• Heat Pump Water Heater Used Parallel-Flow Microchannel Condenser
  • Heat Pump Water Heater Used Parallel-Flow Microchannel Condenser
  • Heat Pump Water Heater Used Parallel-Flow Microchannel Condenser
  • Heat Pump Water Heater Used Parallel-Flow Microchannel Condenser
  • Heat Pump Water Heater Used Parallel-Flow Microchannel Condenser
  • Heat Pump Water Heater Used Parallel-Flow Microchannel Condenser

Heat Pump Water Heater Used Parallel-Flow Microchannel Condenser

Condensation Forms: Air-Cooled
Refrigerant: CHF2Cl
Type: Micro Channel
Material: Aluminium
Structural Form: Horizontal
Heat Transfer Mode: Regenerative
Samples:
US$ 100/Piece 1 Piece(Min.Order)
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Basic Info.

Model NO.
HM-1
Form
Micro Channel
Application Field
Machinery
Certification
RoHS, CE
Condition
New
Product Name
Heat Pump Water Heater Used Parallel-Flow Microcha
Fin Material
Aluminium
Design Serice
Be Viable
Brand
Shenglin
Fin Type
Louver Fin or Flat Fin or Corrugated Fin
Pressure Test
Keep 6.23 MPa(900psi)Hydraulic Pressure 3min
Collector Material
Aluminum
Liquid Flow
Adjustable
Capacity
Optional
Power
220V/50Hz/60Hz
Transport Package
Wooden Packing
Specification
SGS, ROHS, ISO
Trademark
Shenglin
Origin
Shanghai, China
HS Code
8415909000
Production Capacity
3000units/Month

Product Description

Heat pump water heater used parallel-flow microchannel condenser 
Feature

1. Braze welding vs expanded tube joint
2. Metallic bonding between Micro channel tubes and fin.
3. Off the shell high performing split a/c system was examined in ARI conditions A, B and C with two condensers: Micro channel flat plate fin.
4. Condenses had the same volume, face, and air side area.
5. It performed better and consequently system performed better.
6. Average increase in capacity is 4% and in COP IS 17% improve
7. Charge reduction is 19% for the condenser and 9% for the system.
8. The MCHX has better corrosion resistance
9. The MCHX is built to last
10Area available for heat transfer in micro channel HX
How Heat Transfer Works
 
Fin 
Type
Copper 
Tube 
O.D.
(mm)
Row 
Space
(mm)
Hole 
Space
(mm)
Fin 
Thickness
(mm)
Fin Space(mm)
Flat fin Sine wave with 
blade fin
Smooth sine wave fin Window 
fin
Sesamoid
fin
A 7 12.7 21 0.105 / / 1.3 1.3 /
B 7 13.2 17.6 0.105 / / 1.3 1.3 /
C 7 12.7 20.4 0.105 / / 1.3~1.8 1.3~1.8 /
D 7.94 15.88 25.4 0.105 1.8~3.0 1.8~3.0 1.8~3.0 1.8~3.0 /
E 7.94 19.05 22 0.105~0.13 1.4~3.0 1.4~3.0 1.4~3.0 1.4~3.0 /
E 9.52 22 25.4 0.105~0.15 1.6~3.2 1.6~3.2 1.6~3.2 1.6~3.2 /
F 9.52 22 25.4 0.18~0.4 3.5~6.35 / / / /
G 9.52 21.65 25 0.105~0.18 1.6~3.2 1.6~3.2 1.6~3.2 1.6~3.2 /
H 9.52 21.65 25 0.15~0.24 3.2~6.35 3.2~6.35 3.2~6.35 / /
I 12.75 27.5 31.75 0.115~0.15 1.5~3.5 1.5~3.5 1.5~3.5 1.5~3.5 1.6~3.2
J 15.88 33 38.1 0.115~0.15 1.5~4.0 1.5~4.0 1.5~4.0 / /
K 15.88 34.64 40 0.115~0.15 / 2.6~3.5 2.6~3.5 / /
Heat transfer occurs when there is a difference in temperature between two mediums. Heat will travel from the hot source to the cold source. The rate at which the heat transfer occurs at is determined by many factors such as the heat conductivity of the two materials and the difference in temperatures of the two mediums. Convectiuve heat transfer occurs when the materials are moving against each other. Plate heat exchangers have significantly good heat transfer rates because they use metal plates which have high heat conductivity rates and the plates are extremely thin. The plate heat exchangers also achieve high amounts of heat transfer through convective forces with both working fluids.

With large temperature differentials, great amounts of heat transfer can be achieved using a plate heat exchanger. Applications This is an extremely popular product which widely used in screw compressor. Refrigeration equipment, gas separation, natural gas liquefaction, and the petrochemical, vehicle engineering.

Heat Pump Water Heater Used Parallel-Flow Microchannel Condenser
Heat Pump Water Heater Used Parallel-Flow Microchannel Condenser
Heat Pump Water Heater Used Parallel-Flow Microchannel Condenser
Heat Pump Water Heater Used Parallel-Flow Microchannel Condenser
Heat Pump Water Heater Used Parallel-Flow Microchannel Condenser
 

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