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In the 1 - dimensional heat transfer problem shown below, a 3 - node high - order element model will be used for a 1
In the dimensional heat transfer problem shown below, a node highorder element model will be used for a mm thick wall. The boundary conditions and wall properties are given in the figure. The wall has a distributed heat flux Qx in the range mm from the left, and a single point heat flux Q near the right. The Q form is the integral form of the concentrated form of Qx Solve the problem using the finite element method and find the node temperatures. The crosssectional area for the wall can be selected as A
In the dimensional heat transfer problem shown below, a node highorder element model will be used for a mm thick wall. The boundary conditions and wall properties are given in the figure. The wall has a distributed heat flux Qx in the range mm from the left, and a single point heat flux Q near the right. The Q form is the integral form of the concentrated form of Qx Solve the problem using the finite element method and find the node temperatures. The crosssectional area for the wall can be selected as A
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