IP Library Granted Patent US 11,426,694
Granted Patent B2
US 11,426,694 · App. 16/758,350 · Granted Aug 30, 2022

Perfected heat exchanger and air drying system using the aforesaid heat exchanger

Inventors: Maurizio Nardini (Torsa di Pocenia, IT); Alessandro Falcone (Padua, IT); Massimo Bellosi (Lonigo, IT)
Assignee: Ceccato Aria Compressa S.R.L.
B01D53/265B01D5/0075F28D7/0066F28D9/0093F28D2021/0038F28F17/005
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,426,694
App. No.
16/758,350
Granted
Aug 30, 2022
Kind
B2
Abstract

A heat exchanger includes: a cooler/heater, an evaporator and a condensate separator, provided with inlet lines and outlet lines through which flows develop in countercurrent to each other for obtaining through the cooler/heater an incoming flow of hot and humid air and an outgoing flow of cooled cold air. The cooler/heater, the evaporator and the condensate separator are independent units from each other joined by a connection for defining a single-block body on whose outer surface inlet lines and outlet lines are provided. A first conduit places in communication the outlet line with the second inlet line; a second conduit places in communication the first outlet line with the first inlet line; and a third conduit places in communication the first outlet line with the first inlet line. The conduits project from the outer surface that delimits the single-block body.

Claims (36)

1. A heat exchanger particularly adapted for cooling and dehumidifying air, comprising:

a cooler/heater provided with heat exchange surfaces configured so as to define between them two countercurrent paths that comprise:

a first path for a flow of hot and humid air, which extends between a first inlet line and a first outlet line;

a second path for a flow of cold dehumidified air, which extends between a second inlet line and a second outlet line;

an evaporator provided with heat exchange surfaces configured so as to define between them two countercurrent paths that comprise:

a first path for a flow of partially cooled humid air, coming from said first outlet line of said cooler/heater, which extends between a first inlet line and a first outlet line;

a second path for a coolant fluid, coming from an external source, which extends between a second inlet line and a second outlet line;

a condensate separator, in which condenser surfaces are provided, configured so as to define between them a path for cooled humid air coming from said first outlet line of said evaporator, which extends between an inlet line and an outlet line,

said cooler/heater, said evaporator and said condensate separator being separate and discrete units that each independently encircle the paths extending therethrough and which are joined together by separate connection means for defining a single-block body on whose outer surface said inlet lines and said outlet lines are provided, further comprising:

a first conduit that places in communication said outlet line of said condensate separator with said second inlet line of said cooler/heater;

a second conduit that places in communication said first outlet line of said cooler/heater with said first inlet line of said evaporator;

a third conduit that places in communication said first outlet line of said evaporator with said first inlet line of said condensate separator,

said conduits being arranged projecting externally from said outer surface that delimits said single-block body;

further comprising:

said cooler/heater comprising a first outer wall that encircles said first path and said second path thereof;

said evaporator comprising a second outer wall that encircles said first path and said second path thereof; and

said condensate separator comprising a third outer wall that encircles said path thereof, wherein said first outer wall, said second outer wall, and said third outer wall are separate and discrete walls with said connecting means connecting said first outer wall to said third outer wall and connecting said second outer wall to said third outer wall so that said condensate separator is disposed between said cooler/heater and said evaporator, wherein said cooler/heater, said evaporator and said condensate separator are joined together by said connection means after being manufactured independently from each other.

2. The heat exchanger according to claim 1 , wherein said conduits are defined between said outer surface of said single-block body and covers with a concave profile, each of which has a perimeter edge which is sealingly fixed to said outer surface of said single-block body and externally to the perimeter of each pair of said lines, through said connection means.

3. The heat exchanger according to claim 2 , wherein said covers comprise:

a first cover that is applied to said second inlet line of said cooler/heater and to said outlet line of said condensate separator for defining said first conduit;

a second cover that is applied to said first outlet line of said cooler/heater and to said first inlet line of said evaporator for defining said second conduit;

a third cover that is applied to said first outlet line of said evaporator and to said first inlet line of said condensate separator for defining said third conduit.

4. The heat exchanger according to claim 1 , wherein said second inlet line and said second outlet line of said cooler/heater and said second inlet line and said second outlet line of said evaporator each communicate with a junction sleeve adapted for connection with a corresponding inlet or outlet pipe.

5. The heat exchanger according to claim 3 , wherein in said third cover a perforated sleeve is provided, for draining the condensate.

6. The heat exchanger according to claim 1 , wherein said cooler/heater, said evaporator and said condensate separator are of the finned pack type with countercurrent flow.

7. The heat exchanger according to claim 1 , wherein said condensate separator is of the coalescence type.

8. The heat exchanger according to claim 1 , wherein said connection means are weldings.

9. The heat exchanger according to claim 1 , wherein said connection means are flanged junctions.

10. A compressed air drying system comprising at least one heat exchanger for cooling and drying the compressed air produced by a compressor unit, wherein said heat exchanger is realised according to claim 1 .

11. The heat exchanger according to claim 1 , wherein the connecting means comprises welding.

12. The heat exchanger according to claim 1 , wherein said first path and said second path of said cooler/heater each comprise:

first portions that cross over and extend orthogonal to each other; and

second portions that extend parallel to each other.

13. A method for forming the heat exchanger according to claim 1 , the method comprising:

independently forming each of said cooler/heater, evaporator and condensate separator; and

joining together the formed cooler/heater, evaporator and condensate separator using said connection means.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 9, 2020
From: NARDINI, MAURIZIO; FALCONE, ALESSANDRO; BELLOSI, MASSIMO
To: CECCATO ARIA COMPRESSA S.R.L.
Reel/Frame 052878/0603 →
Priority Claims (1)
IT 102017000119692 · Oct 23, 2017 · national
Continuity (1)
Related Publication 20200254386A1 · Aug 13, 2020
Cited By (1)
US 12,235,050