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$8 USD / time
Flag for INDIA
bangalore, india
$8 USD / time
Det er i øjeblikket 4:16 PM her
Tilmeldt maj 29, 2012
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Mohan K.

@mohank23

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$8 USD / time
Flag for INDIA
bangalore, india
$8 USD / time
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Genansættelsesrate

FE specialist and Design Engineer

working with 5.5yrs experience in the field of design and analysis of 2D&3D component, structural,harmonic and thermal analysis.

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147184
236479
147184

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Erfaring

working with 5.5years on modelling and simulation using FEA and modelling tools

mds
jul. 2007 - Nuværende
Working with 5.5yrs experience. Specialization in automotive and aerospace components. Expert in thermal and structural analysis (Ansys &Hypermesh). Expert in 3D modelling (solidworks).

Uddannelse

M.tech

Visvesvaraya Technological University, India 2005 - 2007
(2 år)

B.E

Visvesvaraya Technological University, India 2001 - 2005
(4 år)

Kvalifikationer

Fatigue life calculation of desuperheater for solving pipe cracking issue using finite element method (FEM) software

AIPC
2012
Desuperheater assembly experiences thermal cycling in operation by design. During power plant's start up, load change and shut down, thermal gradient is highest. Desuperheater should be able to handle rapid ramp up or ramp down of temperature in these operations. With "hump style" two nozzle desuperheater, cracks were appearing in the pipe after only few cycles of operation. From the field data, it was clear that desuperheater is not able to handle disproportionate thermal expansion happening in the assembly during temperature ramp up and ramp down in operation and leading to cracks appearing in the piping. Growth of thermal fatigue crack is influenced by several factors including geometry, severity of thermal stress and applied mechanical load. This paper seeks to determine cause of failure of two nozzle "hump style" desuperheater using Finite Element Method (FEM) simulation technique. Thermal stress simulation and fatigue life calculation were performed using commercial FEA software "ANSYS" [from Ansys Inc, USA]. Simulation result showed that very high thermal stress is developing in the region where cracks are seen in the field. From simulation results, it is also clear that variable thermal expansion of two nozzle studs is creating high stress at the water manifold junction. A simple and viable solution is suggested by increasing the length of the manifold which solved the cracking issues in the pipe.

ansys

tts
2005

Publikationer

Fatigue life calculation of desuperheater for solving pipe cracking issue using finite element method (FEM) software

AIPC
Desuperheater assembly experiences thermal cycling in operation by design. During power plant's start up, load change and shut down, thermal gradient is highest. Desuperheater should be able to handle rapid ramp up or ramp down of temperature in these operations. With "hump style" two nozzle desuperheater, cracks were appearing in the pipe after only few cycles of operation. From the field data, it was clear that desuperheater is not able to handle disproportionate thermal expansion happen

nonlinear thermal analysis

ansys conference
submitted paper in ansys conference

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