ACHR News
search
Ask ACHR NEWS AI
cart
facebook twitter instagram linkedin youtube
  • Sign In
  • Subscribe
  • Sign Out
  • My Account
ACHR News
  • NEWS
    • Breaking News
    • New HVAC Products
    • Featured Products
    • Manufacturer Reports
    • HVAC Data
    • Legislation
    • ACHR NEWS Centennial
  • RESIDENTIAL
    • Air Conditioners
    • Furnaces
    • Residential Heat Pumps
    • Ductless
    • Residential IAQ
    • Testing, Monitoring, Tools
    • Components & Accessories
  • COMMERCIAL
    • Air Handlers
    • Rooftop Units
    • Chillers and Cooling Towers
    • Commercial Heat Pumps
    • Boilers and Hydronics
    • VRF/Ductless
    • Commercial IAQ
  • REFRIGERATION
    • Refrigerants
    • Refrigerant Regulations
    • Leak Management
  • CONTRACTOR PRO
    • Geothermal
    • Homeowner Study
    • VRF and VRV Ductless
    • Unitary Trends
  • EDUCATION
    • Training and Education
    • Business Management
    • Service and Maintenance
    • Continuing Education
    • Market Research >
      • HVAC Brand Awareness Report
      • VRV, VRF, VRVZ Report
      • Unitary Trends Report
      • Water Heat Professionals Report
    • Webinars
    • Sponsor Insights
    • eProducts Info
    • White Papers
  • EVENTS
    • HVAC Contractor Forum
    • Industry Events and Webinars
  • MEDIA
    • Videos
    • AHR Expo 2025 Videos
    • Podcasts >
      • ACHR News Podcast
      • HARDI Podcasts
      • AHR Expo Podcasts
      • ACCA Podcasts
    • Interactive Spotlights
    • Quizzes
    • eBooks
    • HVAC Talkback
  • HVAC GROUP
    • ACHR NEWS >
      • Current Issue
      • Digital Edition
      • Subscribe
    • Distribution Trends
    • SNIPS NEWS >
      • Join SNIPS NEWS
    • Engineered Systems News >
      • Join ES News
    • HVACR Directory
    • Contests
    • Newsletters
    • Contact
    • Advertise
    • My Account
HVAC ContractingTechnical

How To Select The Best Oil Cooler

January 12, 2003
LAKE LANIER, Ga. — Oil-flooded screw compressors use oil for lubricating bearings and internal components, sealing internal rotating components to maximize efficiency, and absorbing the heat of compression during the compression process.

How do you choose the best oil cooler for your customer’s application? Become acquainted with the design, components, and benefits of various systems on the market.

Wayne Wehber, P.E., director of Market and Product Development for Vilter Manufacturing Co., Cudahy, Wis., took attendees of the Refrigerating Engineers and Technicians Association (RETA) conference here through system characteristics that need to be considered when choosing an oil cooler.

Wehber said there are two basic types of oil coolers: indirect and direct cooling.

Wehber described the two basic types of oil coolers: indirect and direct cooling.

Indirect Cooling

In indirect cooling, the oil is cooled through the heat transfer of an intermediate medium, Wehber explained.

“This is an outside system with an external heat exchanger, which uses water, liquid [such as glycol] or refrigerant, or thermosyphoning to cool.” Shell-and-tube and plate-type heat exchangers would both use indirect coolers.

In water-cooled external heat exchangers, oil flows out of the separator. Either a pump or differential pressure forces oil through the heat exchanger. The oil temperature usually is controlled by the thermostatic valve controlling bypass of the heat exchanger.

Wehber said that water-cooled cooling system components include:

  • External shell-and-tube or plate-type heat exchangers;

  • Three-way valve for temperature sensing, or a water-regulating valve;

  • External piping; and

  • A relief valve.

    The heat exchanger cools the oil before it is injected into the compressor.

    External systems that operate via thermosyphoning include shell-and-tube heat exchangers, plate-type (brazed, welded, or bolted plate-and-frame) heat exchangers, and shell-and-plate heat exchangers. In this system design, oil flows out of the separator and is forced through the heat exchanger via pumping or differential pressure forces. Oil temperature is controlled by a thermostatic valve controlling bypass of the heat exchanger.

    Thermosyphon cooling system components include:

  • External shell-and-tube or plate-type heat exchanger;

  • Three-way valve for temperature sensing;

  • External piping; and

  • A relief valve.

    The benefits of indirect cooling systems include the fact that they require little maintenance, and they are simple in design and operation. The disadvantages are that they may carry a higher system cost and a higher initial cost of cooling.

    Cool compression is a new oil-cooling design, Wehber noted.

    Direct Cooling

    The direct cooling method allows the refrigerant to be in direct contact with the oil/refrigerant mixture, Wehber explained. There are several direct oil-cooling designs.

    In the booster application, liquid refrigerant enters the discharge line of the compressor from a higher pressure source. In this system design, a nozzle sprays liquid refrigerant mist directly into the compressor discharge. The liquid refrigerant then mixes with oil and the compressed refrigerant.

    “The refrigerant flashes or evaporates, thus cooling the oil,” Wehber explained. A temperature sensor controlling the thermal expansion (TX) valve maintains discharge temperatures.

    Components of the booster method system include:

  • A screen upstream of the TX valve in the liquid supply;

  • A temperature sensor and matching TX valve, pulse-width modulating (PWM) or motorized valve; and

  • A nozzle inside the discharge piping “to spray liquid refrigerant, not just pour it in,” Wehber explained.

    For liquid injection into the discharge line of high-stage applications, liquid refrigerant is injected into the compressor’s discharge line. “It can be used when there is inadequate liquid feed pressure to high-stage applications,” Wehber said. A pump injects liquid refrigerant at a higher pressure.

    He explained that “A discharge temperature sensor signals the controller to the variable-speed pump, which speeds up or slows down to control the process. Liquid refrigerant is injected directly into the compressor discharge through a nozzle, mixing with oil and compressed refrigerant.” When the refrigerant flashes, the oil is cooled.

    Components of this system (also called the V-Plus) include:

  • The V-Plus pump with DC or AC and variable-speed controller;

  • Temperature sensor; and

  • Nozzle inside discharge piping.

    Direct liquid injection into the compressor provides cooling during the compression process, Wehber explained.

    In this type of system, he continued, a discharge temperature sensor signals the TX valve controlling liquid injection into the compressor. Liquid refrigerant evaporates during the compression cycle. The refrigerant gas/oil mixture is discharged from the compressor when it reaches the desired temperature.

    The compressors for this type of liquid injection system may have low and high port locations to inject liquid refrigerant. “Injection of liquid at the port of highest possible pressure minimizes recompression,” advised Wehber.

    Its components include:

  • A screen upstream of the TX valving liquid supply; and

  • A temperature sensor and matching TX valve.

    Cool compression is a new oil-cooling design, Wehber said. “It was started as a liquid ammonia flooded screw oil cooling system.” That test ran for a year, and the manufacturer recognized the benefit of having some oil in the mixture injected into a single screw compressor: It helps viscosity.

    The company also recognized the properties of liquid ammonia droplets for separation: No coalescing element is needed.

    “It starts like a standard oil-flooded unit,” Wehber said, “with oil sitting in a separator” and no oil pump. Cooling is initiated by a supply of liquid ammonia, the level of which is formed on top of the oil in the separator. “The ammonia forms a couple of inches deep on the oil,” Wehber said. “The oil isn’t aware of what is going on.”

    The oil-rich mixture is injected in the bearings and seal chamber. The oil and liquid ammonia are injected into the groove of the screw during the compression process.

    In the cool compression design, liquid ammonia droplets capture oil droplets inside the separator. The blanket of liquid ammonia on the oil completes the cooling process and keeps the oil from foaming.

    Its components include:

  • A screen upstream of the TX valve in the liquid supply; and

  • An ammonia liquid level control and matching TX valve.

    To monitor the liquid ammonia supply in the cool compression system, saturation temperature is calculated from the discharge pressure and compared with actual discharge temperatures to calculate superheat. When superheat is greater than 25 degrees F, the unit unloads. When superheat is greater than 35 degrees, the unit shuts down.

    In this design, the oil and liquid ammonia mixture reduces viscous drag of rotating components, Wehber said. When the mixture is injected at saturation temperature, it minimizes flashing of the ammonia and recompresses.

    It also minimizes preheating of gas entering the screw with cool oil/liquid injection temperatures. Ultimately this allows more capacity through the compressor, Wehber pointed out.

    The benefits of cool compression are low initial cost, simple design, less maintenance required, and more stable temperature control.

    “Liquid ammonia does some neat, wild stuff once it gets in contact with the oil,” Wehber pointed out.

    By knowing the types of system limitations and benefits beforehand, refrigeration contractors can make better informed decisions about oil cooling systems to meet their customers’ needs.

    Publication date: 01/13/2003

  • Looking for quick answers on air conditioning, heating and refrigeration topics? Try Ask ACHR NEWS, our new smart AI search tool. Ask ACHR NEWS →

    Share This Story

    Looking for a reprint of this article?
    From high-res PDFs to custom plaques, order your copy today!

     

    Recommended Content

    JOIN TODAY
    To unlock your recommendations.

    Already have an account? Sign In

    • HVAC-enrollment

      The Trades Are Back: HVACR Programs See Nearly 30% Enrollment Spike

      A new wave of future technicians is entering the pipeline.  
      News
      By: Matt Jachman
    • 2025 Top 40 Under 40

      2025 Top 40 Under 40 HVACR Professionals List

      The 11th annual Top 40 Under 40 list highlights those...
      News
      By: Hannah Belloli-Oster
    • LG Ductless Mini-Split Systems

      The 9 Types of Heat Pumps

      As the U.S. moves toward electrification, heat pumps are...
      Air Source Heat Pumps
      By: Joanna R. Turpin
    Subscription Center
    • Create an Account
    • Start a Subscription
    • Manage My Account
    • Sign Up for Newsletters
    • Visit Customer Service
    • Update Preferences

    More Videos

    Sponsored Content

    Sponsored Content is a special paid section where industry companies provide high quality, objective, non-commercial content around topics of interest to The News audience. All Sponsored Content is supplied by the advertising company and any opinions expressed in this article are those of the author and not necessarily reflect the views of The News or its parent company, BNP Media. Interested in participating in our Sponsored Content section? Contact your local rep!

    close
    • Piggy Bank
      Sponsored byWatercress Financial

      Energy Prices, Inflation, and HVAC: What Today’s Homeowners Care About

    • Refrigerated Food
      Sponsored bySolstice Advanced Materials

      R-455A Refrigeration: A Cold Storage Solution for the Future

    • Airex Rooftop Units
      Sponsored byAirex Manufacturing Inc

      Consolidating Roof Penetrations: A Growing Trend in Multifamily HVAC Design

    Popular Stories

    HVAC-Price-Increase-graphic

    HVAC Price Increase List: June 2026

    Trump-Section-232.jpg

    Trump Reduces Section 232 Tariffs on HVAC Equipment to 15%

    R410A-Refrigerant-Cylinder.jpg

    Refrigerant Recovery is a Revenue Opportunity

    Heat-pump-cutaway.jpg

    PFAS Rules and A2L Building Codes Continue to Evolve

    Midea-training.jpg

    HVAC Workforce Crisis Expands Beyond Technicians to Instructor Shortages

    View The ACHR NEWS
    Centennial Anniversary Timeline

    The ACHR News Timeline Chart
    Submit a Letter
    Submit a letter to our editors.

    Events

    November 6, 2025

    Next-Gen Data Center Cooling: HVAC Innovation and Real-World Solutions

    On Demand As AI workloads and high-density computing push traditional cooling methods to their limits, the data center industry is accelerating the adoption of next-generation HVAC technologies.

    June 17, 2026

    Decarbonization Without Disruption

    This webinar will explore practical HVAC decarbonization strategies that minimize disruption while maximizing long-term performance and ROI.

    View All Submit An Event

    Poll

    Summer Staff

    Are you fully staffed for the summer season?
    View Results Poll Archive

    Products

    BNI Mechanical/Electrical Square Foot Costbook, 2026 Edition

    BNI Mechanical/Electrical Square Foot Costbook, 2026 Edition

    See More Products
    Decarbonization Without Disruption - Free Webinar - 6/17/2026

    Related Articles

    • Ice Breaker: How to Select the Right Refrigerant

      See More
    • How to select the right welding tool

      See More
    • How to Select the Most Profitable Direct Mail List

      See More

    Related Products

    See More Products
    • front cover only.jpg

      How to Market Your HVAC Business

    • The ACHR News - February 16, 2026

      ACHR NEWS February 16, 2026, Issue

    See More Products

    Related Directories

    • Spot Coolers

      For 30 years, Spot Coolers has been the premier provider of the best engineered, highest performing portable air conditioning units. With 40 US locations, Spot Coolers provides cooling and heating solutions from computer rooms to emergency back-up cooling and heating. Rentals and sales.
    • Howe Corp.

      Howe manufactures flake ice making equipment for use with virtually any refrigerant including natural such as R-744, and R-717, Ice storage bins, Condensing units for our ice flakers.
    ×

    Sign Up. Stay Informed.

    The #1 trusted source for the HVACR industry since 1926

    SUBSCRIBE
    • RESOURCES
      • Advertise
      • Contact Us
      • Advisory Board
      • Classifieds
      • Submit a Letter
      • Directories
      • Store
    • ACCOUNT CENTER
      • Create an Account
      • Start a Subscription
      • Manage My Account
      • Sign Up for Newsletters
      • Visit Customer Service
      • Update Preferences
    • SERVICES
      • Marketing Services
      • Reprints
      • Market Research
      • List Rental
      • Survey/Respondent Access
    • STAY CONNECTED
      • LinkedIn
      • Facebook
      • Instagram
      • YouTube
      • X (Twitter)
    • PRIVACY
      • PRIVACY POLICY
      • TERMS & CONDITIONS
      • DO NOT SELL MY PERSONAL INFORMATION
      • PRIVACY REQUEST
      • ACCESSIBILITY

    Copyright ©2026. All Rights Reserved BNP Media, Inc. and BNP Media II, LLC.

    Design, CMS, Hosting & Web Development :: ePublishing