Javascript must be enabled to continue!
Dynamic Chaotic Evolution Law and Flow Characteristics of Pulsating Heat Pipes
View through CrossRef
Heating, ventilation and air conditioning (HVAC) accounts for an overwhelmingly large proportion of building energy consumption. Mass low-grade cold and heat energy dissipates during system operation, endowing pulsating heat pipes (PHPs) with promising application prospects in building energy systems. Combining experimental tests and the phase-space reconstruction method, this paper investigates the intrinsic correlation between the flow behavior of working fluids and chaotic characteristics under varied working fluids, heating powers and liquid filling ratios. The working fluid type dominates the oscillation characteristics of pulsating heat pipes. When distilled water serves as the working fluid, the attractor presents a scattered distribution. In contrast, the PHP charged with HFE-7100 achieves stable unidirectional circulation with high-frequency, small-amplitude pulsation, forming a densely distributed attractor. Increasing the flow velocity of the working fluid drives the attractor distribution to evolve from scattered to concentrated. Intermittent flow of the working fluid induces a multi-temperature-zone distribution on the tube wall, and the attractor takes on a multi-region spiral morphology. A low liquid filling ratio triggers working fluid dry-out, and the attractor trajectory maintains a continuous unidirectional upward trend; by comparison, the attractor shows a multi-region spiral distribution under high filling ratio conditions. Research on chaotic dynamic characteristic identification, evolutionary law analysis and stable domain regulation of pulsating heat pipes can lay a theoretical foundation for structural optimization and operating condition adjustment of high-performance pulsating heat pipe devices for building waste heat recovery.
Title: Dynamic Chaotic Evolution Law and Flow Characteristics of Pulsating Heat Pipes
Description:
Heating, ventilation and air conditioning (HVAC) accounts for an overwhelmingly large proportion of building energy consumption.
Mass low-grade cold and heat energy dissipates during system operation, endowing pulsating heat pipes (PHPs) with promising application prospects in building energy systems.
Combining experimental tests and the phase-space reconstruction method, this paper investigates the intrinsic correlation between the flow behavior of working fluids and chaotic characteristics under varied working fluids, heating powers and liquid filling ratios.
The working fluid type dominates the oscillation characteristics of pulsating heat pipes.
When distilled water serves as the working fluid, the attractor presents a scattered distribution.
In contrast, the PHP charged with HFE-7100 achieves stable unidirectional circulation with high-frequency, small-amplitude pulsation, forming a densely distributed attractor.
Increasing the flow velocity of the working fluid drives the attractor distribution to evolve from scattered to concentrated.
Intermittent flow of the working fluid induces a multi-temperature-zone distribution on the tube wall, and the attractor takes on a multi-region spiral morphology.
A low liquid filling ratio triggers working fluid dry-out, and the attractor trajectory maintains a continuous unidirectional upward trend; by comparison, the attractor shows a multi-region spiral distribution under high filling ratio conditions.
Research on chaotic dynamic characteristic identification, evolutionary law analysis and stable domain regulation of pulsating heat pipes can lay a theoretical foundation for structural optimization and operating condition adjustment of high-performance pulsating heat pipe devices for building waste heat recovery.
Related Results
Testing the Thermal Resistance and Power Capacity of Production Heat Pipes
Testing the Thermal Resistance and Power Capacity of Production Heat Pipes
In recent years heat pipes have become widely use in high performance air-cooled heat sinks for cooling electronics equipment. Such heat sinks rely on the heat pipes to collect hea...
Experimental Investigation on Performance of Pulsating Heat Pipe
Experimental Investigation on Performance of Pulsating Heat Pipe
Pulsating heat pipes (PHP) receives heat from the working fluid distributes itself naturally in the form of liquid–vapor system, i.e., receiving heat from one end and transferring ...
Characterization of Oil-Water Two-phase Flow Patterns in Vertical Upward Flow Pipes Based on Fractal and Chaotic Time Series Analysis
Characterization of Oil-Water Two-phase Flow Patterns in Vertical Upward Flow Pipes Based on Fractal and Chaotic Time Series Analysis
Abstract
Characterization of oil-water two-phase flow patterns in vertical upward oil-water two-phase flow having an inner diameter 18mm are elucidated based on f...
Development of Cementless Concrete Pipes Incorporating Bundled Fibers: An Alternate to Cement Concrete Pipes
Development of Cementless Concrete Pipes Incorporating Bundled Fibers: An Alternate to Cement Concrete Pipes
The use of cementless concrete (geopolymer concrete (GPC)) incorporating fly ash and bundled steel fibers to produce full-scale precast concrete pipes is an economical, viable and ...
Fuzzy Chaotic Neural Networks
Fuzzy Chaotic Neural Networks
An understanding of the human brain’s local function has improved in recent years. But the cognition of human brain’s working process as a whole is still obscure. Both fuzzy logic ...
Chaotic Dynamic Characteristics Analysis of a Single-Loop Pulsating Heat Pipe under Different Influencing Factors
Chaotic Dynamic Characteristics Analysis of a Single-Loop Pulsating Heat Pipe under Different Influencing Factors
The chaotic characteristics of working fluid flow and heat transfer in pulsating heat pipes are investigated in this study by means of nonlinear dynamics methods.By analyzing wall ...
From Constitutional Comparison to Life in the Biosphere
From Constitutional Comparison to Life in the Biosphere
From Constitutional Comparison to Life in the Biosphere is a monograph that argues for a fundamental reorientation of constitutional law around the realities of biospheric interdep...
Experimental Study on Heat Transfer Characteristic of Plate Pulsating Heat Pipe
Experimental Study on Heat Transfer Characteristic of Plate Pulsating Heat Pipe
An experimental system of flat plate pulsating heat pipe was established and experimental research was carried out in this system to understand the mechanism of heat transfer and o...

