SWEP International AB P O Box 105 Järvgatan 3B SE-261 44 Landskrona, Sweden www.swep.net SINGLE PHASE - DESIGN HEAT EXCHANGER: B649Mx384/1P-SC-S (B649M/1P-SC-S / 4xDN150C PN40 - ASME/PED) Art No: 17414-384 SSP Alias: B649M OFFERS' DETAILS ASSC PLOIESTI Customer: CONNECTION DATA Port P1 P2 P3 P4 NND 158 158 158 158 SWEP SSP G8 2025.910.5.0 Date: 15/09/2025 PORT FLOW CONFIGURATION Denomination FLANGE DN150C - ASME/PED (54) FLANGE DN150C - ASME/PED (54) FLANGE DN150C - ASME/PED (54) FLANGE DN150C - ASME/PED (54) CONNECTION LOCATION Side 1 (S1) Inlet P2 Outlet P4 Side 2 (S2) P3 P1 F - Side DUTY REQUIREMENTS Fluid Flow type Circuit Heat load Inlet temperature Outlet temperature Flow rate Pressure drop (Design PD) Thermal length PLATE HEAT EXCHANGER Total heat transfer area Heat flux Mean temperature difference Overall heat transfer coefficient required Pressure drop - total - in ports - inlet connections - outlet connections Port diameter (up/down) Number of channels per pass Number of plates Oversurfacing Fouling factor Reynolds number Port velocity (up/down) Channel velocity Shear stress Average wall temperature kW °C °C m³/h kPa m² kW/m² K W/m²,°C kPa kPa kPa kPa mm Side 1 Ethylene Glycol - Water (35,0 mass%) Counter-Current Outer 375,0 7,0 12,0 72,37 12,2 (20,00) 5,00 Side 2 Water Side 1 Side 2 Inner 13,0 8,0 64,43 7,64 (20,00) 5,00 250 1,50 1,0 1500 12,2 0,649 0,000 0,000 150/150 192 7,64 0,487 0,000 0,000 150/150 191 384 0 -0,012 % m²,°C/kW m/s m/s Pa °C P - Side 115,2 1,14/1,14 0,109 10,2 10,1 271,3 1,01/1,01 0,0971 6,31 10,1 www.swep.net 7dddf7f5-6ef4-4fce-a5de-af86fa04b340 Date: 15/09/2025 Page: 1/3 SWEP International AB P O Box 105 Järvgatan 3B SE-261 44 Landskrona, Sweden www.swep.net PLATE HEAT EXCHANGER Largest wall temperature difference Min./Max. wall temperature Side 1 Side 2 K °C 0,0 7,6/12,6 7,6/12,6 °C cP kg/m³ kJ/kg,°C W/m,°C W/m²,°C Side 1 9,5 3,59 1058 3,528 0,4226 2530 Side 2 10,5 1,29 999,6 4,192 0,5809 3790 Side 1 Side 2 852,23 1317,08 225,38 226,56 150 150 150 150 AISI316 Stainless Steel Copper 30 20 43 -196/225 NOTES Selection at low LMTD affect HTA in a large extent. PHYSICAL PROPERTIES Reference temperature Dynamic viscosity Density Heat capacity Thermal conductivity Film coefficient TOTALS Total weight empty Total weight filled Hold-up volume (Inner Circuit) Hold-up volume (Outer Circuit) Port size F1/P1 Port size F2/P2 Port size F3/P3 Port size F4/P4 Plate material Braze material Max operating pressure 20°C Max operating pressure 225°C Test pressure Minimal/Maximal working temperature kg kg dm³ dm³ mm mm mm mm bar(g) bar(g) bar(g) °C 30 20 43 DIMENSIONS A B C D E F G R mm mm mm mm mm mm mm mm Unit kg CO2e kg CO2e kg CO2e kg CO2e kg CO2e Value 4,247,3 4,454,5 4,829,6 6,725,4 11,537,4 1232 ±2 537 ±2 995 ±2 300 ±2 54 ±1 847,64 0 ±1 118,5 *This is a schematic sketch. For correct drawings please use the order drawing function or contact your SWEP representative. CARBON FOOTPRINT Sweden - Landskrona USA - Tulsa Slovakia - Košice Malaysia - Kuala Lumpur China - Suzhou www.swep.net 7dddf7f5-6ef4-4fce-a5de-af86fa04b340 Date: 15/09/2025 Page: 2/3 SWEP International AB P O Box 105 Järvgatan 3B SE-261 44 Landskrona, Sweden www.swep.net Legal notice: By using the SSP/DThermX software the Licensee confirms that the input data is not subject to export control laws including ITAR (International Traffic in Arms Regulations). Licensee further agrees and confirms that the configured products are not subject to export control laws including ITAR and do not qualify as “specially designed” for export control purposes. If you would like to discuss configuration of export controlled products including ITAR-qualifying products, or if your data is export controlled, please reach out to your SWEP representative or email info@swepgroup.com. Disclaimer: Data used in this calculation is subject to change without notice. SWEP strives to use ”best practice” for the calculations leading to the above results. Calculation is intended to show thermal and hydraulic performance, no consideration has been taken to mechanical strength of the product. Product restrictions - such as pressure, temperatures and corrosion resistance- can be found in SWEP product sheets and other technical documentation. SWEP may have patents, trademarks, copyrights or other intellectual property rights covering subject matter in this document. Except as expressly provided in any written license agreement from SWEP, the furnishing of this document does not give you any license to these patents, trademarks, copyrights, or other intellectual property. To the maximum extent permitted by applicable law, the software, the calculations and the results are provided without warranties of any kind, whether express or implied. No advice or information obtained through use of the software (including information provided in the results), will create any warranty not expressly stated in the applicable license terms. Without limiting the foregoing, SWEP does not warrant that the content (including the calculations and the results) is accurate, reliable or correct. SWEP does not warrant that any system comprising heat exchanger and other components, installed on the basis of calculations in this software, will meet your requirements or function to your satisfaction or expectations. www.swep.net 7dddf7f5-6ef4-4fce-a5de-af86fa04b340 Date: 15/09/2025 Page: 3/3