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Energy savings and ventilation performance from CO2-based demand controlled ventilation: Simulation results from ASHRAE RP-1747 (ASHRAE RP-1747)

机译:基于CO2的需求控制通风的节能和通风性能:ASHRAE RP-1747的仿真结果(ASHRAE RP-1747)

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This is the first journal paper from the ASHRAE research project RP-1747 "Implementation of RP-1547 CO2-based Demand Controlled Ventilation for Multiple Zone HVAC Systems in Direct Digital Control Systems." HVAC designers face challenges in complying with the ventilation requirements in ASHRAE Standard 62.1 due to the complexity of the ventilation rate procedure (VRP) and the lack of direction on how to appropriately apply demand controlled ventilation (DCV) within the context of the VRP. The RP-1747 project aimed to address those issues by developing and testing DCV control sequences that are practical and implementable in typical single-duct variable air volume (VAV) systems with direct digital control (DDC) Systems. These control sequences were also tested for energy and ventilation performance by using a co-simulation of EnergyPlus and CONTAM coupled by a functional mockup unit (FMU). This paper presents the simulation-based study of one office building in four climate zones including Miami (1A), Atlanta (3A), Oakland (3C), and Chicago (5A) for both DCV and non-DCV baselines. The ventilation requirements in non-DCV baselines were set following a simplified ASHRAE 62.1 approach and California Title 24. Simulation results show that RP-1747 DCV control logic could lead to 9% to 33% HVAC energy savings on a source energy basis compared with the non-DCV baseline with the simplified ASHRAE 62.1 approach. The simulated hourly outdoor airflow provided met or exceeded the ASHRAE Standard 62.1 ventilation requirement in the four climate zones for 83% to 97% of the time for the simulated building. Transients and simulation artifacts associated with the discretization of time steps appear to account for a large portion of the time steps when the ventilation provided is less than required by the Standard. After applying a tolerance to account for sensor and control error in real life and time averaging as allowed by Standard 62.1, the DCV strategy met ventilation requirements for 96% to 98% of the time. This indicates the RP-1747 DCV control logic achieves good compliance with the ventilation requirements in Standard 62.1.
机译:这是来自ASHRAE研究项目RP-1747“在直接数字控制系统中的多区HVAC系统的”RP-1547 CO2的需求控制通气“的第一个杂文。” HVAC设计人员由于通风率程序(VRP)的复杂性以及如何在VRP的背景下适当应用需求受控通风(DCV)的方向而遵守ASHRAE标准62.1中的通风要求,符合ASHRAE标准62.1的挑战。 RP-1747项目旨在通过开发和测试具有直接数字控制(DDC)系统的典型单管可变空气量(VAV)系统中实用和可实现的DCV控制序列来解决这些问题。还通过使用由功能模型单元(FMU)耦合的能量支出和CONT的共模进行能量和通风性能来测试这些控制序列。本文介绍了四个气候区域的一家办公楼的仿真研究,包括迈阿密(1A),亚特兰大(3A),奥克兰(3C)和DCV和非DCV基线的芝加哥(5A)。在简化的ASHRAE 62.1方法和加州标题24中设定了非DCV基线的通风要求。模拟结果表明,RP-1747 DCV控制逻辑可能会导致源能源的9%至33%HVAC节能节省。非DCV基线,具有简化的ASHRAE 62.1方法。在四个气候区内提供或超过ASHRAE标准62.1通风要求提供的模拟每小时户外气流83%至97%的模拟建筑时间。与时间步骤的离散化相关联的瞬态和仿真伪像似乎考虑到所提供的通风时的时间步骤的大部分时间步骤小于标准所需的时间步长。在使用标准62.1允许的实际生命和时间平均值中施加公差以考虑传感器和控制误差,DCV策略符合96%至98%的时间通风要求。这表明RP-1747 DCV控制逻辑达到了标准62.1中的通风要求的良好符合性。

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