See how factory-assembled delta heat exchanger units in standard containers eliminate field wel
See how a permeable plate assembly balances pressure above heat exchange tubes to achieve even
See how offset distributor positioning and increased wall thickness reduce manifold refrigerant
Different groove counts, depths, and lead angles across parallel heat exchanger tubes improve heat transfer while limiting pressure loss.
See how combining flooded and liquid-film evaporator sections eliminates circulation pumps whil
See how a guide member directs heating medium toward plate edges to maintain temperature differ
See how a nested housing structure with intermediate adsorbent layer absorbs propane leaks to p
See how segmented air channels with separate discharge ports maximize refrigerator storage volu
See how a 76-87% isobutane mixed refrigerant achieves 4.1-7.2°C gliding temperature difference
See how a flow path switching unit dynamically reconfigures flat heat transfer tubes between se
See how condition-based purge unit activation minimizes power consumption while preventing non-
See how a crimped short-tube design reduces brazing steps and reinforces thin aluminum bell end
See how asymmetric standing portions around flat-tube notches maintain fin pitch and drainage w
See how a cascaded heat pump uses two refrigerant circuits with low-GWP fluids to maintain high
See how a fixing bracket clamps the condensing pipe instead of the fins, preventing deformation
See how a dual attachment system secures the receiver drier bottle to both heat exchanger and f
See how a multi-section service plate enables selective removal to access heat exchanger intern
See how welding an accumulator directly to a heat exchange core eliminates pipeline connections
See how an inclined demister extends vertically from the liquid surface to increase separation
A reduced-thickness inner conduit and aligned orifice layout improve liquid-gas mixing, cut head loss, and even refrigerant flow in headers.
See how a skin condenser system integrates into an exterior inset of a vacuum insulated refrige
See how differently shaped turbulator panels optimize flow paths for gaseous refrigerant and li
See how a hybrid evaporator uses vertical distribution tubes and segmented headers to reduce re
See how strategically positioned baffles redistribute vapor flow and trap liquid droplets in sh
See how overlapping deflection segments arranged in rows create helical flow for efficient heat
See how graduated cross-sectional areas in stacked branch passages maintain flow speed above 0.
See how a hybrid evaporator combines flooded and falling-film zones with U-shaped tube nesting
See how a hybrid evaporator combines flooded and falling-film sections with tortuous refrigeran
See how mechanically rolling aluminum tubes into tube supports eliminates brazing, reduces corr
See how asymmetric flat multi-hole tube distribution across airflow rows improves gas refrigera
See how defrost sensor placement and fan-driven warm air circulation enable natural convection
See how vertical pipe extension from the flow divider main body reduces head difference, preven
See how manifold baffles and parallel conduits enable cross-counterflow refrigerant-air heat ex
See how a three-plate stacked distributor with dimensioned hollow portions reduces internal vol
See how dual refrigerant transport circuits optimize passage sections and pressure drops for bo
See how a connection block with multiple distribution openings and optimized geometry improves
Varying inlet and branch pipe diameters by tube level balances refrigerant flow, simplifies fabrication, and preserves heat exchange efficiency.
See how oval-tube cross-sections and extracted conductive layers improve skin condenser thermal
See how obliquely oriented lug portions on corrugated fins preserve heat transfer passages duri
See how alternating straight and turning portions merge multiple tube segments into one continu
See how break-line fins enable L-shape bending without tube deformation, eliminating connection
See how segmented flow paths with parallel and counterflow configurations maintain refrigerant-
See how shared airflow and overlapping refrigerant pipes enable both microchannel heat exchange
Offset tube distribution across evaporator sections improves heat exchange and suppresses frost in non-azeotropic refrigerant cycles.
See how adjustable backing plates increase fin spacing in evaporators to reduce water vapor blo
See how segmented plate-like vapor channels balance evaporation area and flow depth to reduce t
See how a scrolling filter mechanism with sensor feedback automatically advances the filter win
See how a CHP system uses dynamic thermal storage, heat pumps, and multi-grade heat recovery to