ARCHIVES

Research Article

Analysis of Shell & Coil Heat Exchanger at Different Mass Flow Rate by Using Carbon Nano Tube Nano fluid

Aditya Anand1Vijaykant Pandey2

¹M-Tech Research Scholar, RKDF College of Technology, Bhopal, M.P, India. ²Assistant Professor, RKDF College of Technology, Bhopal, M.P, India.

Published Online: March-April 2023

Pages: 41-51

Cite this article

No DOI
Check for updates unavailable

Abstract

View PDF

Abstract: The recovery of waste heat has been a topic of concern for large-scale industrial companies for several decades. This recovery not only makes an operation more environment friendly, but it also helps to cut costs. In addition to this, it can reduce the amount of resources needed to power a facility. Many industries have implemented different methods of waste heat recovery. In this present paper the efforts are made to understand that how to compare the heat transfer rate in Shell and Helical coiled tube heat exchanger using Carbon tubes Nano fluid with Water as a base fluid in Shell and Helical Heat Exchanger with the help of CFD on copper tube. Shell and Helical coil was fabricated by bending 500 mm length of copper tube having 10mm tube diameter, 50 mm pitch coil diameter, 25mm pitch and tapered angle 20. The comparison of pressure drop and temperature variation between different mass flow rate with water as its base fluid in copper tube found in this analysis. The result indicates that the Carbon Nanotube nanofluid with water as a base fluid at 0.2m/s mass flow rate have maximum pressure drop and also have minimum temperature variation compare with other mass flow rate.

Related Articles

2023

A Mobile Application to Promote the Idea of Recycling

2023

Review: CFD Analysis Of triangular, square and Circular Shaped Helical Coil Heat Exchanger by Using Titanium Oxide Nano fluid

2023

Review: Steady and Transient Thermal Analysis of 100 Cc Engine at 3000c, 5000c & 7000c

2023

Overview of Advancement of Inventory Models for Deteriorating Items with Time Based Uniform Price

2023

Enhanced Dynamic Voltage Restorer for Improving the Power Quality Using RETO Algorithm

2023

Steady and Transient Thermal Analysis of A Splendor Engine at 5000c & 8000c

2023

Crop Disease Detection Using Neural Network and Machine Learning Algorithms

2023

Digital Electronics Uses In Real Life Applications

2023

NEP 2020: Implementation Challenges

2023

Underwater Welding: A Review

Analysis of Shell & Coil Heat Exchanger at Different Mass Flow Rate by Using Carbon Nano Tube Nano fluid | IJIRE