Student Project Task: Complete HVAC System Design for a Hospital

 

Student Project Task: Complete HVAC System Design for a Hospital



📘 Project Objective

Design a complete HVAC system for a small hospital building (e.g. 20-bed capacity), ensuring:

Patient comfort & safety

Infection control
Energy efficiency
Proper zoning & IAQ compliance

🧩 Project Scope

The hospital building includes:

2 Operation Theaters (OTs)

ICU with 5 beds
General Wards (10 beds)
Private Rooms (5)
Waiting Area
Doctors’ Room / Admin Office
Pharmacy
Toilets and Utility Rooms

📋 Tasks to Be Completed by Students


1️⃣ Cooling Load Calculation (Manual or Software like HAP)

🔸 Data Collection:

Building orientation & materials

Room dimensions, glazing, insulation
No. of occupants per room
Lighting & equipment load

🔸 Step-by-Step:

Calculate transmission load (walls, windows, roof)

Internal loads (people, lighting, equipment)
Ventilation load (required fresh air)
Infiltration load (air leakage)
Latent + sensible loads

📌 Calculate BTU/hr or Tons for each zone (OT, ICU, ward, etc.)


2️⃣ Duct Design Layout

🔸 Principles:

Use supply and return ducts based on airflows.

For critical zones (OT, ICU), ensure:

Laminar airflow (unidirectional)

Positive/negative pressure zones 

Maintain correct CFM:

  • OT: 20–30 ACH

  • ICU: 15–20 ACH

  • Wards: 6–12 ACH

🔸 Include:

Main trunk ducts

Branch ducts
Dampers for air balancing
HEPA filter locations

💡 Duct Sizing by Equal Friction Method or Velocity Reduction Method


3️⃣ Equipment Selection List

List out all HVAC equipment with capacity and purpose:

EquipmentZoneCapacityPurpose
AHU (Air Handling Unit)OT, ICU, Wards1000–3000 CFMCooled & filtered air delivery
ChillerWhole building10–20 TRCentral cooling system
Condensing UnitOutdoorMatch chillerHeat rejection
HEPA FiltersOT, ICU≥99.97% @ 0.3µInfection control
VAV Boxes/DampersAll zonesZoning and air balancing
FCUs (Fan Coil Units)Private rooms0.75–1 TRIndividual room cooling
Exhaust FansToilets/Kitchen150–300 CFMOdor removal, negative pressure

4️⃣ IAQ (Indoor Air Quality) Measures Plan

To maintain healthy and safe air quality:

MeasureDescription
HEPA FiltersFor OTs, ICU, Isolation Rooms
UVGI (Ultraviolet Germicidal Irradiation)Inside AHUs or ducts
Fresh Air Intake (TFA Unit)To dilute CO₂ and contaminants
Exhaust & Pressure ZoningNegative pressure in isolation rooms/toilets
Humidity ControlMaintain RH 45–60% (dehumidifiers if needed)
CO₂ SensorsFor real-time monitoring of indoor air quality
Air Change Rate (ACH)Follow NABH, ASHRAE, and ISHRAE recommendations

5️⃣ Energy Efficiency Notes

Implement these strategies to reduce power consumption and improve system performance:

Use inverter-driven chillers and pumps

Install BMS (Building Management System)
Apply night setback mode in non-critical zones
Variable Air Volume (VAV) systems for zoning
Occupancy sensors in waiting/admin areas
Solar panels for auxiliary loads
Thermal insulation of ducts and pipes
Low leakage ducts, EC motors in AHUs

6️⃣ Layout Diagram (Drawn or Software)

Students must provide:

HVAC zoning layout

AHU & duct routes
Supply/return diffuser positions
Equipment location (chiller, cooling tower, AHU room)
Legend + airflow direction arrows

🛠️ Can be made using:

AutoCAD

MS Visio
Hand-drawn with scale

📝 Expected Deliverables

  1. Report with all calculations

  2. Load summary zone-wise (in Tons or BTU/hr)

  3. Duct design sheets + CFM per outlet

  4. Complete equipment selection table

  5. IAQ plan with standard references (ASHRAE, ISHRAE)

  6. Energy saving strategies implemented

  7. Properly labeled HVAC layout diagram


📊 Bonus: Evaluation Criteria

CriteriaWeightage
Accuracy of Load Calculation25%
Duct Design & Airflow Matching20%
Equipment Selection Logic15%
IAQ & Safety Compliance15%
Energy Efficiency Measures10%
Layout Quality & Clarity15%
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