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Sommaire du brevet 2779757 

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Disponibilité de l'Abrégé et des Revendications

L'apparition de différences dans le texte et l'image des Revendications et de l'Abrégé dépend du moment auquel le document est publié. Les textes des Revendications et de l'Abrégé sont affichés :

  • lorsque la demande peut être examinée par le public;
  • lorsque le brevet est émis (délivrance).
(12) Demande de brevet: (11) CA 2779757
(54) Titre français: DISPOSITIF DE REGULATION DE LA TEMPERATURE D'UN COMPRESSEUR D'ASPIRATION POUR DES COMPRESSEURS R-744 TRANSCRITIQUES ET SOUS-CRITIQUES
(54) Titre anglais: SUCTION COMPRESSOR TEMPERATURE REGULATOR DEVICE FOR TRANSCRITICAL AND SUBCRITICAL R-744 COMPRESSORS
Statut: Réputée abandonnée et au-delà du délai pour le rétablissement - en attente de la réponse à l’avis de communication rejetée
Données bibliographiques
(51) Classification internationale des brevets (CIB):
  • F25B 49/02 (2006.01)
(72) Inventeurs :
  • KANTCHEV, JORDAN (Canada)
  • LESAGE, GAETAN (Canada)
(73) Titulaires :
  • EVAPCO SYSTEMS LMP, ULC
(71) Demandeurs :
  • EVAPCO SYSTEMS LMP, ULC (Canada)
(74) Agent: BENNETT JONES LLP
(74) Co-agent:
(45) Délivré:
(22) Date de dépôt: 2012-06-11
(41) Mise à la disponibilité du public: 2012-12-10
Licence disponible: S.O.
Cédé au domaine public: S.O.
(25) Langue des documents déposés: Anglais

Traité de coopération en matière de brevets (PCT): Non

(30) Données de priorité de la demande:
Numéro de la demande Pays / territoire Date
61/457,817 (Etats-Unis d'Amérique) 2011-06-10

Abrégés

Abrégé anglais


A suction compressor temperature regulator device, for use with at least one
compressor of a R-744 refrigeration system, includes a heating mechanism
located upstream of the at least one compressor of the refrigeration system,
in a
suction line thereof, for locally controlling the temperature of a R-744 fluid
of the
refrigeration system. The heating mechanism is typically in a form of a heat
exchanger connected to the suction line and using a heating fluid to transfer
heat therefrom to the R-744 fluid at the heat exchanger.

Revendications

Note : Les revendications sont présentées dans la langue officielle dans laquelle elles ont été soumises.


6
CLAIMS
The embodiments of the invention in which an exclusive property or privilege
is
claimed are defined as follows:
1. A suction compressor temperature regulator device for use with at least
one compressor of a R-744 refrigeration system, said device comprising:
a heating mechanism located upstream of the at least one compressor
of the refrigeration system, in a suction line of the at least one
compressor for locally controlling the temperature of a R-744 fluid of the
refrigeration system.
2. The device of claim 1, wherein the heating mechanism is in a form of a
heat exchanger connected to the suction line and using a heating fluid,
wherein heat from the heating fluid is transferrable to the R-744 fluid at
the heat exchanger.
3. The device of claim 2, wherein the heating mechanism includes a
heating fluid circuit with heating fluid modulating valve regulating a rate
of heating fluid circulating through the heat exchanger.
4. The device of claim 3, wherein the modulating valve is controlled by a
temperature of the R-744 fluid flowing in the suction line between the
heat exchanger and the at least one compressor.

7
5. The device of claim 4, wherein the heating fluid circuit includes a
pressure regulating valve located downstream of the modulating valve
and upstream of the heat exchanger.
6. The device of claim 5, wherein the at least one compressor is a
transcritical compressor, the suction line is a transcritical suction line,
the
heat exchanger is a transcritical heat exchanger, and the heating fluid
modulating valve is a transcritical heating fluid modulating valve;
the heating fluid circuit of the device further including a subcritical
heating fluid modulating valve regulating a rate of heating fluid
circulating through a subcritical heat exchanger connected to a
subcritical suction line of at least one subcritical compressor for
transferring heat to the R-744 fluid thereat.
7. The device of claim 6, wherein the subcritical modulating valve is
controlled by a temperature of the R-744 fluid flowing in the subcritical
suction line between the subcritical heat exchanger and the at least one
subcritical compressor.
8. The device of claim 7, wherein the pressure regulating valve is located
downstream of the transcritical and subcritical modulating valves and
upstream of the transcritical and subcritical heat exchangers.
9. The device of claim 5, wherein the heating fluid circuit is part of a heat
reclaim circuit of the refrigeration system.

8
10. The device of claim 9, wherein the heating fluid reaches the heat
exchanger before reaching a heat recuperator of the heat reclaim circuit.
11. The device of claim 10, wherein the heat recuperator is located between
the at least one compressor and a gas cooler of the refrigeration system
such that heat from the compressed R-744 fluid is transferred to the
heating fluid of the heat reclaim circuit.
12. A R-744 refrigeration system having at least one compressor and a
suction compressor temperature regulator device as claimed in claim 1
for use therewith.
13. The device of claim 1, wherein the heating mechanism is in a form of an
electrical heating device located at the suction line for transferring heat
to the R-744 fluid thereat.

Description

Note : Les descriptions sont présentées dans la langue officielle dans laquelle elles ont été soumises.


CA 02779757 2012-06-11
1
SUCTION COMPRESSOR TEMPERATURE REGULATOR DEVICE FOR
TRANSCRITICAL AND SUBCRITICAL R-744 COMPRESSORS
CROSS REFERENCE TO RELATED APPLICATION
Benefit of U.S. Provisional Application for Patent Serial No. 61/457,817 filed
on
June 10, 2011, is hereby claimed.
FIELD OF THE INVENTION
The present invention concerns refrigeration systems and methods, and more
particularly a suction compressor temperature regulator device for
transcritical
and subcritical R-744 compressors in R-744 refrigeration systems.
BACKGROUND OF THE INVENTION
Refrigeration systems are commonly used in supermarkets to refrigerate or to
maintain in frozen state perishable products, such as foodstuff.
Presently the R-744 subcritical refrigeration systems are defrosted
electrically
for the low temperature applications and by air defrost for the medium
temperature applications.
Furthermore, the suction temperature of R-744 compressors (subcritical or
transcritical) is required to be maintained at a level at least 36 F higher
than the
evaporating temperature in order to avoid oil foaming and to achieve reliable
and stable operation. This is extremely difficult to achieve by the habitual
methods used in Freon TM systems. The most common method used is suction
to liquid heat exchanger. However in the case of R-744 system the liquid
temperature is very low (around 20 F) and is inappropriate for use in such
heat
exchanger. It would be also difficult to regulate the liquid flow rate through
the
heat exchanger in order to achieve stable suction temperature at the required
level.

CA 02779757 2012-06-11
2
Accordingly, it would be desirable to have an improved suction compressor
temperature regulator device for transcritical and subcritical R-744
compressors
for refrigeration systems.
SUMMARY OF THE INVENTION
It is an object of the present invention to provide an improved suction
compressor temperature regulator device for transcritical and subcritical R-
744
compressors for refrigeration systems.
An advantage of the present invention is that the suction compressor
temperature regulator device is simple and allows the corresponding
compressor(s) to substantially remain within efficient operating conditions,
as
possible, by controlling the temperature of the R-744 fluid reaching the
compressor(s). The heating mechanism of the device is typically regulated by a
temperature sensor sensing the temperature of the R-744 fluid located between
the heating mechanism and the compressor(s).
According to an aspect of the present invention, there is provided a suction
compressor temperature regulator device for use with at least one compressor
of a R-744 refrigeration system, said device comprising:
- a heating mechanism located upstream of the at least one compressor
of the refrigeration system, in a suction line of the at least one
compressor for locally controlling the temperature of a R-744 fluid of the
refrigeration system.
In one embodiment, the heating mechanism is in a form of a heat exchanger
connected to the suction line and using a heating fluid, wherein heat from the
heating fluid is transferrable to the R-744 fluid at the heat exchanger.
Conveniently, the heating mechanism includes a heating fluid circuit with
heating fluid modulating valve regulating a rate of heating fluid circulating
through the heat exchanger.

CA 02779757 2012-06-11
3
Typically, the modulating valve is controlled by a temperature of the R-744
fluid
flowing in the suction line between the heat exchanger and the at least one
compressor.
Preferably, the heating fluid circuit includes a pressure regulating valve
located
downstream of the modulating valve and upstream of the heat exchanger.
In one embodiment, the at least one compressor is a transcritical compressor,
the suction line is a transcritical suction line, the heat exchanger is a
transcritical
heat exchanger, and the heating fluid modulating valve is a transcritical
heating
fluid modulating valve; the heating fluid circuit of the device further
including a
subcritical heating fluid modulating valve regulating a rate of heating fluid
circulating through a subcritical heat exchanger connected to a subcritical
suction line of at least one subcritical compressor for transferring heat to
the
R-744 fluid thereat.
Conveniently, the subcritical modulating valve is controlled by a temperature
of
the R-744 fluid flowing in the subcritical suction line between the
subcritical heat
exchanger and the at least one subcritical compressor.
Typically, the pressure regulating valve is located downstream of the
transcritical and subcritical modulating valves and upstream of the
transcritical
and subcritical heat exchangers.
In one embodiment, the heating fluid circuit is part of a heat reclaim circuit
of the
refrigeration system.
Conveniently, the heating fluid reaches the heat exchanger before reaching a
heat recuperator of the heat reclaim circuit.
Typically, the heat recuperator is located between the at least one compressor
and a gas cooler of the refrigeration system such that heat from the
compressed
R-744 fluid is transferred to the heating fluid of the heat reclaim circuit.
In one embodiment, the heating mechanism is in a form of an electrical heating
device located at the suction line for transferring heat to the R-744 fluid
thereat.

CA 02779757 2012-06-11
4
According to an aspect of the present invention, there is provided a R-744
refrigeration system having at least one compressor and a suction compressor
temperature regulator device as claimed in claim 1 for use therewith.
Other objects and advantages of the present invention will become apparent
from a careful reading of the detailed description provided herein, with
appropriate reference to the accompanying drawings.
BRIEF DESCRIPTION OF THE DRAWINGS
Further aspects and advantages of the present invention will become better
understood with reference to the description, provided for purposes of
illustration only, in association with the following figure, wherein:
Figure 1 is a schematic diagram of a suction compressor temperature regulator
device for transcritical and subcritical R-744 compressors in R-744
refrigeration
systems, in accordance with an embodiment of the present invention.
DETAILED DESCRIPTION OF THE INVENTION
In Figure 1, there is shown a simplified R-744 transcritical refrigeration
system
101 with a heat reclaim capabilities using a glycol solution as heat transfer
fluid,
incorporating an embodiment of a suction compressor temperature regulator
device 100 for transcritical and subcritical R-744 compressors in accordance
with the present invention.
In the suction line 1' of the transcritical compressors 1 of the refrigeration
system 101, the suction compressor temperature regulator device 100 includes
a heating mechanism that is preferably in the form of a heat exchanger 4 that
is
connected through conduit 9 and through modulating valve 14 to conduit 15,
and through conduit 8 to conduit 16 after the pressure regulating valve 10 of
a
heat reclaim circuit 11 having a typical recuperator 5 used to cool down the
hot
gas downstream of the compressors 1 (and provide comfort heating for the
building (not shown) at the same time, or the like) before the gas reaches the
gas cooler 6, thus allowing a warm glycol solution or the like to flow through
heat exchanger 4 at a controlled rate. The flow rate of the warm glycol
solution

CA 02779757 2012-06-11
is typically regulated by modulating valve 14 and is controlled by the
temperature, via a temperature sensor (not shown) or the like, of the R-744
fluid
vapours between heat exchanger 4 and compressor 1.
Similarly, in the suction line 2' of the subcritical compressors 2 of the
5 refrigeration system 101, the suction compressor temperature regulator
device
100 includes the heating mechanism that is preferably in the form of a heat
exchanger 3 that is connected through conduit 7 and through modulating valve
13 to conduit 15, and through conduit 8 to conduit 16 after the pressure
regulating valve 10, thus allowing a warm glycol solution or the like to flow
through heat exchanger 3 at a controlled rate. The flow rate of the warm
glycol
solution is typically regulated by modulating valve 13 and is controlled by
the
temperature, via another temperature sensor (not shown) or the like, of the
R-744 fluid vapours between heat exchanger 3 and compressor 2.
Although not shown, it would be obvious to one skilled in the art that any
other
warm fluid solutions could be considered to be used with the heat exchangers 3
and 4, or even different types of heating mechanism for controlled local
heating,
such as electrical heating device 3' or the like, of the fluid just upstream
(in the
suction line) of the transcritical 1 and/or subcritical 2 compressors, and
preferably controlled by the temperature, via a temperature sensor (not shown)
or the like, of the R-744 fluid vapours inside the suction line 2' just
upstream of
the compressor 2, without departing from the scope of the present invention.
Although the present invention has been described with a certain degree of
particularity, it is to be understood that the disclosure has been made by way
of
example only and that the present invention is not limited to the features of
the
embodiments described and illustrated herein, but includes all variations and
modifications within the scope and spirit of the invention as hereinafter
claimed.

Dessin représentatif
Une figure unique qui représente un dessin illustrant l'invention.
États administratifs

2024-08-01 : Dans le cadre de la transition vers les Brevets de nouvelle génération (BNG), la base de données sur les brevets canadiens (BDBC) contient désormais un Historique d'événement plus détaillé, qui reproduit le Journal des événements de notre nouvelle solution interne.

Veuillez noter que les événements débutant par « Inactive : » se réfèrent à des événements qui ne sont plus utilisés dans notre nouvelle solution interne.

Pour une meilleure compréhension de l'état de la demande ou brevet qui figure sur cette page, la rubrique Mise en garde , et les descriptions de Brevet , Historique d'événement , Taxes périodiques et Historique des paiements devraient être consultées.

Historique d'événement

Description Date
Exigences relatives à la nomination d'un agent - jugée conforme 2022-07-12
Exigences relatives à la révocation de la nomination d'un agent - jugée conforme 2022-07-12
Inactive : Certificat d'inscription (Transfert) 2022-03-11
Demande non rétablie avant l'échéance 2016-06-13
Le délai pour l'annulation est expiré 2016-06-13
Réputée abandonnée - omission de répondre à un avis sur les taxes pour le maintien en état 2015-06-11
Requête visant le maintien en état reçue 2014-06-05
Inactive : Page couverture publiée 2012-12-24
Demande publiée (accessible au public) 2012-12-10
Inactive : CIB en 1re position 2012-12-06
Inactive : CIB attribuée 2012-12-06
Exigences de dépôt - jugé conforme 2012-06-27
Inactive : Certificat de dépôt - Sans RE (Anglais) 2012-06-27
Demande reçue - nationale ordinaire 2012-06-27
Déclaration du statut de petite entité jugée conforme 2012-06-11

Historique d'abandonnement

Date d'abandonnement Raison Date de rétablissement
2015-06-11

Taxes périodiques

Le dernier paiement a été reçu le 2014-06-05

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  • taxe additionnelle pour le renversement d'une péremption réputée.

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Historique des taxes

Type de taxes Anniversaire Échéance Date payée
Taxe pour le dépôt - petite 2012-06-11
TM (demande, 2e anniv.) - petite 02 2014-06-11 2014-06-05
Enregistrement d'un document 2022-02-22 2022-02-22
Titulaires au dossier

Les titulaires actuels et antérieures au dossier sont affichés en ordre alphabétique.

Titulaires actuels au dossier
EVAPCO SYSTEMS LMP, ULC
Titulaires antérieures au dossier
GAETAN LESAGE
JORDAN KANTCHEV
Les propriétaires antérieurs qui ne figurent pas dans la liste des « Propriétaires au dossier » apparaîtront dans d'autres documents au dossier.
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Description du
Document 
Date
(aaaa-mm-jj) 
Nombre de pages   Taille de l'image (Ko) 
Description 2012-06-11 5 200
Abrégé 2012-06-11 1 13
Revendications 2012-06-11 3 69
Dessins 2012-06-11 1 23
Dessin représentatif 2012-11-29 1 14
Page couverture 2012-12-24 1 43
Certificat de dépôt (anglais) 2012-06-27 1 166
Rappel de taxe de maintien due 2014-02-12 1 113
Courtoisie - Lettre d'abandon (taxe de maintien en état) 2015-08-06 1 173
Taxes 2014-06-05 1 25