- Title Information
- Title
- DESIGN AND VALIDATION OF AN ENHANCED HOMOGENEOUS ISOTROPIC TURBULENCE CHAMBER
- Type of Resource (primo)
- dissertations
- Name:
Personal
- Name Part
- Wang, Ricky
- Role
- Role Term:
Text
- creator
- Name:
Personal
- Name Part
- Zenit, Roberto
- Role
- Role Term:
Text
- Advisor
- Name:
Corporate
- Name Part
- Brown University. Engineering: Fluids and Thermal Sciences
- Role
- Role Term:
Text
- sponsor
- Origin Information
- Copyright Date
- 2026
- Physical Description
- Extent
- 7, 34 p.
- digitalOrigin
- born digital
- Note:
thesis
- Thesis (Sc. M.)--Brown University, 2026
- Genre (aat)
- theses
- Abstract
- This thesis presents the design, construction, and initial validation of an enhanced homogeneous isotropic turbulence chamber developed as an enlarged and improved version of a previous laboratory platform. The work focuses on chamber development rather than on complete turbulence characterization. The redesigned system preserves the impeller-driven truncated-cube concept of the earlier chamber while introducing a larger geometry, revised corner drive assemblies, improved access features, updated sealing methods, and a more robust support structure.
The chamber also incorporates an upgraded control architecture, including eight encoders, an Arduino GIGA controller, a PCA9685 PWM-distribution module, centralized power distribution, and PID-based motor-speed balancing. These additions were introduced to improve motor-speed synchronization across the eight-motor array and to establish a more controllable experimental platform.
Initial validation focused on system-level functionality. Preliminary tests showed that the redesigned chamber could operate as an integrated electro-mechanical system and that encoder-based feedback could bring the motor speeds into a common operating range after startup. Although detailed flow characterization remains part of future work, the present thesis establishes the redesigned chamber as a more capable platform for future studies of turbulence and multiphase flow.
- Subject
- Topic
- Experimental fluid mechanics
- Language
- Language Term (ISO639-2B)
- English
- Record Information
- Record Content Source (marcorg)
- RPB
- Record Creation Date
(encoding="iso8601")
- 20260516