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ASHRAE 4693

Development and Implementation of HVAC-KBCD: A Knowledge-Based Expert System for Conceptual Design of HVAC&R System - Part 2: Application to Office Buildings

Organization:
ASHRAE - American Society of Heating, Refrigerating and Air-Conditioning Engineers, Inc.
Year: 2004

Abstract: This paper presents an integrated IAQ/HVAC simulation environment that can model the impact of contaminant-based demand-controlled ventilation (DCV) strategies on both indoor air quality and HVAC system energy use for multizone buildings. The predictions of the integrated IAQ/HVAC simulation environment are first validated against experimental data obtained from laboratory testing. Then the simulation environment is used to investigate the performance of three ventilation control strategies, namely: one conventional control using fixed-position for outside air damper and two DCV strategies, including on/off control and proportional-integral- derivative (PID) control. In particular, a series of parametric analyses is conducted to determine the impact of selected design and operational features of DCV strategies on both indoor air quality and HVAC system energy use. The sensitivity analysis revealed that leakage from outside air dampers, use of a temperature economizers, selection of CO2 sensors, tuning of PID controllers, and selection of CO2 setpoints can have a significant impact on both indoor air quality and energy consumption of HVAC systems.
URI: https://yse.yabesh.ir/std/handle/yse/158814
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contributor authorASHRAE - American Society of Heating, Refrigerating and Air-Conditioning Engineers, Inc.
date accessioned2017-09-04T17:35:56Z
date available2017-09-04T17:35:56Z
date copyright01/01/2004
date issued2004
identifier otherDJFPFBAAAAAAAAAA.pdf
identifier urihttps://yse.yabesh.ir/std/handle/yse/158814
description abstractThis paper presents an integrated IAQ/HVAC simulation environment that can model the impact of contaminant-based demand-controlled ventilation (DCV) strategies on both indoor air quality and HVAC system energy use for multizone buildings. The predictions of the integrated IAQ/HVAC simulation environment are first validated against experimental data obtained from laboratory testing. Then the simulation environment is used to investigate the performance of three ventilation control strategies, namely: one conventional control using fixed-position for outside air damper and two DCV strategies, including on/off control and proportional-integral- derivative (PID) control. In particular, a series of parametric analyses is conducted to determine the impact of selected design and operational features of DCV strategies on both indoor air quality and HVAC system energy use. The sensitivity analysis revealed that leakage from outside air dampers, use of a temperature economizers, selection of CO2 sensors, tuning of PID controllers, and selection of CO2 setpoints can have a significant impact on both indoor air quality and energy consumption of HVAC systems.
languageEnglish
titleASHRAE 4693num
titleDevelopment and Implementation of HVAC-KBCD: A Knowledge-Based Expert System for Conceptual Design of HVAC&R System - Part 2: Application to Office Buildingsen
typestandard
page13
statusActive
treeASHRAE - American Society of Heating, Refrigerating and Air-Conditioning Engineers, Inc.:;2004
contenttypefulltext
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