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Response Analysis Product List

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Earthquake response analysis

Predicting displacement, acceleration, and stress response during an earthquake through time history analysis.

Earthquake response analysis is a analytical method that inputs actual seismic waves into structures to evaluate their behavior during an earthquake. Our company conducts earthquake response analysis using the finite element method (FEM) for equipment supports, tanks, piping support structures, and machinery. We evaluate the time variations of displacement, acceleration, and stress that occur during an earthquake, which can be utilized for confirming structural integrity and considering seismic measures.

  • Contract Analysis
  • Response Analysis

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Resonance and vibration force response analysis

Evaluate the vibration response to the excitation force and understand the resonance risk in advance.

Resonance and vibration force response analysis evaluates the response of structures to external vibration loads, predicting the possibility of resonance occurrence and vibration levels. Our company uses the finite element method (FEM) to assess natural frequencies and response evaluations against vibration forces for equipment frames, machinery, supporting structures, and frame structures. This analysis can be utilized for investigating the causes of vibration issues, considering anti-vibration measures, and evaluating the impact during design changes.

  • Contract Analysis
  • Response Analysis

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[Analysis Case] Analysis of Stray Losses in Power Transformers

Analyze stray load losses under the condition of the presence or absence of leakage flux blocking components in the transcoil!

We would like to introduce the "Analysis of Power Transformer Stray Losses" conducted by our company. The analysis mode is frequency response analysis (Time Harmonic), and the rated capacity of the power transformer is 100 MVA. The input frequency is 50 Hz/AC. As a result of the analysis, it was found that the leakage magnetic flux generated from the transformer coil is significantly and extensively collected at the shunt wall. 【Analysis Conditions】 ■ Analysis Mode: Frequency Response Analysis (Time Harmonic) ■ Power Transformer Rating: 100 MVA ■ Input Frequency: 50 Hz/AC ■ Shunt Wall (Flux Collector): Magnetic Material ■ Frame Material, Tank Material: Carbon Steel *Details of the case can be viewed through the related links. For more information, please feel free to contact us.

  • Contract Analysis
  • Response Analysis

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