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Daikin EWYD-BZ User Manual

Daikin EWYD-BZ
35 pages
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Air Cooled chiller/heat pump with screw compressors
EWYD_BZ
REV
01
Date
November 2020
Supersedes
D-EOMCP00104-14EN
Operating Manual
D-EOMCP00104-14_01EN

Table of Contents

Questions and Answers:

Daikin EWYD-BZ Specifications

General IconGeneral
Compressor TypeScroll
TypeAir Cooled Chiller
Power Supply400V, 3 Phase, 50Hz
Dimensions (HxWxD)Varies by model
WeightVaries by model

Summary

1 SAFETY CONSIDERATIONS

1.1 General

Essential safety guidelines for installation, operation, and maintenance.

1.2 Before switching the unit

Crucial steps to perform before powering on the unit for safe operation.

1.3 Avoid electrocution

Guidelines to prevent electrocution hazards during servicing and operation.

2 ABOUT THIS DOCUMENT

2.1 Contents

Overview of the manual's structure and topics covered.

2.2 Revision history

Chronological record of document updates and changes.

2.3 Abbreviations used

Definitions of technical terms and acronyms used in the manual.

2.4 References

List of external documents and sources referenced in the manual.

3 CONTROL SYSTEM DESCRIPTION

3.1 Architecture

Diagram and explanation of the unit's overall control system layout.

3.2 Main components

Identification and description of key hardware elements in the control system.

3.3 Components operating limits

Specifications for temperature and humidity operational boundaries for control components.

4 USING THE CONTROLLER

4.1 Mask tree

Guide to navigating the controller's menu structure and parameter screens.

4.2 Measure units

Configuration options for SI and Imperial units for displayed measurements.

4.3 Default passwords

Standard passwords for different user access levels to controller functions.

5 WORKING WITH THIS UNIT

5.1 Controller purpose

Explanation of the controller's role in managing evaporator leaving water temperature.

5.2 Unit enabling

Various ways to turn the unit on or off, including local, remote, and scheduled control.

5.3 Unit modes

Description of different operational states like Cooling, Heating, and Ice modes.

5.4 Setpoints management

Methods for setting and managing evaporator leaving water temperature targets.

5.4.1 4-20mA setpoint override

Using analog input for dynamic setpoint adjustments.

5.4.2 OAT setpoint override

Adjusting setpoints based on Outside Air Temperature (OAT).

5.4.3 Return setpoint override

Modifying setpoints based on evaporator temperature difference (delta T).

5.5 Compressors capacity control

Methods for managing compressor output to meet cooling/heating demands.

5.5.1 Automatic Control

Software-driven management of compressor start, stop, and capacity.

5.5.2 Manual Control

Operator-initiated control of compressor loading and unloading.

5.6-5.7 Compressor Timing and Protection

Minimum run times, off times, and protection mechanisms for compressor operation.

5.8-5.12 Compressor Startup and Pre-Purge

Procedures for starting compressors, including prepurge and oil heating.

5.9 Fan Pre-Starting in Heating

Fan activation sequence before compressor startup in heating mode.

5.13 Energy Saving mode

Reducing power consumption through specific operational strategies.

5.14 Pumpdown

Process to evacuate refrigerant from the evaporator before shutdown.

5.15 Low ambient temperature start

Managing unit startup under cold ambient conditions.

5.16 Economizer valve

Control logic for the economizer valve based on pressure and temperature.

5.17 Switch between cooling and heating mode

Procedures for transitioning the unit between cooling and heating operations.

5.17.1 Switching from cooling modes to eating mode

Steps for switching the unit from cooling to heating modes.

5.17.2 Switching from heating modes to cooling modes

Steps for switching the unit from heating to cooling modes.

5.17.3 Additional consideration

Further considerations for mode transitions and system resets.

5.18 Defrost procedure

Operational steps to remove frost buildup in heat pump mode.

5.19 Liquid injection

Functionality of liquid injection for temperature control.

5.20 Heat Recovery procedure

Overview of the heat recovery system and its components.

5.20.1 Recovery pump

Management of the recovery pump for heat recovery circuits.

5.20.2 Recovery control

Step-by-step activation and deactivation of heat recovery stages.

5.20.3 Compressor limiting

Parameters and conditions that limit compressor loading or force unloading.

5.21 Unit limiting

Factors that can restrict the unit's operational load.

5.22 Evaporator pumps

Description of the evaporator pumps' function and sequencing.

5.23 Fans control

Methods used to manage fan speed for optimal performance.

5.23.1 Fantroll Control

Step-based fan control logic for maintaining operating conditions.

5.23.1.1 Fantroll in cooling mode

Detailed fan step control logic for condensing pressure in cooling.

5.23.1.1.1 Control of condensing pressure

Fan staging based on condensing pressure deviations.

5.23.1.1.2 Control of pressure ratio

Fan staging based on pressure ratio targets.

5.23.1.1.3 Control of temperature difference

Fan staging based on temperature differences.

5.23.1.2 Fantroll in heating mode

Detailed fan step control logic for evaporating pressure in heating.

5.23.1.2.1 Control of evaporation pressure

Fan staging based on evaporating pressure targets.

5.23.1.2.2 Control of pressure ratio or temperature differences

Fan staging for pressure ratio and temp diff in heating.

5.23.2 Variable Speed Driver

Continuous fan speed modulation using VSD for performance control.

5.23.2.1 VSD in cooling, cooling glycol or ice mode

PID control of VSD fans in cooling, glycol, or ice modes.

5.23.2.2 VSD in heating mode

PID control of VSD fans for evaporation temperature in heating mode.

5.23.3-4 Other Fan Control Methods

Hybrid step-VSD control and startup fan logic in heating.

5.24 Other Functions and Status

Auxiliary features, silent mode, and unit/compressor status reporting.

5.25 Unit and compressors status

Codes and explanations for current unit and compressor operating states.

5.26 Start-up sequence

Detailed flowchart for the unit's power-on and operational startup process.

5.26.1 Unit start-up and shut-down flowcharts

Visual representation of the unit's operational sequences.

5.26.2 Heat recovery start-up and shut-down flowcharts

Visual representation of the heat recovery system's operational sequences.

6 ALARMS AND TROUBLESHOOTING

6.1 Unit trips

Identification and troubleshooting for major unit operational failures.

6.2 Compressors trip

Diagnosis and resolution for compressor-specific operational faults.

6.3 Other trips

Additional causes for unit or function trips not covered previously.

6.4 Unit and compressors alarms and corresponding codes

Comprehensive list of all managed alarms and their corresponding codes.

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