摘要:
In a refrigerant diverter (70), a vertically extending diverter case (71) has formed therein a plurality of diverting channels (74A to 74L) disposed along a circumferential direction, a diverting space (75) for guiding refrigerant to the diverting channels (74A to 74L), and a plurality of expelling spaces (76A to 76L) that communicate with the diverting space (75) through the diverting channels (74A to 74L), the expelling spaces being disposed along a vertical direction. A vertically extending rod-shaped rod member (74) is disposed inside the diverter case (71), and the diverting channels (74A to 74L) are configured from a plurality of holes extending in a longitudinal direction of the rod member (74) and integrally formed in the rod member (74).
摘要:
A heat exchanger (102) for use in a gas turbine engine has a central body including an inlet manifold (126) and at least one tube providing an outlet manifold (128), and a plurality of tubes communicating holes (133) in an outer periphery of the inlet manifold (126) to holes (131) in an outer periphery of the outlet manifold (128), and passages for cooling air to pass across the tubes.
摘要:
A heat exchanger is provided including a first manifold, a second manifold separated from the first manifold, and a plurality of heat exchanger tubes arranged in spaced parallel relationship fluidly coupling the first and second manifolds. A first end of each heat exchange tube extends partially into an inner volume of the first manifold and has an inlet formed therein. A distributor is positioned within the inner volume of the first manifold. At least a portion of the distributor is arranged within the inlet formed in the first end of one or more of the plurality of heat exchange
摘要:
Disclosed is a collecting pipe (1), comprising: an axially extending inner chamber (20), the inner chamber (20) comprising a refrigerant inlet chamber (18) and a refrigerant distribution chamber (19), the refrigerant inlet chamber (18) and refrigerant distribution chamber (19) being separated from each other and in fluid communication with each other, a refrigerant entering the refrigerant inlet chamber (18) and being distributed to heat exchange tubes (2) at the refrigerant distribution chamber (19); and a plurality of axially extending individual components (11, 12), wherein the refrigerant inlet chamber (18) and the refrigerant distribution chamber (19) are formed by successively placing and connecting the plurality of axially extending individual components (11, 12) in an assembling direction perpendicular to the axial direction. The collecting pipe (1) is composed of the plurality of individual components (11, 12). The plurality of individual components (11, 12) are connected together, such that the problem of two-phase flow distribution in a heat exchanger is mitigated, the heat exchange performance is improved, the problem of unstable product quality is mitigated, and the currently existing problem of the high cost of high frequency welded tubes is solved.
摘要:
Device (1) and method for temporary storage of thermal energy, comprising a housing (3) for accommodating a heat storage medium, particularly a phase change material, with at least one heat transfer medium line (7) which is arranged in the housing (3) and is connected to a feed device (5) for feeding a heat transfer medium in a heat-storage process, wherein the feed device (6) has a double pipeline (14) with an inner pipeline (15) which conveys the heat transfer medium in the vapour state and with an outer pipeline (16) which conveys the heat transfer medium in the liquid state, wherein the inner pipeline (15) has, in the region of a passage opening (18) between the outer pipeline (16) and the heat transfer medium line (7), an exit opening (20) so that a two-phase flow containing the heat transfer medium in the liquid state and in the vapour state can be fed into the heat transfer medium line (7).
摘要:
A manifold assembly and a heat exchanger are disclosed. The manifold assembly comprises a manifold (100), a distributing device arranged in the manifold (100) and provided with a distributing opening (401), an adjusting member (500) movably arranged on the distributing device and used for adjusting the distributing opening (401), and a driving member (600); the driving member (600) drives the adjusting member (500) to move by magnetic force so as to adjust the distributing opening (401). By changing the position of the driving member, the manifold assembly and the heat exchanger may change the position of the adjusting member through the magnetic force effect, so that the distributing opening is adjusted, and the distribution of coolant is further adjusted, thus satisfying requirements in different operation environments, and improving applicability and distribution effect of the coolant.