared, they need to be standardized, usually to their fresh water head, which can be calculated as: where is the fresh water head (Length, measured in m or ft), and is the density
Density

The density of a material is defined as its mass per unit volume. The symbol of density is ....
 of fresh water (Mass per unit volume, typically in kg·m-3)

Hydraulic gradient

The hydraulic gradient is a vector gradient
Gradient

In vector calculus, the gradient of a scalar field is a vector field which points in the direction of the greatest rate of increase of the scalar field, and whose magnitude is the greatest rate of change....
 between two or more hydraulic head measurements over the length of the flow path. It is also called the Darcy slope, since it determines the quantity of a Darcy flux, or discharge. A dimensionless hydraulic gradient can be calculated between two piezometers as: where is the hydraulic gradient (dimensionless), is the difference between two hydraulic heads (Length, usually in m or ft), and is the flow path length between the two piezometers (Length, usually in m or ft)

The hydraulic gradient can be expressed in vector notation, using the del
Del

In vector calculus, del is a vector differential operator represented by the nabla symbol: .Del is a mathematical tool serving primarily as a Convention for mathematical notation; it makes many equations easier to comprehend, write, and remember....
 operator
Differential operator

In mathematics, a differential operator is an operator defined as a function of the derivative operator. It is helpful, as a matter of notation first, to consider differentiation as an abstract operation, accepting a function and returning another ....
. This requires a hydraulic head field
Field (mathematics)

In abstract algebra, a field is an algebraic structure with notions of addition, subtraction, multiplication and division , satisfying certain axioms....
, which can only be practically obtained from a numerical model, such as MODFLOW
MODFLOW

MODFLOW is the United States Geological Survey modular finite difference flow model, which is a computer source code that iterative method the groundwater flow equation....
. In Cartesian coordinates, this can be expressed as:

This vector describes the direction of the groundwater flow, where negative values indicate flow along the dimension, and zero indicates no flow. As with any other example in physics, energy must flow from high to low, which is why the flow is in the negative gradient. This vector can be used in conjunction with Darcy's law
Darcy's law

In fluid dynamics and hydrology, Darcy's law is a Phenomenology derived constitutive equation that describes the flow of a fluid through a porous medium....
 and a tensor
Tensor

A tensor is an object which extends the notion of Scalar , Vector , and Matrix . The term has slightly different meanings in mathematics and physics....
 of hydraulic conductivity
Hydraulic conductivity

Hydraulic conductivity, symbolically represented as , is a property of vascular plants, soil or rock, that describes the ease with which water can move through pore spaces or fractures....
 to determine the flux of water in three dimensions.

Hydraulic head in groundwater

Relation between heads for a hydrostatic case and a downward flow case.


The distribution of hydraulic head through an aquifer
Aquifer

An aquifer is an underground layer of water-bearing permeable rock or unconsolidated materials from which groundwater can be usefully extracted using a water well....
 determines where groundwater will flow. In a hydrostatic
Fluid pressure

Fluid pressure is the pressure at some point within a fluid, such as water or air.Fluid pressure occurs in one of two situations:#an open condition, such as the ocean, a swimming pool, or the atmosphere; or...
 example (first figure), where the hydraulic head is constant, there is no flow. However, if there is a difference in hydraulic head from the top to bottom due to draining from the bottom (second figure), the water will flow downward, due to the difference in head, also called the hydraulic gradient.

Atmospheric pressure

Even though it is convention to use gauge pressure in the calculation of hydraulic head, it is more correct to use total pressure (gauge pressure + atmospheric pressure
Atmospheric pressure

Atmospheric pressure is sometimes defined as the force per unit area exerted against a surface by the weight of air above that surface at any given point in the Earth's atmosphere....
), since this is truly what drives groundwater flow. Often detailed observations of barometric pressure are not available at each well
Water well

A water well is an excavation or structure created in the ground ??by digging, driving, boring or drilling to access water in underground aquifers....
 through time, so this is often disregarded (contributing to large errors at locations where hydraulic gradients are low or the angle between wells is acute.)

The effects of changes in atmospheric pressure
Atmospheric pressure

Atmospheric pressure is sometimes defined as the force per unit area exerted against a surface by the weight of air above that surface at any given point in the Earth's atmosphere....
 upon water levels observed in wells has been known for many years. The effect is a direct one, an increase in atmospheric pressure is an increase in load on the water in the aquifer, which increases the depth to water (lowers the water level elevation). Pascal
Blaise Pascal

Blaise Pascal , was a France mathematician, physicist, and religion philosopher. He was a child prodigy who was educated by his father, a civil servant....
 first qualitatively observed these effects in the 1600s, and they were more rigorously described by the soil physicist
Soil physics

Soil physics is the study of soil physical properties and processes. It is applied to management and prediction under natural and managed ecosystems....
 Edgar Buckingham
Edgar Buckingham

Edgar Buckingham was a physicist.He graduated from Harvard with a bachelor's degree in physics in 1887. He did additional graduate work at the University of Strasbourg and the University of Leipzig, where he studied under chemist Wilhelm Ostwald....
 (working for the USDA
United States Department of Agriculture

The United States Department of Agriculture is the United States federal executive departments responsible for developing and executing Federal government of the United States policy on farming, agriculture, and food....
) using air flow models in 1907.

Head Loss


In any real moving fluid, energy is dissipated due to friction
Friction

File:Friction alt.svgFriction is the force resisting the relative lateral motion of solid surfaces, fluid layers, or material elements in contact....
, as well as turbulence
Turbulence

In fluid dynamics, turbulence or turbulent flow is a fluid regime characterized by chaotic, stochastic property changes. This includes low momentum diffusion, high momentum convection, and rapid variation of pressure and velocity in space and time....
, unless the flow is laminar. Head loss is divided into two main categories, "major losses" associated with energy loss per length of pipe, and "minor losses" associated with bends, fittings, valves, etc. The most common equation used to calculate major head losses is the Darcy–Weisbach equation. Older, more empirical approaches are the Hazen-Williams equation
Hazen-Williams equation

The Hazen-Williams equation is an Empirical_formula#Use_in_physics which relates the flow of water in a pipe with the physical properties of the pipe and the pressure drop caused by friction....
 and the Prony equation
Prony equation

The Prony equation is a historically important equation in hydraulics, used to calculate the head loss due to friction within a given run of pipe....
.

For relatively short pipe systems, with a relatively large number of bends and fittings, minor losses can easily exceed major losses. In design, minor losses are usually estimated from tables using coefficients or a simpler and less accurate reduction of minor losses to equivalent length of pipe.

Analogs to other fields

Hydraulic head is a measure of energy, and has many analogs in physics
Physics

Physics is the natural science which examines basic concepts such as energy, force, and spacetime and all that derives from these, such as mass, charge, matter and its Motion ....
 and chemistry
Chemistry

Chemistry is the science concerned with the composition, structure, and properties of matter, as well as the changes it undergoes during chemical reactions....
, where the same mathematical principles and rules apply:
  • Hydraulic head is analogous to:
    • magnetic monopole
      Magnetic monopole

      In physics, a magnetic monopole is a hypothetical particle that is a magnet with only one magnetic pole . In more technical terms, it would have a net "magnetic charge"....
    • electric charge
      Electric charge

      Electric charge is a fundamental conserved property of some subatomic particles, which determines their electromagnetic interaction. Electrically charged matter is influenced by, and produces, electromagnetic fields....
    • heat
      Heat

      In physics and thermodynamics, heat is any transfer of energy from one body or thermodynamic system to another due to a difference in temperature....
       (i.e., temperature
      Temperature

      In physics, temperature is a physical property of a Physical system that underlies the common notions of hot and cold; something that feels hotter generally has the greater temperature....
      )
    • concentration
      Concentration

      In chemistry, concentration is the measure of how much of a given chemical substance there is mixed with another substance. This can apply to any sort of chemical mixture, but most frequently the concept is limited to homogeneous solutions, where it refers to the amount of solute in the solvent....
  • A continuous "field
    Field (mathematics)

    In abstract algebra, a field is an algebraic structure with notions of addition, subtraction, multiplication and division , satisfying certain axioms....
    " of hydraulic heads is analogous to:
    • an electric field
      Electric field

      In physics, the space surrounding an electric charge or in the presence of a time-varying magnetic field has a property called an electric field ....
    • a magnetic field
      Magnetic field

      A magnetism field is a vector field which can exert a magnetic force on moving electric charges and on magnetic dipoles . When placed in a magnetic field, magnetic dipoles tend to align their axes parallel to the magnetic field....
  • Similar differential operator
    Differential operator

    In mathematics, a differential operator is an operator defined as a function of the derivative operator. It is helpful, as a matter of notation first, to consider differentiation as an abstract operation, accepting a function and returning another ....
    s can be applied to the fields, to find:
    • the gradient
      Gradient

      In vector calculus, the gradient of a scalar field is a vector field which points in the direction of the greatest rate of increase of the scalar field, and whose magnitude is the greatest rate of change....
      , or the direction of flow
    • the divergence
      Divergence

      In vector calculus, the divergence is an operator that measures the magnitude of a vector field's source or sink at a given point; the divergence of a vector field is a scalar....
       of flow
    • the curl, or if the field is rotating


See also

  • Bernoulli's principle
    Bernoulli's principle

    In fluid dynamics, Bernoulli's principle states that for an inviscid flow, an increase in the speed of the fluid occurs simultaneously with a decrease in pressure or a decrease in the fluid's potential energy....
    , from which we derive pressure head and velocity head
  • Borda–Carnot equation
    Borda–Carnot equation

    In fluid dynamics the Borda?Carnot equation is an empirical description of the mechanical work#mechanical energy losses of the fluid due to a fluid flow expansion....
  • Darcy's law
    Darcy's law

    In fluid dynamics and hydrology, Darcy's law is a Phenomenology derived constitutive equation that describes the flow of a fluid through a porous medium....
  • Fluid dynamics
    Fluid dynamics

    In physics, fluid dynamics is the sub-discipline of fluid mechanics dealing with fluid flow — the natural science of fluids in motion....
  • Pressure head
    Pressure head

    Pressure head is a term used in fluid mechanics to represent the internal energy of a fluid due to the pressure exerted on its container. It may also be called static pressure head or simply static head ....
  • Total dynamic head
    Total dynamic head

    Total Dynamic Head is the total equivalent height that a fluid is to be pumped, taking into account friction losses in the pipe.TDH = Static Lift + Static Height + Friction Loss...