TopPodcast.com
Menu
  • Home
  • Top Charts
  • Top Networks
  • Top Apps
  • Top Independents
  • Top Podfluencers
  • Top Picks
    • Top Business Podcasts
    • Top True Crime Podcasts
    • Top Finance Podcasts
    • Top Comedy Podcasts
    • Top Music Podcasts
    • Top Womens Podcasts
    • Top Kids Podcasts
    • Top Sports Podcasts
    • Top News Podcasts
    • Top Tech Podcasts
    • Top Crypto Podcasts
    • Top Entrepreneurial Podcasts
    • Top Fantasy Sports Podcasts
    • Top Political Podcasts
    • Top Science Podcasts
    • Top Self Help Podcasts
    • Top Sports Betting Podcasts
    • Top Stocks Podcasts
  • Podcast News
  • About Us
  • Podcast Advertising
  • Contact
Not in our directory?
Add Show Here
Podcast Equipment
Center

toppodcastlogoOur TOPPODCAST Picks

  • Comedy
  • Crypto
  • Sports
  • News
  • Politics
  • True Crime
  • Business
  • Finance

Follow Us

toppodcastlogoStay Connected

    View Top 200 Chart
    Back to Rankings Page
    Business

    HVAC School – For Techs, By Techs

    Real training for HVAC ( Heating, Ventilation, Air Conditioning and Refrigeration) Technicians. Including recorded tech training, interviews, diagnostics and general conversations about the trade.

    Advertise
    • Apple Podcasts
    • Google Play
    • Spotify

    Latest Episodes:
    Locked Compressors and Hard Starts - Short #175 Oct 03, 2023
    Show notes

    In this short podcast episode, Bryan talks about locked compressors and hard starts. He explains what actually happens when a compressor locks and covers when and how to use hard starts appropriately.

    Locked compressors are compressors that trip on overload during startup; they're considered "locked" because the rotor doesn't turn inside the stator and generates heat instead. The overload opens, but the compressor shell typically does not heat up very much when the overload opens.

    When you have a locked compressor, you need to start investigating the root cause with a thorough visual inspection. Then, check the run capacitor. A hard start kit helps you get the equipment working, but we should make sure we've addressed underlying electrical issues or installation conditions before installing a hard start kit. If the unit is old, then we may use a hard start as a temporary solution until the customer can purchase a new unit. In any case, it's best to use a factory hard start if the system requires it, but it's okay to use an aftermarket hard start kit to get an old system to run.

    Hard start kits consist of a start capacitor in series with the start winding, which moves more current into the start winding and decreases the time it takes to start the compressor; lower current readings indicate a faster amperage drop, as most ammeters read timed average values. The potential relay needs to open to take the start capacitor out of the circuit so that we don't continuously apply additional current to the start winding, which hurts the compressor over time. The hard start kit is not a silver bullet that solves all problems, and we need to know when to use them and how to use them appropriately.

    Learn more about the 5th Annual HVACR Training Symposium at https://hvacrschool.com/Symposium24.

    If you have an iPhone, subscribe to the podcast HERE, and if you have an Android phone, subscribe HERE.

    Check out our handy calculators HERE.


    Residential Exhaust Codes and Best Practices Sep 28, 2023
    Show notes

    Licensed mechanical engineer Tony Amadio joins the podcast to talk about residential exhaust codes and best practices. He also put together a presentation about the topic, which you can view at https://hvacrschool.com/exhaust.

    When choosing duct materials for residential exhaust, you will want to stick to sheet metal and mind the gauge; flex ductwork can easily be damaged and will rack up a high total equivalent length in a way that sheet metal will not.

    Exhaust air should always discharge outdoors, not into an attic or crawl space, and that air needs to be replaced by air entering the conditioned space; makeup air is the air we draw in to replace the exhausted air, and we need appropriate undercuts to make sure we're getting the right amount of makeup air.

    Domestic cooking exhaust may also come in a few different varieties, each of which has different code requirements (with downdrafts needing much more CFM per ASHRAE). Range hood shape is also important for capturing as many particles as possible, but makeup air kits are usually unnecessary (and could be more of a hassle than they're worth).

    When it comes to bathroom exhaust, the CFM requirements differ between residential and light commercial, as well as intermittent and continuous exhaust. Steam generators may also be present, and they require extra consideration.

    Tony and Bryan also cover:

    • Tony's education and career background
    • Discharging and terminating exhaust air
    • Insect screens
    • Makeup air in light commercial applications
    • Clothing dryer vs. bathroom vents
    • Ductless clothes dryers and condensate piping
    • Home Ventilation Institute (HVI) guidelines
    • Pressure imbalance in a structure
    • Residential vs. light commercial bathroom exhaust
    • Static pressure, blower sizing, and exhaust duct sizing

    You can ask Tony questions by email at anthony.amadio@peloadcalcs.com.

    Learn more about the 5th Annual HVACR Training Symposium at https://hvacrschool.com/Symposium24.

    If you have an iPhone, subscribe to the podcast HERE, and if you have an Android phone, subscribe HERE.

    Check out our handy calculators HERE.


    Wiring Refrigerated Cases w/ Nathan & Phil Sep 14, 2023
    Show notes

    Phil Barr and Nathan Orr join the podcast to talk about wiring refrigerated cases in commercial spaces, including convenience stores and supermarkets.

    Cases may be medium-temp (or high-temp, in some cases) or low-temp. Medium-temp cases can typically defrost on their own during the off cycle, and low-temp cases may have electric or hot-gas defrost to help get ice off the coil at set intervals. Each system has an evaporator (and fans), compressor, condenser, and metering device (often a TXV or EEV), and low-temp refrigeration may have anti-sweat heaters, EPRs, and other components to manage.

    Challenges arise when electricians don't understand the fundamentals of commercial refrigeration, especially as the electrical circuitry relates to the refrigeration circuit components. Time crunches also apply a lot of pressure to electricians and refrigeration technicians. Testing circuits, such as fans and lighting, or using circuit tracers are good ways to get an idea of how an existing system is wired. Labeling wires and breakers and keeping those labels or information in places where others can read them can help you and other electricians in the future.

    One of the most common issues happens when technicians or electricians refuse to test out their results to catch their mistakes before callbacks happen. Even seemingly small electrical issues, such as improper lighting, can cause costly losses if product spoils and cannot be sold.

    Phil, Nathan, and Bryan also cover:

    • Changes in central and case control strategies over time
    • Challenges with retrofits and remodels
    • Central lighting controls
    • Mistakes that can be made when labeling wires or breakers
    • Working against the clock
    • Terminal blocks, DIN rails, and connectors
    • Making mistakes and the origin of animosity

    Learn more about the HVACR Training Symposium or buy a virtual ticket today at https://hvacrschool.com/symposium.

    If you have an iPhone, subscribe to the podcast HERE, and if you have an Android phone, subscribe HERE.

    Check out our handy calculators HERE.


    Things to Keep out of the System - Class Sep 07, 2023
    Show notes

    This podcast is a class taught by Bryan: Things to Keep Out of the System. He covers some installation best practices along the way to keep contaminants and non-condensable gases out of the system.

    We want to keep air, water, dirt, copper shavings, solvents, and nitrogen out of an operating system. All we want in an operating system is the appropriate oil and refrigerant for the system. Unfortunately, the POE and PVE oil we mostly use in residential systems nowadays are very hygroscopic; they attract water, and POE mixes with water to form acid, another thing we want to keep out of the system.

    We can pull most of the moisture out of the system by pulling a deep vacuum and following the best practices for a fast and deep evacuation. However, we can also reduce the probability of moisture getting into the system in the first place by NOT working on copper while it's raining outside, sealing the copper tubing adequately when routing it underground or in a chase (a common installation practice in Florida), and insulating it properly.

    Dirt can easily get into the system when we're modifying piping, especially when adding fittings or reaming, but we can use nitrogen or line set cleaners to flush it out. Purging the lines and flowing nitrogen while brazing also help keep air and water vapor out of the copper lines. When deburring, try to avoid letting the burr or copper shavings from falling into the tubing.

    Bryan also covers:

    • Drawbacks to running copper underground
    • Oil return and miscibility with refrigerant
    • Flowing nitrogen without a regulator
    • Leak detection and nitrogen pressure testing
    • Why we should ream or deburr copper to prevent leaks
    • Being able to trust your equipment

    Learn more about the HVACR Training Symposium or buy a virtual ticket today at https://hvacrschool.com/symposium.

    If you have an iPhone, subscribe to the podcast HERE, and if you have an Android phone, subscribe HERE.

    Check out our handy calculators HERE.


    ACH (Air Changes Per Hour) - Short #174 Sep 05, 2023
    Show notes

    In this short podcast, Bryan talks about air changes per hour, also known as ACH, and what it means in HVAC design and indoor air quality (IAQ) discussions.

    ACH tells us how frequently the entire volume of air in a room or structure is replaced; we are referring to the cubic feet of air leaving a space and then being replaced within that same space. If we have a balanced number of cubic feet per minute (CFM) of air supplied to and returned from the room in one hour, we would multiply that CFM by 60 to get the ACH, as there are 60 minutes in one hour. ACH should not be used to calculate heat loss and heat gain, even though BTUs are moved with air.

    ACH is a practical guideline for HVAC design. Ventilation needs will vary based on the purpose of a room and the number of occupants in it, and ACH tends to be a more important factor for determining how we can meet ventilation needs in commercial and industrial structures than in residential structures, in which we mostly rely on Manual J calculations of sensible and latent BTU gains and losses. However, we should not confuse ACH with outdoor air ventilation requirements as described in ASHRAE Standards 62.1 and 62.2.

    ACH also comes into play when it comes to infiltration and the tightness of an entire structure. When used in the context of blower door testing, the ACH will tell us if a building meets tightness standards. There is also a term called ACH50, which refers to air changes per hour at the standard pressure for blower door testing: -50 Pascals. ACH50 does not reflect ACH under natural conditions (ACH natural).

    If you have an iPhone, subscribe to the podcast HERE, and if you have an Android phone, subscribe HERE.

    Check out our handy calculators HERE.


    Oil Return and Refrigerant Charge in VRV w/ Roman Baugh Aug 31, 2023
    Show notes

    Roman Baugh joins the podcast to talk about oil return and the refrigerant charge in VRV systems.

    VRV systems—also known as variable refrigerant volume (or variable refrigerant flow/VRF) systems—have one outdoor unit, one or multiple compressors, and multiple indoor units. The outdoor unit modulates to meet the indoor units' fluctuating demands. They are versatile and flexible systems.

    Like parallel racks, VRV systems have long lines and a lot of piping, so oil return and refrigerant charge are especially critical. VRVs have specific control protocols, as they need refrigerant volume and velocity to move oil and keep it lubricating the compressor for its entire lifespan; oil return mode, the refrigerant charge, and the piping protocols are supposed to support that function.

    When it comes to piping protocols, line sizing is critical. Whenever there is a need to relocate the outdoor unit and change the piping configuration, the charge needs to be adjusted, and the piping may even need to be upsized to prevent restrictions from happening. Daikin has VRV WebXpress (and SplitXpress) software for equipment selection; the goal is to help installers out with the line length and charging whenever it needs to be changed.

    When trying to get the oil return and line sizing right, you ultimately need to look at the manufacturer's literature and resources. It also helps service technicians if the installer makes the charge and line information readily available to anyone who works on their VRV install in the future.

    Roman and Bryan also discuss:

    • Where and how oil can settle in VRVs

    • Consequences of improper charge in VRVs

    • Liquid lines in VRVs

    • Violating piping rules and safety protocols

    • Vertical separation in liquid line sizing

    • Suction line sizing

    • POE and PVE oil miscibility

    • Daikin's resources

    Check out daikincity.com to find Daikin's literature and software programs.

    If you have an iPhone, subscribe to the podcast HERE, and if you have an Android phone, subscribe HERE.

    Check out our handy calculators HERE.


    Magical Air Cleaning Oxides? - Short #173 Aug 29, 2023
    Show notes

    In this short podcast, Bryan talks about oxidation and all the buzz behind "magical air-cleaning oxides" and other similar IAQ products.

    Oxidation is the loss of electrons, and reduction is the gain of electrons; oxygen commonly loses electrons. Rusting is a common example of oxidation; it happens when iron and oxygen interact in air or water. Metals that are more likely to react with oxygen (or corrode) are "less noble" than more noble metals. Less-noble metals, known as anodes, are sometimes used sacrificially to prevent the oxidation of nobler base metals, known as cathodes.

    While iron oxidation results in corrosion, some IAQ products use the process to bind oxygen molecules to unwanted substances. The IAQ products that use oxidation use the natural tendency of oxygen to lose electrons when bonding with other molecules. Ozone is a common agent of these IAQ products because an ozone molecule is very unstable and has three oxygen atoms, meaning it combines with other molecules via oxidation; it stabilizes other unstable molecules. Ozone, however, also reacts similarly with cells in our respiratory system and can cause irritation.

    In our industry's efforts to reduce the negative effects of COVID-19 viruses, oxidation has generated a good deal of interest. Nowadays, some IAQ products use smaller amounts of ozone or use activated carbon to catch ozone before it enters the conditioned space. Many manufacturers that use oxidation as a strategy use other ion-based oxidizers, just not ozone. Some of these oxidizers can break pollutants into aldehydes and other chemicals that may harm our bodies.

    If you want to learn more, you can read Oxidizers and What It Has to Do With COVID-19.

    Learn more about the HVACR Training Symposium or buy a virtual ticket today at https://hvacrschool.com/symposium.

    If you have an iPhone, subscribe to the podcast HERE, and if you have an Android phone, subscribe HERE.

    Check out our handy calculators HERE.


    Can Filters Capture Viruses? - Short #172 Aug 22, 2023
    Show notes

    In this short podcast, Bryan talks about filtration and IAQ, especially as they relate to virus control. He also answers the age-old question: "Can filters capture viruses?"

    While it may seem like particle size matters when it comes to filter efficacy, filters are not nets that strain air particles and prevent pollutants from passing through. When we talk about particles, we tend to focus on ones that are 0.3 microns in diameter, which tend to be medium-sized particles. Viruses tend to be among the smallest particles that we aim to control when it comes to IAQ.

    Filter media are crisscrossed fibers that catch particles in different ways. Inertial impaction is one means of stopping particles from passing through; the initial impact stops the particles from passing through. Interception happens when particles graze filter fibers and get stuck. Electrostatic attraction relies on energy to attract and catch particles. Diffusion happens when smaller particles move more erratically due to Brownian motion and get caught in the filter media.

    Viruses are among those smaller particles. Smaller particles' erratic motion makes them more likely to collide with the filter media, so they aren't necessarily harder to catch. Higher MERV ratings are associated with higher capture efficiencies. HEPA filters surpass the MERV scale and have also been proven to filter viruses out of the air, but we rarely use true HEPA filtration in residential HVAC because they are too restrictive for total system airflow. We can use bypass HEPA filtration to filter the air without creating a massive restriction at the unit. Large filter-back returns with 2" filters can help catch more particles with a greater surface area without tanking the static pressure.

    Learn more about the HVACR Training Symposium or buy a virtual ticket today at https://hvacrschool.com/symposium.

    If you have an iPhone, subscribe to the podcast HERE, and if you have an Android phone, subscribe HERE.

    Check out our handy calculators HERE.


    Heat Pumps + Inverters w/ Joey H Aug 17, 2023
    Show notes

    Joey Henderson returns to the podcast to talk about heat pumps and inverters.

    The reversing valve, defrost cycles, and auxiliary heat can cause confusion for people who have primarily worked with furnaces or straight-cool A/C systems. Heat pumps use defrost cycles and bring on the auxiliary heat when the coil is ice-bound, which can present a challenge; we need to maintain cold coils without going into defrost all the time.

    Even though heat pumps were significantly less effective in years past, we will still see reduced performance in very cold conditions with the newer inverter-driven systems. Proper design, installation, and commissioning will also help occupants get the best performance out of their heat pumps.

    Inverters offer plenty of advantages for the cooling aspect of heat pumps, too, especially when it comes to achieving longer runtimes for dehumidification. They can also float their coil temperature, much like how refrigeration systems can use floating suction or head pressure. Condensate assemblies absolutely must be run properly to prevent backed-up drains and other related problems. Liquid line sizing and proper commissioning are also especially crucial for ductless inverter-driven systems.

    Joey and Bryan also discuss:

    • Heat pump training and the electrification initiative
    • Balance point
    • Defrost strategies and universal defrost boards
    • Dual-fuel systems
    • Heat pump stigmas
    • Blower door testing in various climate zones
    • Surge protection and voltage monitoring
    • How inverters work
    • Occupant lifestyles and latent loads
    • Zoning and duct design for inverter-driven systems
    • Critical charge
    • Line length for ductless systems

    Check out Joey's training, social media, and contact information at https://joejoehvac.com/. You can also check out Craig Migliaccio's book about mini-splits at https://www.acservicetech.com/mini-split-book.

    Learn more about the HVACR Training Symposium or buy a virtual ticket today at https://hvacrschool.com/symposium.

    If you have an iPhone, subscribe to the podcast HERE, and if you have an Android phone, subscribe HERE.

    Check out our handy calculators HERE.


    Get Air Where it Needs to Go W/ Joey H. Aug 10, 2023
    Show notes

    Joey Henderson joins the podcast to talk about airflow and how we can get air where it needs to go.

    Duct design is one of the subjects that fuel Joey's passion for HVAC. In many cases, people focus too heavily on the equipment when diagnosing airflow problems; sometimes, the equipment simply can't perform as it should due to a poorly designed duct system. In residential HVAC, many duct systems aren't adequately planned out, and the airflow can't overcome restrictions like filters. We also need to keep in mind that flex ducts need to be as straight and tight as possible, and it's usually best if we slightly upsize them (compared to sheet metal).

    Even though balancing dampers aim to solve airflow problems, they often lead to other issues when installed and used incorrectly. In many cases, proper duct design would solve problems without the need for balancing dampers. Bypass dampers are also commonly misapplied.

    Some technicians also aren't properly trained to position their static pressure probes appropriately to measure total external static pressure, which leads to faulty readings and misinformed diagnoses. We can start by looking at things that can improve system performance at the equipment, like filtration; we can think of the equipment as the heart and the duct system as arteries (with static pressure as blood pressure), and the equipment also has the biggest pressure drop.

    Joey and Bryan also discuss:

    • Joey's HVAC beginnings in the Navy and current work in education
    • Educators' unique communication styles
    • Learning from other educators as an educator
    • Plenum boxes and turbulence
    • Using wye fittings
    • Laminar flow
    • Modifying existing duct systems
    • Motors and amp draw
    • Building duct transitions
    • Clients and money limitations
    • Communicating with customers about airflow issues
    • Ethics around duct design
    • Unique duct challenges with inverter-driven systems

    Check out Joey's training, social media, and contact information at https://joejoehvac.com/.

    Learn more about the HVACR Training Symposium or buy a virtual ticket today at https://hvacrschool.com/symposium.

    If you have an iPhone, subscribe to the podcast HERE, and if you have an Android phone, subscribe HERE.

    Check out our handy calculators HERE.


    Previous 1 30 31 32 33 34 95 Next

    Related Podcasts

    How I Built This with Guy Raz

    1

    How I Built This with Guy Raz Business
    Planet Money

    2

    Planet Money Business
    Inside Strategic Coach: Connecting Entrepreneurs With What Really Matters

    3

    Inside Strategic Coach: Connecting Entrepreneurs With What Really Matters Business
    BiggerPockets Real Estate Podcast

    4

    BiggerPockets Real Estate Podcast Business
    The Smart Passive Income Online Business and Blogging Podcast

    5

    The Smart Passive Income Online Business and Blogging Podcast Business
    Bad With Money With Gabe Dunn

    6

    Bad With Money With Gabe Dunn Business
    footer-logo

    Contact Us

    Toll Free: 844-670-7747

    Links

    • Home
    • Top Charts
    • Networks
    • Apps
    • Independents Podcasts
    • Podcast Advertising
    • Podcast News
    • Contact Us
    • About Us
    • Analytics & Insights

    Stay Connected

      Privacy, Terms of Use & Our Code of Ethics Protecting Content Creators Copyrights