Become HVAC Professional: Comprehensive HVAC A-Z Design Guide
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Why enroll
What enrolled engineers say
Material maps pretty directly to day-to-day build work, even if your head lives in arch/infra instead of ducts. the psychrometric chart walkthrough in Chapter 3, where he traces latent vs sensible loads against a sample office, stuck; felt like reading a clean PR with comments you can diff later. I wasn't sold on the control sequences section—wished there was more on commissioning checks in prod—but the load calc spreadsheet example was practical. I've moved from “it runs” to knowing why it behaves that way.
Doesn’t assume you’re green; it moves at a pace that respects time and prior reps. The psychrometric chart section where he walks a summer cooling load calc step by step stuck, especially the moment tying humidity ratio back to coil selection. I’ve already got notes to refactor some of our sizing logic before it hits prod, similar to tightening an arch in a repo before a PR, though the long equipment catalog wasn’t my favorite and I wished for a bit more on controls and obs in hvacr.
Doesn’t sugarcoat the easy path; it pushes tradeoffs and consequences, which maps well to how we think about arch and infra in prod. The duct sizing chapter stuck, especially the friction-rate walk-through at 0.1 in.wg/100ft and the moment it calls out why oversizing wrecks comfort and energy. I’ve used the anti-patterns section like a PR checklist—things not to ship—though I wasn’t sold on the light touch around commissioning and controls. still, it’s time well spent even if you just mine those anti-patterns.
Is this course for you?
You should take this if
- You work in HVAC
- You're a Mechanical Engineering / Electrical Engineering professional
- You prefer live, instructor-led training with Q&A
You should skip if
- You need a different specialisation outside Mechanical Engineering
- You need fully self-paced, on-demand content
Course details
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Key topics covered
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Training details
This is a live course that has a scheduled start date.
Live session
Starts
Sat, Feb 1, 2025
Duration
2 hours per day
Course content
- HVAC Introduction & Purpose5 min
- HVAC Definition5 min
- Why Does Heating is Required?5 min
- Why Does Ventilation Required?5 min
- HVAC Applications5 min
Why people choose EveryEng
Industry-aligned courses, expert training, hands-on learning, recognized certifications, and job opportunities-all in a flexible and supportive environment.
What learners say about this course
Grabbed it over a weekend and figured I’d skim, but it moved faster than expected. The pressure class breakdown in Chapter 3, especially the rectangular-to-round example with the friction loss table, stuck; I’ve already reused that calc in prod conversations. hvacr arch choices are framed practically, not academic, though I wasn’t sold on the brief nod to retrofit constraints and wished for more on existing infra. it’s given me better ammo for the PRs and client calls that actually matter.
Quality stayed pretty even across the modules, which isn’t common at this difficulty level. The section on variable primary flow stuck with me, especially the worked example where the delta‑T degradation math is tied back to pump turndown and control valves; I’ve already cross‑checked that against a plant we’re refitting. Framing chilled water like infra helped bridge things: thinking of pumps as shared services, coils as clients, and obs via trend logs felt closer to how we reason about prod systems, CI, and RPS under load. It’s applied without pretending everything is greenfield, and the legacy tie‑ins (old constant‑flow plants) weren’t hand‑waved. mostly liked the pacing, though I wasn’t sold on the brief skim of hvacr psychrometrics and wished the control sequences chapter lingered a bit longer. Still, it’s shifted from something I’d watch solo to something I’d drop in a repo note or share in a PR comment when chilled water comes up.
Needed a clearer handle on the internals behind chilled water systems, not just rules of thumb, and this mostly delivered. The variable primary flow section where they walk a 1,200 gpm pump curve and minimum flow bypass calc stuck; that example finally clicked how arch choices keep prod delta‑T from collapsing. it's pitched advanced and assumes hvacr fluency, which I liked, though I wasn't sold on the light treatment of controls sequences and wished for more obs tie‑ins. I've already applied the performance framing on a retrofit review—useful for the efficiency math alone.
The scaling angle is what pulled me in, but module 4 dragged a bit and the labs assume you’ve already got your calc tools wired up. Past that, it maps cleanly to day‑job hvacr work. The Chapter 6 chilled‑water loop example stuck: the pump head calc tied back to ASHRAE 90.1 limits, then a quick check on N+1 sizing vs infra constraints. That’s the stuff I need before a design hits prod. The obs on control sequences vs actual arch tradeoffs felt real, not academic. Not perfect, but useful between meetings. Not something I usually pass along, but I will here.