Hangzhou Tianmushan Laboratory HVAC Project
Hangzhou Tianmushan Laboratory HVAC Project
Precision Temperature, Humidity & Air Handling Solution for a Research Facility
Laboratory HVAC | Air Handling Unit | Fresh Air | Humidity Control | Intelligent Climate Management
This project was carried out for Hangzhou Tianmushan Laboratory and involved the development of a customized HVAC solution for a research facility requiring stable indoor environmental conditions.
The system was designed around continuous air handling, temperature stability, humidity management, fresh air supply and reliable long-term operation.
Project Overview
The Tianmushan Laboratory project required a precision HVAC system capable of supporting research activities and equipment operation under controlled indoor environmental conditions.
The project focused on maintaining stable temperature and humidity, reliable air circulation, fresh air supply and consistent HVAC performance during extended operating periods.
YUJU EnvironTech developed the system according to the actual research-space requirements and building conditions.
- Stable indoor temperature control
- Reliable humidity management
- Continuous fresh air supply
- Stable airflow distribution
- Continuous HVAC operation capability
- Improved indoor air quality
- Long-term system reliability
Air Handling Unit System
The air handling system forms the core of the laboratory HVAC solution.
Air Handling Units are responsible for processing and distributing conditioned air while supporting temperature, humidity and filtration requirements.
- Supply air treatment
- Temperature conditioning
- Humidity control
- Fresh air introduction
- Air filtration
- Stable airflow delivery
Precision Temperature Control
Research environments often require more stable indoor conditions than ordinary comfort air-conditioning applications.
The HVAC system was configured to reduce unnecessary temperature fluctuations and maintain a more consistent indoor environment during laboratory operation.
- Stable supply-air temperature
- Continuous room temperature monitoring
- Controlled HVAC response
- Reduced temperature fluctuation
- Coordinated airflow and cooling capacity
Humidity Management
Humidity is an important environmental parameter in many research facilities.
The system was designed to coordinate cooling, air handling and humidity management to maintain more stable indoor conditions.
- Humidity monitoring
- Cooling and dehumidification coordination
- Stable air treatment
- Reduced excessive humidity fluctuation
- Integrated operation with the AHU system
Fresh Air Ventilation
Fresh air ventilation was integrated into the laboratory climate-control strategy.
Controlled outdoor air supports indoor air exchange and helps maintain a more stable working environment for personnel and equipment.
- Controlled fresh air introduction
- Outdoor air filtration
- Fresh air and return air coordination
- Stable ventilation during operation
- Integration with the central AHU system
Air Filtration
Air filtration was incorporated into the air-handling process to help reduce airborne particles and support cleaner indoor operating conditions.
Filter selection was coordinated with system airflow and available fan static pressure so that filtration and air-delivery performance could work together.
Air Distribution & Static Pressure
Stable laboratory conditions also depend on consistent airflow throughout the controlled spaces.
The duct system and air-handling equipment must be coordinated so that the fan can overcome the resistance created by ductwork, filters and terminal devices.
Required Laboratory Airflow
↓
Duct & Filter Resistance
↓
Required Static Pressure
↓
AHU Fan Selection
↓
Stable Air Distribution
Intelligent Climate Control
The control system coordinates key HVAC functions to support stable laboratory operation.
- Temperature monitoring
- Humidity monitoring
- AHU operation
- Fresh air control
- Fan operation
- System scheduling
- Operating status monitoring
Continuous Operation & Reliability
Research facilities may operate for extended periods, making HVAC reliability an important system requirement.
The project therefore considered equipment accessibility, control stability and long-term maintenance during system planning.
- Stable HVAC operation
- Maintenance accessibility
- Filter replacement access
- Control-system monitoring
- Reliable air distribution
- Long-term equipment serviceability
Integrated Laboratory Climate Strategy
Air Handling Unit
+
Temperature Control
+
Humidity Management
+
Fresh Air
+
Filtration
+
Intelligent Controls
↓
Stable Research Environment
Project Benefits
| System Area | Project Benefit |
| Temperature | More stable indoor environmental conditions |
| Humidity | Improved humidity management during research operation |
| Fresh Air | Controlled outdoor air supply |
| Air Distribution | Stable airflow throughout controlled areas |
| System Control | Coordinated monitoring and HVAC operation |
| Reliability | Designed for stable long-term research-facility operation |
Research Laboratory Applications
- Research laboratories
- University laboratories
- Testing facilities
- R&D centers
- Controlled research environments
- Specialized equipment rooms
- Laboratory climate-control projects
YUJU Research Laboratory HVAC Solutions
YUJU EnvironTech provides customized HVAC and air-handling solutions for research facilities according to actual environmental and operating requirements.
Our approach evaluates temperature, humidity, airflow, filtration, fresh air, static pressure and controls together rather than treating each requirement as an independent system.
- Cooling and heating load review
- Laboratory AHU selection
- Airflow calculation
- Static-pressure review
- Temperature-control strategy
- Humidity-control strategy
- Fresh air ventilation planning
- Filtration configuration
- Supply and return air planning
- HVAC automation and monitoring
YUJU EnvironTech
Research Laboratory HVAC & Precision Climate Solutions
AHU | Temperature | Humidity | Fresh Air | Filtration | Intelligent Controls



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