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Full Welded Plate Heat Exchanger Evaporator Water Cooler Plate and Shell Heat Exchanger
Product Description
Plates
Plates can be produced in a wide range of materials. After pressing and cutting, the plates are welded together to form a fully welded platepack. Nozzles are added which carry flow in and out of the platepack (the 'Plate side' flowpath).
Shells
The fully welded platepack is assembled into an outer shell which creates a second flowpath ( the 'Shell side'). The different types of shell arrangements and the normal flow patterns are shown below.
Shell and plate type heat exchanger is composed of round plate bundle and shell, plate bundle is the core, sealed in shell. Plate defines the efficiency of PHE, while shell defines the design temperature and pressure.
The medium pass through the port holes and into the gap between the plates. The heat transfer takes place when the warmer product transfers energy through the flow plates and delivers it to the colder opposing medium without mixing the both products.
Plate and shell heat exchangers benefits
High pressure standing capability
High temperature standing capability
Minimum temperature difference
Lower pressure drop
Compact size
Robust and gasket free construction
High heat transfer efficiency
Easy to install and insulate
Many material available
Types of plate and shell heat exchangers
Heater, Cooler, Condenser, Vaporizer, Recuperator, Cascades, Evaporator, Desuperheaters, Subcooler, One Phase PHSE, Two Phase PHSE, Fully welded PHSE , Detachable PHSE
Technical Parameter for PSHE offer
Working condition
Duty
Flow rate
Medium
Working pressure
Working temperature
Pressure drop
Thermodynamics properties
Refinery, Petrochemical, Fine and Specialty Chemical, Pharmaceutical, Industrial Gas, Fertilizers, Food & Beverage, Edible Oil & Biodiesel, Pulp & Paper, Mining, Minerals and Metal Industry, Chemical process, Refrigeration industry, Marine industry, Power station, Energy, Chemical Process
Model | A | B | C | D | E | F | G |
BPS16 | 240 | 98 | 250 | 168 | 2.4*N+2 | DN15 | DN15-DN80 |
BPS22 | 448 | 135 | 310 | 219 | 2.4*N+3 | DN20 | DN20-DN100 |
BPS46 | 469 | 174 | 368 | 269 | 2.4*N+4 | DN40 | DN25-DN200 |
BPS72 | 565 | 277 | 460 | 355 | 2.4*N+4 | DN50 | DN25-DN300 |
BPS128 | 600 | 298 | 694 | 464 | 2.8*N+6 | DN80 | DN25-DN350 |
BPS179 | 963 | 338 | 725 | 559 | 2.8*N+6 | DN100 | DN25-DN400 |
BPS647 | 1520 | 650 | 1250 | 1016 | 2.8*N+6 | DN150 | DN25-DN700 |
BPS1200 | 1828 | 900 | 1548 | 1372 | 3.2*N+6 | DN300 | DN25-DN1000 |
BPS1600 | 2048 | 1000 | 1838 | 1562 | 3.2*N+8 | DN350 | DN25-DN1200 |
Material | |
Shell | Plate |
Carbon steel | AISI304 |
AISI 304 | AISI 316L |
AISI 904L | AISI 904L |
AISI 904L | 254 SMO |
254 SMO | TI |
TI | Nickle |
Hastelloy | Hastelloy 254 |
Others | Others |