Designer
bohdan38
Senior Mechanical HVAC Engineer | Building Mechanical Systems, HVAC Design & BIM Coordination
full HVAC design process, including heating and cooling load calculations, equipment selection, air distribution, ventilation, hydronic systems, ductwork, piping layouts, mechanical room arrangements, equipment
3D Model
Connecticut HVAC Design for 2-story Residential in Fairfield, CT
This project involves the furnishing and installation of a complete Heating, Ventilation, and Air Conditioning (HVAC) system as part of a Renovation Project at a residential property located at Fairfield
Designer
Allabaksh
Mechanical Design Engineer/ HVAC Design Engineer
software following ASHRAE Standards. • Duct design by manually and using duct design software. • Air Distribution System by Velocity Reduction Method, Equal Friction Method and Static Regain Method following
Skill
Compressed Air Systems Design
Compressed air is important in industrial processes. Since it is used in many commercial and industrial applications, it is important to design optical systems that take into account energy, maintenance
3D Model
CFD Study of an Air Duct System in a Factory
Performed a CFD (Computational Fluid Dynamics) study of an industrial air duct system to evaluate airflow distribution, pressure losses, and ventilation performance. Developed a 3D simulation model, analyzed
3D Model
Supersonic CFD Analysis – Multi-Species Air/Hydrogen Propulsion
rear fin surfaces. Species transport was included to represent the interaction between the external air and the hydrogen propulsion stream. The rocket incorporates four rear fins with approximately 25° inclination
3D Model
Medical Air Blower (Trigger + Rear Control Panel) — Concept Description
A compact handheld medical air blower concept designed for controlled, one-handed airflow delivery. The red trigger enables quick, intuitive start/stop (and can be used for variable output in a real build)
3D Model
Central HVAC System Layout – Multi-Level Building
plan represents a different level of the structure, showcasing the distribution of air handling units (AHUs), ductwork, diffusers, return air paths, and mechanical shafts. The drawings include precise annotations
3D Model
Stove burner design
Design of a compact and efficient stove burner focused on optimal fuel–air mixing and stable flame distribution. The geometry is engineered to ensure uniform heat output, high combustion efficiency, and
3D Model
Continuous Belt Roasting Oven for Food Processing
granola). The system utilizes a food-grade wire mesh belt and a forced-air circulation system to ensure uniform heat distribution. I performed thermal calculations to determine burner capacity and airflow