COMBINATION FREEZING HEAD FOR NITROGEN-BRINE FREEZING
20190264415 ยท 2019-08-29
Assignee
Inventors
Cpc classification
International classification
Abstract
An apparatus for freezing ground comprises a freezing head extending along a longitudinal axis, and a first conduit for introducing a first cooling medium or a second cooling medium different therefrom into an interior of the freezing head. The first conduit opens into the interior a second conduit introduces the second cooling medium into the interior of the freezing head or draws the first and/or the second cooling medium off from the interior of the freezing head. The second conduit opens into the interior of the freezing head, the apparatus has at least three separate connections, namely a first connection, via which the first cooling medium can be introduced into the interior of the freezing head, a second connection, via which the second cooling medium can be introduced into the interior of the freezing head, and a third connection, via which the first or the second cooling means can be drawn off from the interior of the freezing head.
Claims
1. A ground freezing apparatus (1) comprising: a freezing head (100) extending along a longitudinal axis (L), a first conduit (10) for introducing a first cooling medium (F) or a second, different cooling medium (S) into an interior (102) of the freezing head (100), wherein the first conduit (100) opens into the interior (102), and a second conduit (20) for introducing the second cooling medium (S) into the interior (102) of the freezing head (100) or for withdrawing the first and/or the second cooling medium (F, S) from the interior (102) of the freezing head (100), wherein the second conduit (20) opens into the interior (102) of the freezing head (100), wherein the apparatus (1) has at least three separate connections (A1, A2, A3), namely a first connection (A1), via which the first cooling medium (F) can be introduced into the interior (102) of the freezing head (100), a second connection (A2), via which the second cooling medium (S) can be introduced into the interior (102) of the freezing head (100), and a third connection (A3), via which the first or the second coolant (F, S) can be withdrawn from the interior (102) of the freezing head (100).
2. The apparatus according to claim 1, characterized in that the first connection (A1) is formed on the first conduit (10), wherein the first connection (A1) particularly is provided on the face of the first conduit (10) such that the first coolant (F) can be introduced into the first conduit (10), as well as into the interior (102) of the freezing head (100), in the axial direction of the first conduit (10).
3. The apparatus according to claim 1, characterized in that the second connection (A2) is formed on the first conduit (10) outside the freezing head (100), wherein the second coolant (S) can be introduced into the first conduit (10) via the second connection (A2) and from the first conduit into the interior (102) of the freezing head (100), and/or that the third connection (A3) is formed on the second conduit (20) outside the freezing head (100), wherein the first coolant (F) or the second coolant (S) can be withdrawn from the second conduit (20), as well as from the interior (102) of the freezing head (100), via the third connection (A3).
4. The apparatus according to claim 1, characterized in that the apparatus has a fourth connection (A4), wherein the second coolant (S) can be withdrawn from the interior (102) of the freezing head (100) via the fourth connection (A4), and wherein the first coolant (F) particularly can be withdrawn from the interior (102) of the freezing head (100) via the third connection (A3).
5. The apparatus according to claim 4, characterized in that the fourth connection (A4) is formed on the face of the second conduit (20) such that the second coolant (S) can be withdrawn from the second conduit (20) in the axial direction thereof, wherein the third connection (A3) particularly is formed laterally on the second conduit (20) such that the first coolant (F) can be withdrawn from the second conduit (20) in the radial direction of the second conduit (20), and wherein the second connection (A2) particularly is formed laterally on the first conduit (10) such that the second coolant (S) can be introduced into the first conduit (10), as well as into the interior (102) of the freezing head (100), in the radial direction of the first conduit (10).
6. The apparatus according to claim 4, characterized in that the third and the fourth connection (A3, A4) are respectively provided on a shell (101) of the freezing head (100), wherein the third and the fourth connection (A3, A4) particularly are formed on a common connecting piece (34) that originates from the shell (101) of the freezing head (100).
7. The apparatus according to claim 4, characterized in that the third and the fourth connection (A3, A4) are respectively provided separately on a shell (101) of the freezing head (100), wherein the third and the fourth connection (A3, A4) are respectively formed on an associated connecting piece (30, 40), and wherein said connecting pieces (30, 40) originate from the shell (101).
8. The apparatus according to claim 4, characterized in that the apparatus has a fifth connection (A5), wherein the interior (102) of the freezing head (100) can be ventilated via the fifth connection and/or the second coolant (S) can be pressed out of the interior (102) of the freezing head (100) via the fifth connection.
9. The apparatus according to claim 8, characterized in that the fifth connection (A5) is formed laterally on said connecting piece (40), on which the fourth connection (A4) is also formed.
10. The apparatus according to claim 8, characterized in that the fifth connection is provided separately on a shell (101) of the freezing head (100), wherein the fifth connection (A5) particularly is formed on a connecting piece (50) that originates from the shell (101).
11. The apparatus according to claim 8, characterized in that the apparatus (1) has a sixth connection (A6), wherein a gaseous medium (G) can be introduced into the interior (102) of the freezing head (100) via the sixth connection.
12. The apparatus according to claim 11, characterized in that the sixth connection (A6) is provided separately on the shell (101) of the freezing head (100), wherein the sixth connection (A6) particularly is formed on an associated connecting piece (60) that originates from the shell (101).
13. The apparatus according to claim 7, characterized in that the sixth connection (A6) is formed laterally on said connecting piece (30), on which the third connection (A3) is also formed.
14. The apparatus according to claim 1, characterized in that the first and/or the second conduit (10, 20) respectively enter the freezing head (100) in the axial direction.
15. The apparatus according to claim 1, characterized in that the first and/or the second conduit (10, 20) are respectively arranged in the interior (102) of the freezing head (100) so as to be axially displaceable along the longitudinal axis (L) by means of a gland packing (80).
Description
[0048] Other characteristic features and embodiments of the present invention are described in greater detail below with reference to the figures. In these figures,
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[0059] An inventive ground freezing apparatus 1 of the type illustrated in
[0060] In this case, the freezing head 100 has a shell 101 that particularly is realized cylindrically and extends along said longitudinal axis or cylinder axis L, wherein said shell encloses an interior 102 of the freezing head 100, which serves for accommodating the respective coolants F and S. The freezing head 100 or the interior 102 may furthermore be closed toward the bottom by a base 103 connected to the shell 101 and toward the top by a cover 104 connected to the shell 101.
[0061] The inventive apparatus 1 according to
[0062] In
[0063] Furthermore, the inventive apparatus 1 generally has at least three separate connections A1, A2, A3, namely a first connection A1, via which the first cooling medium F can be introduced into the interior 102 of the freezing head 100, a second connection A2, via which the second cooling medium S can be introduced into the interior 102 of the freezing head 100, and a third connection A3, via which the first or the second coolant F, S can be withdrawn from the interior 102 of the freezing head 100 (in this respect, one of the connections A3 or A4 can be eliminated, e.g. in
[0064] Four connections A1, A2, A3, A4 preferably are provided in the embodiment according to
[0065] Furthermore, the second connection A2 is formed laterally on the first conduit 10 outside the freezing head 100, wherein the second coolant S can be introduced into the first conduit 10 via the second connection A2 in the radial direction and from the first conduit into the interior 102 of the freezing head 100. In this case, the second connection A2 may be provided on the face of a connecting piece 11, which respectively extends from the first conduit 10 in the radial direction or perpendicular to the first conduit 10 outside the freezing head 100.
[0066] The third connection A3 is formed laterally on the second conduit 20, namely also outside the freezing head 100, wherein the first coolant F can be respectively withdrawn from the second conduit 20 and the interior 102 of the freezing head 100 (particularly in the form of a gaseous phase) via the third connection A3. In this case, the third connection A3 may be provided on the face of a connecting piece 21, which respectively extends from the second conduit 20 radially or perpendicularly outside the freezing head 100.
[0067] Furthermore, the fourth connection A4 is provided on the face of the second conduit 20 such that the second coolant S can be withdrawn from the interior 102 of the freezing head 20 via the fourth connection A4 in the axial direction.
[0068] In contrast, the third and the fourth connection A3, A4 are in the embodiment according to
[0069] Furthermore, the first connection A1 is provided on the face of the first conduit 10 and serves for introducing the first coolant F into the interior 102 of the freezing head 100 in the axial direction L. In this case, the second connection A2 is provided on the face of the second conduit such that the second coolant S can be respectively introduced into the second conduit 20 and the interior 102 of the freezing head 101 via the second connection A2 in the axial direction L.
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[0071] In contrast to
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[0073] According to
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[0076] In the apparatus illustrated in
[0077] According to
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LIST OF REFERENCE SYMBOLS
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TABLE-US-00001 1 Apparatus 10 First conduit 20 Second conduit 11, 21, 30, 30a, 34a, 34b, 40, 40a, 50, 60 Connecting piece 100 Freezing head 101 Shell 102 Interior 103 Base 104 Cover A1, A2, A3, A4, A5, A6 Connection F First coolant S Second coolant G Gaseous medium L Longitudinal axis