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The thesis was done in 2008 with the objective of creating a method of automatic design integrated with the manual calculations from VBA Microsoft excel to output a CAD drawing of the heat exchanger. įigure 1 HTRI Xchanger suite 6.0 interfaceġ.3 Thesis Source The manual calculations are done in thesis of Adi Indra Winata with the title of “Designing Shell and Tube Heat Exchanger of Fixed Head Type Using 3D Template Design” the thesis was done as one the prerequisites of completing the mechanical engineering bachelor degree in Universitas Indonesia. In our case, a Xist component is used to design the shell-and-tube heat exchanger with known values of temperature inputs, flow rate, geometry of tube, shell, and baffles, etc. Whereas Xfh can simulate the performance of cylindrical and box heaters. To name some, a Xace can simulate, rate and design an air cooler or economizer. There are different types of component that HTRI can simulate a total of 9 components can undergo various simulations. Moreover, the extensive output reports can also provide the detailed results including local profiles of all important parameters, etc. For instance, the results can also create graphs and scale drawings in-depth visualization of calculated results. There are many features that can be done by using HTRI besides including components of heat transfer for calculating the design of heat exchangers and fired heaters. HTRI’s calculation methods are backed by 50 years of extensive research and data collected on industrially relevant heat transfer equipment.
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The result from this report will visualize the output of both methods and therefore the feasibility of Adi Indra’s method of designing heat exchanger can be observed.ġ.2 HTRI Software The software used in this report is HTRI Xchanger Suite® Version 6.0. It is predicted that many values (for example: number tubes) of the heat exchanger are assumed to change in HTRI as compared to the tube obtained during manual calculation.
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Both the design of heat exchanger done by using HTRI and Adi Indra’s thesis are compared. Hence, a better performance of shell and tube type heat exchanger can be obtained. By using kern method for thermal calculation and number of iteration were done manually in Adi Indra’s thesis, then the results are being compared and analyzed in HTRI software. So, in order to have a good and optimized design, manual and software based calculations should be carried out simultaneously and verified with each other. It may happen sometimes that due to human error, manual design results may come out to be somewhat inaccurate. In the same way, manual design should also be verified with industrial software like HTRI. But it is also important to verify the results with manual calculations. HTRI is the most widely used software in the industry namely heat exchanger manufacturing industry. HTRI has a rigorous and integral approach which gives more accurate results compared to manual calculations. 15ĬHAPTER 1 INTRODUCTION 1.1 Background It has been observed that manual calculations often become lengthy and iterative. 15 Figure 20 Designed shell and nozzle from HTRI software. 14 Figure 19 Designed shell and nozzle from Adi’s thesis. 14 Figure 18 Tube arrangement from HTRI software.
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13 Figure 17 Tube arrangement from Adi’s thesis. 13 Figure 16 Shell and tube design from HTRI software. 12 Figure 15 Shell and tube design from Adi’s thesis. 11 Figure 14 Output summary from HTRI software. TABLE OF FIGURES Figure 1 HTRI Xchanger suite 6.0 interface. SHELL AND TUBE HEAT EXCHANGER DESIGN USING HTRI SOFTWAREĭEPARTMENT OF MECHANICAL ENGINEERING FACULTY OF ENGINEERING UNIVERSITY OF INDONESIA 2017ĬONTENTS TABLE OF FIGURES.