Popular on TelAve
- Still Using Ice? FrostSkin Reinvents Hydration
- OneVizion Announces Next Phase of Growth as Brad Kitchens Joins Board of Directors
- Nest Finders Property Management Named #1 in Jacksonville and Ranked #99 Nationwide
- Inkdnylon Simplifies Digitizing and Vector Art Nationwide With Clear Pricing and Guided File Support
- Half of Finnish Online Gambling Expenditure Now Flows to Offshore Instant Casinos as License Applications Open March 1, 2026
- Market Value Enhancement From 2 Important New US Patents Issued for Strengthening Hair Enzyme Booster Technology to Caring Brands (NAS DAQ: CABR)
- Georgia's Lanier Islands Resort Tees Up for a New Era of Golf in Spring 2026
- Kaltra Expands Microchannel Innovation to Deliver Lower Refrigerant Charge
- EPP Pricing Platform announces leadership transition to support long-term growth and continuity
- purelyIV Expands Concierge Wellness Platform with New IV Therapies, Memberships, and Digital Experience
Kaltra Introduces New Downward-Spraying Distribution Technology to Boost Microchannel Evaporator Performance
TelAve News/10889434
ALTMUNSTER, Austria - TelAve -- Kaltra has announced the development of a new refrigerant distribution technology that significantly improves the performance of microchannel evaporators — one of the most critical components in modern cooling and heat pump systems.
The Challenge: Uneven Refrigerant Flow
In microchannel evaporators, cooling efficiency depends on how evenly refrigerant is distributed across dozens of parallel microchannels. When the refrigerant enters the inlet header in a two-phase state (liquid and vapor), the heavier liquid naturally settles at the bottom while the lighter vapor rises to the top.
This separation causes uneven feeding of the microchannels: some channels receive mostly vapor, others too much liquid. The result is reduced heat transfer efficiency, unstable operation, and significant performance losses.
More on TelAve News
In practical terms:
The Solution: Downward-Spraying Distributor (DSD)
To address this issue, Kaltra developed a new Downward-Spraying Distributor (DSD) architecture.
Instead of injecting refrigerant sideways inside the header — as in traditional designs — the DSD injects refrigerant vertically downward through precisely calibrated openings. This seemingly simple change produces a powerful effect:
By mechanically disrupting natural phase separation, the DSD ensures that each microchannel receives a more consistent liquid–vapor mixture.
More on TelAve News
Near-Ideal Performance Achieved
Testing confirmed that evaporators equipped with Kaltra's DSD technology demonstrate performance losses as low as 1–3%, approaching ideal distribution conditions.
The system also maintains high distribution uniformity:
Compared to conventional designs, the DSD concept represents a major improvement in evaporator stability, efficiency, and surface utilization.
Raising the Standard for Microchannel Technology
By solving one of the fundamental challenges of two-phase refrigerant flow inside horizontal headers, Kaltra's new distributor technology sets a new benchmark for microchannel heat exchanger performance.
The development reinforces Kaltra's commitment to advancing thermal management solutions through practical engineering innovation and measurable performance gains.
The Challenge: Uneven Refrigerant Flow
In microchannel evaporators, cooling efficiency depends on how evenly refrigerant is distributed across dozens of parallel microchannels. When the refrigerant enters the inlet header in a two-phase state (liquid and vapor), the heavier liquid naturally settles at the bottom while the lighter vapor rises to the top.
This separation causes uneven feeding of the microchannels: some channels receive mostly vapor, others too much liquid. The result is reduced heat transfer efficiency, unstable operation, and significant performance losses.
More on TelAve News
- Vesica Health Receives FDA Breakthrough Device Designation for AssureMDx
- Lineus Medical's SafeBreak® Vascular Added to Alliant GPO Contract
- Cancun All Inclusive is ready for Spring Break 2026 with new Resorts, Exclusive Deals, activities and more!
- 66% of US Bankruptcies Are Medical — So Americans Are Building Businesses That Cover Healthcare Emergencies
- Ludex Partners With Certified Trading Card Association (CTCA) To Elevate Standards And Innovation In The Trading Card Industry
In practical terms:
- Evaporators without any internal distributor can lose 25–35% of performance due to severe maldistribution.
- Systems equipped with conventional lateral-spraying distributors typically reduce losses, but still experience 10–15% performance degradation.
The Solution: Downward-Spraying Distributor (DSD)
To address this issue, Kaltra developed a new Downward-Spraying Distributor (DSD) architecture.
Instead of injecting refrigerant sideways inside the header — as in traditional designs — the DSD injects refrigerant vertically downward through precisely calibrated openings. This seemingly simple change produces a powerful effect:
- The downward spray works with gravity rather than against it.
- Liquid refrigerant is actively directed toward the lower region of the header.
- High-velocity jets create turbulence and fine mixing.
- Liquid and vapor phases are blended more evenly before entering the microchannels.
By mechanically disrupting natural phase separation, the DSD ensures that each microchannel receives a more consistent liquid–vapor mixture.
More on TelAve News
- Best Book Publishing Company for Aspiring Authors
- Dr. Nadene Rose Releases Moving Memoir on Faith, Grief, and Divine Presence
- Gigasoft Solves AI's Biggest Charting Code Problem: Hallucinated Property Names
- ASTI Ignites the Space Economy: Powering SpaceX's NOVI AI Pathfinder with Breakthrough Solar Technology: Ascent Solar Technologies (N A S D A Q: ASTI)
- Hiring has reached a "Digital Stalemate"—Now, an ex-Google recruiter is giving candidates the answers
Near-Ideal Performance Achieved
Testing confirmed that evaporators equipped with Kaltra's DSD technology demonstrate performance losses as low as 1–3%, approaching ideal distribution conditions.
The system also maintains high distribution uniformity:
- At coil inclination angles up to 30°
- At inlet vapor qualities below 0.4
- Under realistic operating and installation conditions
Compared to conventional designs, the DSD concept represents a major improvement in evaporator stability, efficiency, and surface utilization.
Raising the Standard for Microchannel Technology
By solving one of the fundamental challenges of two-phase refrigerant flow inside horizontal headers, Kaltra's new distributor technology sets a new benchmark for microchannel heat exchanger performance.
The development reinforces Kaltra's commitment to advancing thermal management solutions through practical engineering innovation and measurable performance gains.
Source: Kaltra GmbH
0 Comments
Latest on TelAve News
- Rocket Fibre Services Growing Customer Base With netElastic Networking Software
- Cummings Graduate Institute for Behavioral Health Studies Honors New Doctor of Behavioral Health Graduates
- IDpack v4 Launches: A Major Evolution in Cloud-Based ID Card Issuance
- CCHR Says Psychiatry's Admission on Antidepressant Withdrawal Comes Far Too Late
- 505 Plumbing, Heating & Cooling Launches in Albuquerque, Bringing a Customer-First Approach to Home Services
- As AI.com Sells For Record $70 Million, Attention Now Turns To ArtificialIntelligence.com
- ClearBeam Networks Launches HomeStation: Home Phone 2.0
- AOW Event Sponsored By The Stanglwirt Resort a renowned five-star Austrian wellness destination
- Average US gambler spends $210 per month in 2026
- 10X Recruitment Launches Operator-Led Executive Search for Behavioral Health and Legal Leaders
- Integris Composites developing armor for military in Arctic Circle
- Caraline Skincare's Gentle Glow Cleansing Oil Named Finalist for Best Face Cleanser at the 2026 CertClean Clean Beauty Awards
- Workplace safety ideas from the front lines to highlight Applied Ergonomics Conference in Arlington, Texas
- OpenSSL Corporation Advisory Committees' Elections 2026: Results Announcement
- Zarova Vodka Expands Its Ultra-Premium Spirits Portfolio Through Strategic Acquisitions
- The Legal AI Showdown: Westlaw, Lexis, ChatGPT… or EvenSteven?
- François Arnaud, star of Heated Rivalry, is the real-life inspiration behind Christopher Stoddard's novel At Night Only
- UK Financial Ltd Sets February 27 CATEX Debut for VENUS Coin, Opening Limited Early Access Through MayaPro Wallet
- Ice Melts. Infrastructure Fails. What Happens to Clean Water?
- Delay In Federal Disaster Assistance Causing Failure Of Small Business In Disaster Areas

