HVAC/R TRAINING MANUAL

Metering Devices in Air Conditioning and Refrigeration

The metering device controls the flow of refrigerant into the evaporator and creates the pressure drop between the high-pressure and low-pressure sides of the refrigeration system.

In this subsection you will study fixed and modulating metering devices, learn how refrigerant changes as it passes through the device, compare mechanical and electronic control methods, and apply those concepts to system troubleshooting.

SUBSECTION OVERVIEW

What You Will Learn

Metering devices are used throughout air-conditioning and refrigeration equipment. Although every metering device performs the same basic refrigeration-cycle function, the method used to control refrigerant flow varies considerably from one device to another.

1

Refrigerant Flow and Pressure Drop

Understand why high-pressure liquid enters the metering device and a low-pressure liquid/vapor mixture enters the evaporator.

2

Flash Gas

Explain why only part of the liquid refrigerant immediately boils during the pressure drop and why the remaining liquid must boil in the evaporator.

3

Fixed Metering Devices

Study capillary tubes and fixed-orifice devices and learn how physical restriction controls refrigerant flow.

4

Mechanical Expansion Valves

Learn how TXVs and AEVs modulate refrigerant flow using pressure, temperature, and spring forces.

5

Electronic Expansion Valves

Examine sensors, controllers, actuators, stepper motors, and closed-loop refrigerant control used in modern equipment.

6

System Diagnosis

Use superheat, subcooling, pressures, temperatures, system load, and device-specific control information to diagnose refrigerant-feeding problems.

THE BASIC REFRIGERATION PRINCIPLE

Every Metering Device Separates the High Side From the Low Side

LIQUID LINE
HIGH-PRESSURE LIQUID

Refrigerant arriving from the condenser should normally reach the metering device as liquid.

METERING DEVICE
PRESSURE DROP

The device restricts refrigerant flow and reduces refrigerant pressure to the evaporator pressure.

EVAPORATOR INLET
LOW-PRESSURE LIQUID / VAPOR MIXTURE

Some liquid has flashed into vapor, while the remaining liquid must absorb heat and boil inside the evaporator.

A Concept to Remember Throughout This Subsection

The metering device does not normally turn all of the liquid refrigerant into vapor. Only a portion immediately boils because of the pressure reduction. That vapor is called flash gas.

LESSONS

Metering Devices Lessons

Complete the lessons in order. Each lesson builds on the refrigeration-cycle and evaporator concepts introduced earlier in the HVAC/R training material.

LESSON 1

Introduction to Metering Devices

Learn where the metering device is located, what it does, what happens during the pressure drop, and why flash gas forms.

Pressure Drop
Flash Gas
Device Types

Begin Lesson →

LESSON 2

Capillary Tubes and Fixed-Orifice Devices

Study fixed refrigerant restrictions and learn how capillary-tube length, diameter, and calibrated orifice size affect refrigerant flow.

Capillary Tubes
Fixed Orifices
System Charge

Begin Lesson →

LESSON 3

Thermostatic Expansion Valves (TXVs)

Learn how sensing-bulb pressure, evaporator pressure, and spring pressure work together to regulate refrigerant flow and evaporator superheat.

TXV Components
Three Forces
Load Response

Begin Lesson →

LESSON 4

TXV Applications and Service

Examine sensing-bulb installation, internal and external equalization, refrigerant distributors, valve adjustment, and specialized TXV designs.

Bulb Installation
Equalization
Distributors

Begin Lesson →

LESSON 5

Automatic Expansion Valves (AEVs)

Learn how the constant-pressure expansion valve responds to evaporator pressure and why its load response differs from a TXV.

Constant Pressure
Spring Force
Load Response

Begin Lesson →

LESSON 6

Electronic Expansion Valves (EEVs)

Explore electronic refrigerant control using sensors, controllers, stepper motors, feedback loops, and modern variable-capacity equipment.

Stepper Motors
Feedback Loops
Variable Capacity

Begin Lesson →

LESSON 7

Metering Device Troubleshooting and System Diagnosis

Use refrigerant conditions and system measurements to distinguish normal feeding, underfeeding, overfeeding, restrictions, load problems, and control faults.

Underfeeding
Overfeeding
Diagnosis

Begin Lesson →

LESSON 8

Metering Devices Review and Comparison

Compare all five metering-device types and review refrigerant state, flash gas, control methods, applications, and troubleshooting principles.

Comparison
Applications
Final Review

Begin Lesson →

HOW THE LESSONS PROGRESS

From Basic Restriction to Electronic Control

1

Understand the Pressure Drop

Begin with refrigerant state, pressure reduction, and flash gas.

2

Study Fixed Restrictions

Learn how capillary tubes and fixed orifices meter refrigerant without actively changing their opening.

3

Study Mechanical Modulation

Learn how TXVs and AEVs change valve position using pressure, temperature, and mechanical forces.

4

Study Electronic Modulation

Learn how EEV controllers use electronic sensors and actuators to continually adjust refrigerant flow.

5

Diagnose the Complete System

Combine refrigerant knowledge, superheat, subcooling, load, airflow, and control information to troubleshoot evaporator feeding.

QUICK COMPARISON

Five Metering Devices — Five Control Methods

Metering Device Type What Controls Refrigerant Flow? Primary Characteristic
Capillary Tube Fixed Tube diameter, length, and pressure difference Simple fixed restriction
Fixed Orifice Fixed Calibrated opening and pressure difference Simple fixed restriction
TXV Mechanical modulation Sensing-bulb pressure, evaporator pressure, and spring pressure Controls evaporator feeding based on superheat
AEV Mechanical modulation Evaporator pressure and spring pressure Maintains relatively constant evaporator pressure
EEV Electronic modulation Sensors, electronic controller, and actuator Precise control over a wide operating range
AIR CONDITIONING AND REFRIGERATION

These Principles Apply Across HVAC/R Equipment

Metering devices are not limited to residential air-conditioning equipment. The same refrigeration principles are used in comfort cooling, heat pumps, commercial refrigeration, refrigerators, freezers, ice machines, walk-ins, display cases, chillers, variable-capacity systems, VRF equipment, and ductless mini-splits.

Air Conditioning

Fixed orifices, TXVs, and EEVs are encountered across residential, commercial, packaged, and split-system equipment.

Commercial Refrigeration

TXVs and EEVs are widely used where evaporator load, temperature, and system operating conditions change.

Small Refrigeration

Capillary tubes remain common in compact factory-designed refrigeration appliances and equipment.

Variable-Capacity Equipment

EEVs allow refrigerant flow to be coordinated with variable-speed compressors and changing system capacity.

READY TO BEGIN?

Start With the Refrigeration-Cycle Fundamentals

Begin with Lesson 1 to establish the pressure-drop and refrigerant-state concepts used throughout the remainder of the subsection.

Start Lesson 1 – Introduction to Metering Devices →