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In [[statics]], a structure is '''statically indeterminate''' (or '''hyperstatic''')<ref>{{cite book |last= Matheson |first= James Adam Louis |authorlink= James Adam Louis Matheson
|title= Hyperstatic structures: an introduction to the theory of statically indeterminate structures |year= 1971 |publisher= Butterworths }}</ref> when the [[static equilibrium]] equations are insufficient for determining the internal forces and reactions on that structure.
 
Based on [[Newton's laws of motion]], the equilibrium equations available for a two-dimensional body are
* <math> \sum \vec F = 0 </math>: the vectorial sum of the [[force]]s acting on the body equals zero. This translates to
::&Sigma; ''H'' = 0: the sum of the horizontal components of the forces equals zero;
::&Sigma; ''V'' = 0: the sum of the vertical components of forces equals zero;
* <math> \sum \vec M = 0 </math>: the sum of the [[moment (physics)|moment]]s (about an arbitrary point) of all forces equals zero.
 
[[Image:Statically indeterminate beam.png|thumb|350px|right|[[Free body diagram]] of a statically indeterminate [[Beam (structure)|beam]].]]
In the [[Beam (structure)|beam]] construction on the right, the four unknown reactions are ''V''<sub>''A''</sub>, ''V''<sub>''B''</sub>, ''V''<sub>''C''</sub> and ''H''<sub>''A''</sub>. The equilibrium equations are:
 
Σ ''V'' = '''0''':
:''V''<sub>''A''</sub> &minus; ''F''<sub>''v''</sub> + ''V''<sub>''B''</sub> + ''V''<sub>''C''</sub> = 0
 
Σ ''H'' = '''0''':
:''H''<sub>''A''</sub> &minus; ''F''<sub>''h''</sub> = 0
 
Σ ''M''<sub>''A''</sub> = 0:
:''F''<sub>''v''</sub> &middot; ''a'' &minus; ''V''<sub>''B''</sub> &middot; (''a'' + ''b'') - ''V''<sub>''C''</sub> &middot; (''a'' + ''b'' + ''c'') = 0.
 
Since there are four unknown forces (or ''[[Variable (mathematics)|variables]]'') (''V''<sub>''A''</sub>, ''V''<sub>''B''</sub>, ''V''<sub>''C''</sub> and ''H''<sub>''A''</sub>) but only three equilibrium equations, this system of [[simultaneous equations]] does not have a unique solution. The structure is therefore classified as ''statically indeterminate''. Considerations in the material properties and compatibility in [[deformation (engineering)|deformation]]s are taken to solve statically indeterminate systems or structures.
 
==Statically determinate==
If the support at ''B'' is removed, the reaction ''V''<sub>''B''</sub> cannot occur, and the system becomes '''statically determinate''' (or '''isostatic''').<ref>{{cite book
|last= Carpinteri |first= Alberto |authorlink= Alberto Carpinteri
|title= Structural Mechanics:  A Unified Approach |year= 1997
|publisher= Taylor & Francis |isbn= 0-419-19160-7}}</ref> Note that the system is ''completely constrained'' here.
The system becomes an [[exact constraint]] [[kinematic coupling]].
The solution to the problem is
 
:<math>H_A=F_h</math> ,
:<math>V_C=\frac{F_v\cdot a}{a+b+c}</math> ,
:<math>V_A=F_v-V_C</math> .
 
If, in addition, the support at ''A'' is changed to a roller support, the number of reactions are reduced to three (without ''H''<sub>''A''</sub>), but the beam can now be moved horizontally; the system becomes ''unstable'' or ''partially constrained'' -- a [[mechanism (engineering)|mechanism]] rather than a structure. In order to distinguish between this and the situation when a system under equilibrium is perturbed and becomes unstable, it is preferable to use the phrase ''partially constrained'' here. In this case, the 2 unknowns ''V''<sub>''A''</sub> and ''V''<sub>''C''</sub> can be determined by resolving the vertical force equation and the moment equation simultaneously. The solution yields the same results as previously obtained. However, it is not possible to satisfy the horizontal force equation unless <math>F_h=0</math>.
 
Statical indeterminacy is the existence of a non-trivial (non-zero) solution to the homogeneous system of equilibrium equations. It indicates the possibility of self-stress (stress in the absence of an external load) that may be induced by mechanical or thermal action.
 
==See also==
*[[Christian Otto Mohr]]
*[[Flexibility method]]
*[[Hardy Cross]]
*[[Moment distribution method]]
*[[Structural engineering]]
* [[overconstrained mechanism]]
 
==External links==
* [http://en.sopromat.org/2008/ Beam calculation online (Statically indeterminate)]
 
== References ==
{{reflist}}
 
[[Category:Statics]]
[[Category:Structural analysis]]

Revision as of 06:32, 4 November 2013

In statics, a structure is statically indeterminate (or hyperstatic)[1] when the static equilibrium equations are insufficient for determining the internal forces and reactions on that structure.

Based on Newton's laws of motion, the equilibrium equations available for a two-dimensional body are

Σ H = 0: the sum of the horizontal components of the forces equals zero;
Σ V = 0: the sum of the vertical components of forces equals zero;
Free body diagram of a statically indeterminate beam.

In the beam construction on the right, the four unknown reactions are VA, VB, VC and HA. The equilibrium equations are:

Σ V = 0:

VAFv + VB + VC = 0

Σ H = 0:

HAFh = 0

Σ MA = 0:

Fv · aVB · (a + b) - VC · (a + b + c) = 0.

Since there are four unknown forces (or variables) (VA, VB, VC and HA) but only three equilibrium equations, this system of simultaneous equations does not have a unique solution. The structure is therefore classified as statically indeterminate. Considerations in the material properties and compatibility in deformations are taken to solve statically indeterminate systems or structures.

Statically determinate

If the support at B is removed, the reaction VB cannot occur, and the system becomes statically determinate (or isostatic).[2] Note that the system is completely constrained here. The system becomes an exact constraint kinematic coupling. The solution to the problem is

,
,
.

If, in addition, the support at A is changed to a roller support, the number of reactions are reduced to three (without HA), but the beam can now be moved horizontally; the system becomes unstable or partially constrained -- a mechanism rather than a structure. In order to distinguish between this and the situation when a system under equilibrium is perturbed and becomes unstable, it is preferable to use the phrase partially constrained here. In this case, the 2 unknowns VA and VC can be determined by resolving the vertical force equation and the moment equation simultaneously. The solution yields the same results as previously obtained. However, it is not possible to satisfy the horizontal force equation unless .

Statical indeterminacy is the existence of a non-trivial (non-zero) solution to the homogeneous system of equilibrium equations. It indicates the possibility of self-stress (stress in the absence of an external load) that may be induced by mechanical or thermal action.

See also

External links

References

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