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Updated: Jun 26, 2025

A Modeling and Simulation Method for Preliminary Design of an Electro-Variable Displacement Pump
Published on: June 1, 2022
Data-driven modeling using system dynamics simulation to provide relief in earthquake based on different scenarios.
Hassan Ahmadi Choukolaei1, Mustafa Jahangoshai Rezaee2, Peiman Ghasemi3
1Faculty of Industrial Engineering, Urmia University of Technology, Urmia, Iran.
This study developed a sustainable, data-driven model for earthquake relief logistics, optimizing resource allocation and minimizing shortages. It identified specific fault scenarios with the highest and lowest relief goods demand.
Area of Science:
- Disaster Management
- Operations Research
- Civil Engineering
Background:
- Effective disaster relief is crucial for mitigating damage and protecting populations during events like earthquakes.
- Existing models often lack a holistic approach, failing to integrate pre- and post-crisis considerations simultaneously.
- Sustainability in disaster response is increasingly vital for long-term resilience.
Purpose of the Study:
- To propose and validate a data-driven, sustainable model for earthquake relief logistics.
- To determine optimal quantities and allocation strategies for relief goods during seismic events.
- To minimize relief goods shortages, untreated casualties, and supply chain costs.
Main Methods:
- A two-phase approach involving simulation and multi-objective modeling.
- Dynamic simulation system to model earthquake impacts on urban infrastructure and vital arteries.
- Development of a data-based multi-objective model incorporating sustainability principles.
Main Results:
- The model effectively estimated relief goods demand across various earthquake scenarios.
- Identified the
- Mosha-day fault
- scenario as having the highest demand and the
- North Tehran-night fault
- scenario as having the lowest.
- The multi-objective model successfully balanced minimizing shortages, untreated wounded, and supply chain expenses.
Conclusions:
- The proposed data-driven model provides a robust framework for sustainable earthquake relief planning.
- Integrating pre- and post-crisis data enhances the efficiency and effectiveness of disaster response.
- The model's findings offer valuable insights for optimizing resource allocation in seismic emergencies.
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