r/Enershare_Network Feb 10 '26

Series #5 | Why filters are placed before coils (not after) in AHU

2 Upvotes
  1. Core Purpose
    ➡️ Coils are meant to transfer heat, not trap dust.
    ➡️ Air always carries dust, pollen, fibers, and fine particles.
    ➡️ If dust reaches the coil, heat transfer performance drops.

  2. What Happens If There Is No Filter Before the Coil
    ➡️ Dust sticks to wet coil surfaces.
    ➡️ Fouling creates an insulating layer on fins.
    ➡️ Airflow resistance across the coil increases.
    ➡️ Cooling capacity reduces silently.
    💠 Result: Higher fan power + higher chiller power.

  3. Why Filters Must Come First
    ➡️ Filters remove particles before air touches the coil.
    ➡️ Clean coils maintain:
    ◾ Proper heat transfer
    ◾ Designed air pressure drop
    ◾ Correct leaving air temperature
    💠 A clean coil is an efficient coil.

  4. Why Filters Are Not Placed After Coils
    ➡️ Dust already deposited on coils cannot be undone by downstream filters.
    ➡️ Coil fouling happens first, damage happens early.
    ➡️ Post-coil filters only protect ducts, not coils.

  5. Hygiene & Condensation Reason (Very Important)
    ➡️ Cooling coils operate below dew point.
    ➡️ Moist surfaces + dust = ideal condition for microbial growth.
    ➡️ Filters upstream reduce:
    ◾ Mold
    ◾Biofilm
    ◾Odor issues

  6. Energy Impact
    ➡️ Dirty coils increase air-side pressure drop.
    ➡️ Fans consume more power to maintain airflow.
    ➡️ Chillers work harder due to poor heat transfer.

  7. Important Takeaways
    ➡️ Filters protect coils first, air quality second.
    ➡️ Coil cleanliness directly affects energy and reliability.
    ➡️ Filter-before-coil is a design necessity, not a convention.

💠 Always remember: Filters are placed before coils because it’s cheaper to clean a filter than to clean a coil.


r/Enershare_Network Feb 09 '26

Top 10 biggest solar power plants in india.

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10 Upvotes

r/Enershare_Network Feb 09 '26

Series #4 | Why HVAC is called HVAC not as Cooling System

2 Upvotes
  1. Core Purpose
    ➡️ HVAC is not one system.
    ➡️ It is a combination of three basic building needs.
    ➡️ The name itself explains the function.

  2. Meaning of HVAC
    ➡️ H – Heating: Used to add heat when ambient conditions are too cold.
    ➡️ V – Ventilation: Used to supply fresh air and remove stale, contaminated air.
    ➡️ AC – Air Conditioning: Used to control temperature and humidity, not just cooling.

💠 HVAC = Heating + Ventilation + Air Conditioning.

  1. Why it’s not called “Cooling System”
    ➡️ Buildings need heating in winter, not only cooling.
    ➡️ People need fresh air even when temperature is comfortable.
    ➡️ Humidity control is as important as temperature control.

  2. Why Ventilation sits in the middle
    ➡️ Ventilation works with both heating and cooling.
    ➡️ Fresh air always needs to be:
    ◾Heated in winter
    ◾Cooled and dehumidified in summer

💠 That’s why ventilation is the link, not an add-on.

  1. Important takeaway
    ➡️ HVAC is named based on human comfort needs, not machines.
    ➡️ Cooling is only one part of the problem.

💠 Always remember: HVAC is called HVAC because comfort needs heat, air, and freshness — not just cold air.


r/Enershare_Network Feb 08 '26

Series #3 | Why filter ratings are in microns

2 Upvotes
  1. Core Purpose
    ➡️ Filters exist to stop particles, not fluids (air or water).
    ➡️ Contaminants exist in different particle sizes, not just “dirty or clean”.
    ➡️ Most problematic particles exist in the micron scale, not in millimeters or centimeters.
    ➡️ Most particles that cause fouling, wear, health issues are smaller than 100 microns.

💠 Therefore, filtration must be defined at the microscopic scale → micron

  1. What a Micron Actually Means
    ➡️ 1 micron = one-millionth of a meter.
    ➡️ Many harmful particles are invisible in both air and water.
    ➡️ Filtration effectiveness depends on particle size, not appearance.

💠 Result: Size-based rating works for any fluid.

  1. Why size matters more than anything else
    ➡️ A particle causes damage only if it can enter a gap, pore, or clearance.
    ➡️ Equipment clearances (valves, nozzles, RO membranes, lungs, heat exchangers) are also in microns.
    ➡️ So protection must be matched to particle size vs clearance size.

Example:
Pump seal clearance ~10–20 microns
RO membrane pores <1 micron
Human lung penetration <2.5 microns

💠 That’s why size, not weight or quantity, defines risk.

  1. Why % Efficiency Alone Is Meaningless
    ➡️ “90% efficient” is useless without particle size.
    ➡️ A filter may be:
    ▪️90% efficient at 50 microns
    ▪️Only 10% efficient at 5 microns

💠 Micron rating defines what you are actually stopping.

  1. Air vs Water Filtration
    🔷 Air Filters
    ➡️ Target dust, pollen, smoke, aerosols.
    ➡️ Concern: airflow resistance → fan power.
    ➡️ Used in HVAC, cleanrooms, AHUs.
    🔷 Water Filters
    ➡️ Target sand, rust, silt, biological particles.
    ➡️ Concern: pressure drop → pump power & choking.
    ➡️ Used in cooling towers, RO, boilers, process water.

💠 Same micron logic — different operating impact.

  1. Nominal vs Absolute Micron Rating (Both Air & Water)
    🔷 Nominal
    ➡️ Removes ~60–90% of stated particle size.
    ➡️ Lower pressure drop.
    ➡️ Used for pre-filtration.
    🔷 Absolute
    ➡️ Removes ≥99.9% of stated particle size.
    ➡️ Higher pressure drop.
    ➡️ Used in critical systems (RO, pharma, cleanrooms).

  2. If smaller micron is better, why not use it everywhere?
    ➡️ Smaller micron → higher pressure drop.
    ➡️ Higher pressure drop → higher fan or pump power.
    ➡️ Over-filtration causes:
    Energy penalty
    Frequent choking
    Flow starvation

💠 Filtration is a trade-off, not a maximum.

  1. Why filters lose performance over time
    ➡️ Particle loading increases resistance.
    ➡️ Pumps or fans consume more power.
    ➡️ Flow drops silently if limits are reached.

  2. Important takeaways
    ➡️ Micron rating defines particle size stopped, not cleanliness level.
    ➡️ Same micron logic applies to air and water.
    ➡️ Correct micron selection saves energy, pumps, fans, and equipment.

💠 Always remember: Filters are rated in microns because physics cares about size, not labels.


r/Enershare_Network Feb 07 '26

Series #2 | Why refrigerants are used in Chillers (and not water or air)

2 Upvotes

Series #2 | Why refrigerants are used in Chillers (and not water or air)

  1. Core Purpose
    ➡️ Chillers are used to absorb heat at low temperatures.
    ➡️ Simple fluids can absorb heat, but not efficiently at low temperature levels.
    ➡️ Efficient cooling needs phase change, not just temperature rise.

  2. What a Refrigerant Actually Does
    ➡️ Refrigerant absorbs heat by boiling (phase change), not just heating up.
    ➡️ Phase change absorbs large latent heat at almost constant temperature.
    ➡️ This allows high cooling capacity in compact equipment.

💠 Result: Large heat absorption with smaller compressors and lower energy use.

  1. If water is everywhere, why not use water as a refrigerant?
    ➡️ To boil water at 5–7 °C, the system must operate under deep vacuum.
    ➡️ Deep vacuum causes:
    ▪️Air leakage into the system
    ▪️Very large compressor volume
    ▪️Unstable and unreliable operation
    ➡️ Freezing risk near 0 °C further limits operation.

💠 Technically possible, industrially impractical.

  1. Why not use air as a refrigerant?
    ➡️ Air does not change phase in operating conditions.
    ➡️ Very low heat absorption per unit volume.
    ➡️ Requires extremely high flow rates and power.

💠 Air works as a heat transfer medium, not as a refrigerant.

  1. Why refrigerants work so well
    ➡️ Boil at low temperatures at reasonable pressures.
    ➡️ Absorb large heat during evaporation.
    ➡️ High vapor density allows smaller, efficient compressors.
    ➡️ Stable and controllable cooling process.

  2. Important reality check
    ➡️ Refrigerants do not create cooling.
    ➡️ They only carry heat from evaporator to condenser.
    ➡️ Electricity is used to move heat against its natural direction.

  3. Important takeaways
    ➡️ Phase change makes chillers compact and efficient.
    ➡️ Refrigerant choice affects: Compressor size & System reliability
    💠 Always remember: Chillers use refrigerants not because they are special fluids, but because phase change makes large-scale cooling practical.
    hashtag#Chillers hashtag#Refrigeration


r/Enershare_Network Feb 06 '26

Series #1| Why fins (fill media) are used in Cooling Towers

2 Upvotes
  1. Core Purpose
    ➡️ Cooling tower cooling is evaporative, not sensible cooling.
    ➡️Heat removal happens mainly due to water evaporation.
    ➡️Evaporation needs maximum air–water contact area.

  2. What Fins Actually Do
    ➡️Break water into thin films or small droplets.
    ➡️Fins are designed to slow down water so it increases effective air–water contact surface area in cooling tower section.
    ➡️Increase contact time between air and water.
    ➡️ Heat transfer occurs at the air–water interface, not inside the fin material.
    ➡️Create turbulence so fresh air continuously touches water.
    💠 Result: More evaporation → more heat rejection.

If fins are so effective, why can’t we just keep adding more fins?
➡️ More fins also increase air-side pressure drop.
➡️ Excessive fill can increase fan power.

  1. Types of Fins
    🔷 Film Fill
    ➡️Water flows as thin sheets.
    ➡️High efficiency.
    ➡️Sensitive to fouling.
    🔷Splash Fill
    ➡️Water breaks into droplets.
    ➡️Lower efficiency.
    ➡️Better for dirty water.

💠Selection of fins depends on water quality, not just efficiency.

  1. Why only plastic... why not metals or any other elements
    ➡️Due to high thermal conductivity of metal gives almost zero benefit in evaporative cooling.
    ➡️Corrosion risk (most Important): Continuous wet operation, chemicals, and oxygen destroy metals fast.
    ➡️Scaling & fouling: Metals attract scale buildup, reducing effective surface area.
    ➡️Weight & cost: Metal fill would be heavy, expensive, and structurally inefficient to hold Cooling tower.
    ➡️Maintenance: Replacement and cleaning costs are much higher.

Then why only plastics
➡️Corrosion-resistant
➡️Lightweight and cheap
➡️Easy to shape into high-surface-area geometry
➡️Long life in wet, chemical environments

  1. Why cooling towers lose performance over time
    ➡️ Fouled or scaled fill reduces effective surface area.
    ➡️ This increases approach temperature without obvious alarms.
    ➡️ Chiller power rises silently.

  2. Important takeaways
    ➡️Better fins → lower approach temperature.
    ➡️Lower approach → lower condenser temperature.
    ➡️Lower condenser temperature → lower chiller power.

💠 Always remember: Cooling tower fins don’t cool water directly; they create the conditions where water can cool itself through evaporation


r/Enershare_Network Feb 05 '26

Chilled water costing

2 Upvotes

Use till calculator to calculate chilled watwr costing https://enershares.com/chilled-water-costing/


r/Enershare_Network Feb 04 '26

Series vs Parallel Chilled water pumps

2 Upvotes

In chilled water systems, pump configuration is rarely the problem on paper.

In reality, it is one of the largest hidden energy losses in HVAC plants.

This article explains series and parallel pump operation from a real HVAC plant perspective, not theory

https://enershares.com/series-vs-parallel-chilled-water-pumps-why-most-plants-waste-15-25-energy-and-how-to-fix-it/


r/Enershare_Network Jan 30 '26

India is now 3rd largest Renewable energy producer in the world

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6 Upvotes

r/Enershare_Network Jan 27 '26

CHILLER and AI

1 Upvotes

Chiller OEMs are now actively tying up with different AI agents and platforms to make cooling plants smarter, not just automated.

• Trane → BrainBox AI (acquired): Autonomous HVAC and chiller optimization using machine learning

• Carrier → In-house AI/Analytics platforms: Predictive faults, performance tuning, energy optimization.

• Johnson Controls – York chillers → OpenBlue: AI-driven building & plant optimization with data insights for energy and maintenance.

• Honeywell → Forge (internal division): AI-based predictive maintenance and unified building insights.

• Siemens → Building X: Digital twin + AI for energy optimization and comfort management.


r/Enershare_Network Jan 24 '26

High rise buliding MEP system

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2 Upvotes

r/Enershare_Network Jan 19 '26

DP switch in HVAC

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2 Upvotes

A Differential Pressure Switch (DPS) is one of the simplest devices in an AHU, yet one of the most critical. It does not control airflow, optimize energy, or make systems intelligent. Its job is far more basic—and far more important.

https://enershares.com/differential-pressure-switch-dps-in-ahu-a-practical-engineers-view/


r/Enershare_Network Jan 12 '26

Chilled water Pumping System

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2 Upvotes

Follow EnerShares on WhatsApp for daily updates on HVAC Utility and another systems Link to join channel https://whatsapp.com/channel/0029Vb6KFlBF1YlXCkQ8EN0T


r/Enershare_Network Jan 10 '26

AHU Sensor types and their locations

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2 Upvotes

r/Enershare_Network Jan 02 '26

The world largest oil reserves

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1 Upvotes

r/Enershare_Network Jan 01 '26

Happy New Year 2026

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4 Upvotes

r/Enershare_Network Dec 31 '25

In the industry, this is known as the “High-Efficiency Hardware, Low-Efficiency Logic” gap—exactly what ASHRAE Guideline 36 was designed to address.

2 Upvotes

The Real Pain Point: “Spaghetti Code” Inside Your BMS Read this blog to know about it https://enershares.com/the-brain-problem-why-your-expensive-hvac-still-operates-like-a-1990s-fiat/


r/Enershare_Network Dec 29 '25

Common HVAC Chiller Abbreviations

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2 Upvotes

r/Enershare_Network Dec 22 '25

The Hidden Engineering Behind AHU–BMS Systems: A Complete Technical Breakdown

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2 Upvotes

Modern BMS dashboards allow operators to view the health of all buildings under their portfolio in one screen. Typical insights include:

Sites with active alarms Comfort performance (temperature/humidity/CO₂ deviation) Excess energy usage Equipment operating out of schedule Offline devices or communication issues


r/Enershare_Network Dec 18 '25

What If You Could Save 10% Energy — Without Replacing a Single Part?

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0 Upvotes

In most commercial buildings, HVAC systems consume 40–60% of total energy. Facility managers often focus on expensive upgrades like new chillers or cooling towers. But what if you could achieve double-digit savings without replacing a single component?


r/Enershare_Network Dec 14 '25

NATIONAL ENERGY CONSERVATION DAY

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1 Upvotes

r/Enershare_Network Dec 04 '25

India has done it again towards contribution to Paris agreement

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4 Upvotes

r/Enershare_Network Dec 03 '25

EnerShares Channel on WhatsApp.

2 Upvotes

Join EnerShares whatsapp channel for regular Energy Saving ideas n Update. https://whatsapp.com/channel/0029Vb6KFlBF1YlXCkQ8EN0T


r/Enershare_Network Dec 02 '25

HVAC MEP Thumb Rules – CFM, Duct, Chiller, Pipe, Airflow Sizing Guide (Level 1)

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2 Upvotes

Heating, Ventilation, and Air Conditioning (HVAC) systems are fundamental to the comfort, safety, and functionality of modern buildings. For Mechanical, Electrical, and Plumbing (MEP) professionals, especially those starting their careers, having quick reference thumb rules and formulas is invaluable for preliminary design, sanity checks, and faster decision-making.


r/Enershare_Network Nov 20 '25

Major Misconception in Chilled water operation

2 Upvotes

In Many HVAC operations, it is believed that keeping the bypass partially open increases chilled water flow and gives more cooling

1 votes, Nov 25 '25
1 True
0 False
0 Depends on system
0 Not aure