Systems, methods, and devices are provided for extended thermal transfer from a heat plane. Consistent with this disclosure, a device can include at least one cooling device configured to transfer heat to a fluid, where the cooling device is characterized by at least two thermally conductive planes defining a channel for flow of the fluid, and where the material associated with the at least two thermally conductive planes is capable of transferring thermal energy to the fluid through the channel. The device can also include a heat pipe in direct thermal contact with the heat plane. Consistent with this disclosure, one of the at least two thermally conductive planes is aligned with and in direct thermal contact the heat plane, and another of the at least two thermally conductive planes is in direct thermal contact with the heat pipe.
F28D 15/02 - Heat-exchange apparatus with the intermediate heat-transfer medium in closed tubes passing into or through the conduit walls in which the medium condenses and evaporates, e.g. heat-pipes
F28F 3/02 - Elements or assemblies thereof with means for increasing heat-transfer area, e.g. with fins, with recesses, with corrugations
Systems, methods, and devices are provided for extended thermal transfer from a heat plane. Consistent with this disclosure, a device can include at least one cooling device configured to transfer heat to a fluid, where the cooling device is characterized by at least two thermally conductive planes defining a channel for flow of the fluid, and where the material associated with the at least two thermally conductive planes is capable of transferring thermal energy to the fluid through the channel. The device can also include a heat pipe in direct thermal contact with the heat plane. Consistent with this disclosure, one of the at least two thermally conductive planes is aligned with and in direct thermal contact the heat plane, and another of the at least two thermally conductive planes is in direct thermal contact with the heat pipe.
F28D 15/02 - Heat-exchange apparatus with the intermediate heat-transfer medium in closed tubes passing into or through the conduit walls in which the medium condenses and evaporates, e.g. heat-pipes
Materials, components, assemblies, and methods consistent with the disclosure are directed to the fabrication and use of sheets of material to provide channels for cooling through the flow of gas. An assembly for cooling can include a stack of alternating first and second blades, where each blade exhibits at least a first edge, a beveled edge, and a bend, the bend defining at least a first region and a second region, where the first region is substantially flat and bordered by the edge, the beveled edge, and the bend. An assembly can also include a sheet with folds to provide channels.
F28D 9/00 - Heat-exchange apparatus having stationary plate-like or laminated conduit assemblies for both heat-exchange media, the media being in contact with different sides of a conduit wall
H05K 7/20 - Modifications to facilitate cooling, ventilating, or heating
Materials, components, and methods consistent with the disclosure are directed to the fabrication and use of micro scale channels with a gas, where the micro channel can include a base (110) and a side (120), where the base and the side can be configured to form at least a portion of an inflow opening, and an outflow opening. The micro channel can be configured to accommodate a flow of the gas from the inflow opening to the outflow opening in a first direction substantially perpendicular to a cross section of the micro channel. The side can have a thickness in a range 0.5 μm and 500 μm, where the micro channel with a thickness in a range 0.5 μm and 500 μm is formed, in part, by providing the side on the base.
F25B 9/00 - Compression machines, plants or systems, in which the refrigerant is air or other gas of low boiling point
F28F 13/08 - Arrangements for modifying heat transfer, e.g. increasing, decreasing by affecting the pattern of flow of the heat-exchange media by varying the cross-section of the flow channels
H01L 23/467 - Arrangements for cooling, heating, ventilating or temperature compensation involving the transfer of heat by flowing fluids by flowing gases, e.g. air
F25B 9/06 - Compression machines, plants or systems, in which the refrigerant is air or other gas of low boiling point using expanders
6.
Method and apparatus for control of fluid temperature and flow
Materials, components, and methods consistent with the present invention are directed to the fabrication and use of micro-scale channels with a fluid, where the temperature and flow of the fluid is controlled through the geometry of the micro-scale channel and the configuration of at least a portion of the wall of the micro-scale channel and the constituent particles that make up the fluid. Moreover, the wall of the micro-scale channel and the constituent particles are configured such that collisions between the constituent particles and the wall are substantially specular.
F25B 9/00 - Compression machines, plants or systems, in which the refrigerant is air or other gas of low boiling point
B01L 3/00 - Containers or dishes for laboratory use, e.g. laboratory glasswareDroppers
F04B 19/00 - Machines or pumps having pertinent characteristics not provided for in, or of interest apart from, groups
F04B 37/06 - Pumps specially adapted for elastic fluids and having pertinent characteristics not provided for in, or of interest apart from, groups for evacuating by thermal means
F25B 9/04 - Compression machines, plants or systems, in which the refrigerant is air or other gas of low boiling point using Joule-Thompson effectCompression machines, plants or systems, in which the refrigerant is air or other gas of low boiling point using vortex effect using vortex effect
B01L 7/00 - Heating or cooling apparatusHeat insulating devices
Modular racks specifically designed for cooling computer equipment; cooling systems comprised of heat exchangers in direct thermal contact with computer equipment for data center servers; cooling systems for server racks, data centers, and computer rooms; modular cooling distribution systems comprised of heat exchangers in direct thermal contact with computer equipment
37 - Construction and mining; installation and repair services
Goods & Services
Modular racks specifically designed for cooling computer equipment; cooling systems comprised of non-machine part heat exchangers in direct thermal contact with computer equipment for data center servers; cooling systems comprised of non-machine part heat exchangers in direct thermal contact with computer equipment for server racks, data centers, and computer rooms; modular cooling distribution systems comprised of non-machine part heat exchangers in direct thermal contact with computer equipment Repair and maintenance of cooling systems for data centers and computer rooms
40 - Treatment of materials; recycling, air and water treatment,
42 - Scientific, technological and industrial services, research and design
Goods & Services
Custom manufacture of cooling systems for data centers and computer rooms [ Product research and development and consultation related thereto in the field of cooling systems for data centers and computer rooms ]
Materials, components, assemblies, and methods consistent with the disclosure are directed to the fabrication and use of sheets of material to provide channels for cooling through the flow of gas. An assembly for cooling can include a stack of alternating first and second blades, where each blade exhibits at least a first edge, a beveled edge, and a bend, the bend defining at least a first region and a second region, where the first region is substantially flat and bordered by the edge, the beveled edge, and the bend. An assembly can also include a sheet with folds to provide channels.
F28D 9/00 - Heat-exchange apparatus having stationary plate-like or laminated conduit assemblies for both heat-exchange media, the media being in contact with different sides of a conduit wall
11.
ASSEMBLY AND METHOD FOR COOLING COMPRISING A STACK OF ALTERNATING BLADES
An assembly for cooling comprises a stack of alternating first and second blades forming a series of channels for a flow of gas. Each first and second blade comprises a first edge, a beveled edge, and a bend defining first and second regions . In the first and second blades, the bend exhibits first and second elevation values, respectively, perpendicular to the first region. In the stack a first portion of a first perimeter of each first blade is aligned with a third portion of a second perimeter of the adjacent second blade, a second portion of the first perimeter of each first blade is aligned with a second portion of a second perimeter of the adjacent second blade; and a third portion of the first perimeter of each first blade is aligned with a first portion of the second perimeter of the adjacent second blade.
F28D 9/00 - Heat-exchange apparatus having stationary plate-like or laminated conduit assemblies for both heat-exchange media, the media being in contact with different sides of a conduit wall
12.
Method and apparatus for control of fluid temperature and flow
Materials, components, and methods consistent with the present invention are directed to the fabrication and use of micro-scale channels with a fluid, where the temperature and flow of the fluid is controlled through the geometry of the micro-scale channel and the configuration of at least a portion of the wall of the micro-scale channel and the constituent particles that make up the fluid. Moreover, the wall of the micro-scale channel and the constituent particles are configured such that collisions between the constituent particles and the wall are substantially specular.
F25B 9/00 - Compression machines, plants or systems, in which the refrigerant is air or other gas of low boiling point
B01L 3/00 - Containers or dishes for laboratory use, e.g. laboratory glasswareDroppers
F04B 19/00 - Machines or pumps having pertinent characteristics not provided for in, or of interest apart from, groups
F04B 37/06 - Pumps specially adapted for elastic fluids and having pertinent characteristics not provided for in, or of interest apart from, groups for evacuating by thermal means
F25B 9/04 - Compression machines, plants or systems, in which the refrigerant is air or other gas of low boiling point using Joule-Thompson effectCompression machines, plants or systems, in which the refrigerant is air or other gas of low boiling point using vortex effect using vortex effect
B01L 7/00 - Heating or cooling apparatusHeat insulating devices
Materials, components, and methods consistent with the disclosure are directed to the fabrication and use of micro scale channels with a gas, where the micro channel can include a base (110) and a side (120), where the base and the side can be configured to form at least a portion of an inflow opening, and an outflow opening. The micro channel can be configured to accommodate a flow of the gas from the inflow opening to the outflow opening in a first direction substantially perpendicular to a cross section of the micro channel. The side can have a thickness in a range 0.5 µm and 500 µm, where the micro channel with a thickness in a range 0.5 µm and 500 µm is formed, in part, by providing the side on the base.
Materials, components, and methods consistent with the disclosure are directed to the fabrication and use of micro scale channels with a gas, where the micro channel can include a base (110) and a side (120), where the base and the side can be configured to form at least a portion of an inflow opening, and an outflow opening. The micro channel can be configured to accommodate a flow of the gas from the inflow opening to the outflow opening in a first direction substantially perpendicular to a cross section of the micro channel. The side can have a thickness in a range 0.5 μm and 500 μm, where the micro channel with a thickness in a range 0.5 μm and 500 μm is formed, in part, by providing the side on the base.
H01L 23/467 - Arrangements for cooling, heating, ventilating or temperature compensation involving the transfer of heat by flowing fluids by flowing gases, e.g. air
15.
Method and apparatus for control of fluid temperature and flow
Materials, components, and methods consistent with the present invention are directed to the fabrication and use of micro-scale channels with a fluid, where the temperature and flow of the fluid is controlled through the geometry of the micro-scale channel and the configuration of at least a portion of the wall of the micro-scale channel and the constituent particles that make up the fluid. Moreover, the wall of the micro-scale channel and the constituent particles are configured such that collisions between the constituent particles and the wall are substantially specular.
F04B 19/00 - Machines or pumps having pertinent characteristics not provided for in, or of interest apart from, groups
F04B 37/06 - Pumps specially adapted for elastic fluids and having pertinent characteristics not provided for in, or of interest apart from, groups for evacuating by thermal means
F25B 9/00 - Compression machines, plants or systems, in which the refrigerant is air or other gas of low boiling point
B01L 7/00 - Heating or cooling apparatusHeat insulating devices
Materials, components, and methods are provided that are directed to the fabrication and use of micro-scale channels with a fluid for a heat exchange system, where the temperature and flow of the fluid is controlled, in part, through the macroscopic geometry of the micro-scale channel and the configuration of at least a portion of the wall of the micro-scale channel and the constituent particles that make up the fluid. Moreover, the wall of the micro-scale channel and the constituent particles are configured such that collisions between the constituent particles and the wall are substantially specular. Accelerating and decelerating elements provided herein can be configured with micro-scale channels which can trace out a generally spiral path.
Materials, components, and methods consistent with the present invention are directed to the fabrication and use of micro-scale channels with a fluid, where the temperature and flow of the fluid is controlled through the geometry of the micro-scale channel and the configuration of at least a portion of the wall of the micro-scale channel and the constituent particles that make up the fluid. Moreover, the wall of the micro-scale channel and the constituent particles are configured such that collisions between the constituent particles and the wall are substantially specular.
Materials, components, and methods consistent with the present invention are directed to the fabrication and use of micro-scale channels with a fluid, where the temperature and flow of the fluid is controlled through the geometry of the micro-scale channel and the configuration of at least a portion of the wall of the micro-scale channel and the constituent particles that make up the fluid. Moreover, the wall of the micro-scale channel and the constituent particles are configured such that collisions between the constituent particles and the wall are substantially specular.
Materials, components, and methods consistent with the present invention are directed to the fabrication and use of micro-scale channels with a fluid, where the temperature and flow of the fluid is controlled through the geometry of the micro-scale channel and the configuration of at least a portion of the wall of the micro-scale channel and the constituent particles that make up the fluid. Moreover, the wall of the micro-scale channel and the constituent particles are configured such that collisions between the constituent particles and the wall are substantially specular.