![]() ![]() ![]() HTRI SOFTWARE SOFTWAREMechanical design software for shell-and-tube exchangers, including 2D and 3D drawing capabilities. ![]() Software for evaluating heat transfer and pressure drop performance of enhanced surfaces. They offer a high level of confidence in predicting heat transfer and fluid flow characteristics in single- and two-phase flow, including considerations such as flow stability and maldistribution, and provide comprehensive fluid property predictions to support these. Honeywell UniSim® Heat Exchangers are validated programs designed for use by the process design community for the thermal design and simulation of heat exchange equipment. HTRI also licenses, distributes, and provides technical support for software products from other companies that provide our members with a full-range of options for their thermal process needs. Supported by extensive data collected for over 50 years on our industrial-scale heat transfer equipment, this software quickly and accurately handles heat exchanger calculations.Ĭalculation and trending of fouling resistances for shell-and-tube heat exchangers in single-phase service, using Microsoft® Excel® as the working environment with an optional link to Xist. HTRI Xchanger Suite Educational is a version of Xchanger Suite customized for use by educational institutions. These programs are regularly updated as we obtain and analyze new research data. HTRI Xchanger Suite provides tools for a wide variety of heat transfer equipment including shell-and-tube and non-tubular exchangers, air coolers and economizers, heat recovery bundles, fired heaters, and more. These thermal analysis and design tools are backed by our long-running proprietary research program. Heat exchanger, tubes and shell, software, EchTherm, HTRI, simulation, test, experimentation, test bench, measurement, data analysis, uncertainty.HTRI software products are widely recognized as the industry standard for the design, rating, and simulation of heat transfer equipment. This document is made available exclusively to GRETh members. It should be noted that the results of the comparisons (Software VS Experiments) are presented in the form of complete tables but also in the form of radar type graphs in order to propose an analysis of the results which is intended to be visual, fast and efficient while remaining sufficiently quantitative./p>Īt the very end of the document, a summary will be provided and will make it possible to propose perspectives on the axes of development and improvement of the EchTherm software. Global analyzes and associated explanations.Analysis and comparison of the results on each case study.Treatment and method of analysis of a test point.Analysis of measurement uncertainties.Presentation of the exchanger and the test bench.Thus, here are the themes of the main chapters of this report : This technical report is organized in such a way as to provide with the greatest possible clarity all the elements which enabled this work to be carried out. The main characteristics of the tests which were carried out are as follows : In order to complete this first analysis, GRETh therefore carried out a test campaign on a shell and tube heat exchanger in order to compare the software results with measurements taken from a test bench. As each software is equipped, among other things, with its own correlations and calculation methods, more or less important differences in results were noted between EchTherm and HTRI. Among the 9 case studies treated, 5 were carried out on a tube and shell heat exchanger technology. This document follows the technical report "Comparative study of calculation results between EchTherm and HTRI software on 9 case studies", written in 2018 by GRETh, which made it possible to compare the results of exchanger calculations from the EchTherm software with those of the Xchanger Suite 7 software from the company HTRI. The objective of this report is to provide the performance results of a shell and tube heat exchanger resulting from simulations carried out using EchTherm and HTRI software and to compare the results of said software with the experimental performance results of the same. ![]()
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