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首页> 外文期刊>International Journal of Ventilation >Experimental Evaluation of Combined DCV and Economizer Cycle using a FLC Variable Air Volume (VAV) System
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Experimental Evaluation of Combined DCV and Economizer Cycle using a FLC Variable Air Volume (VAV) System

机译:使用FLC可变风量(VAV)系统的DCV和省煤器联合循环的实验评估

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A healthy indoor environment with sufficient fresh air is a prerequisite for the well-being and high productivity of building occupants. Carbon dioxide (CO_2) based Demand Controlled Ventilation (DCV) optimizes and resolves the traditional conflict between reducing ventilation to save energy while maintaining adequate ventilation for air quality. Therefore, in conditioned spaces where occupancy levels vary, CO_2 based DCV can prove to be an energy efficient method for meeting ventilation needs while maintaining good IAQ. Furthermore, an economizer cycle can be used to save cooling energy. This design scheme takes advantage of cool weather conditions to supplement or satisfy the cooling load. When a Proportional- Integral-Derivative (PID) controller is used, it can respond only to linear variations using single input and single output operations. This can be improved by using a Fuzzy Logic Controller (FLC). This paper deals with the energy savings in a VAV air conditioning system achieved by combining DCV with an air conditioning economizer cycle incorporating FLC. The CO_2 concentration and outside temperature are taken as input and damper angle as output for the FLC. Both laboratory measurements and simulations were made. Simulation was undertaken using MATLAB-Simulink. The potential energy savings of DCV combined with a temperature economizer cycle is in the range of 28 percent to 79 percent for VAV systems and 19 percent to 42 percent for CAV systems. The Indoor Air Quality (IAQ) is also maintained. An experimental test rig was developed and used to verify the performance of the system. This experimental work has been conducted to obtain the system's response for design outdoor conditions.
机译:一个健康的室内环境,要有足够的新鲜空气,这是确保建筑居民的健康和高生产率的先决条件。基于二氧化碳(CO_2)的需求控制通风(DCV)优化并解决了减少通风以节省能源,同时保持足够的通风以改善空气质量之间的传统冲突。因此,在占用水平变化的空调空间中,基于CO_2的DCV可以被证明是一种满足通风需求并保持良好IAQ的节能方法。此外,可以使用省煤器循环来节省冷却能量。该设计方案利用凉爽的天气条件来补充或满足冷却负荷。使用比例积分微分(PID)控制器时,它只能使用单输入和单输出操作来响应线性变化。这可以通过使用模糊逻辑控制器(FLC)进行改进。本文探讨了通过将DCV与结合了FLC的空调节能器循环相结合而实现的VAV空调系统的节能效果。对于FLC,将CO_2浓度和外部温度作为输入,将风门角作为输出。进行了实验室测量和模拟。使用MATLAB-Simulink进行了仿真。对于VAV系统,DCV的潜在节能与温度节约器循环相结合的范围为28%至79%,对于CAV系统为19%至42%。还保持室内空气质量(IAQ)。开发了一个实验测试台,并用于验证系统的性能。进行该实验工作是为了获得系统对室外设计条件的响应。

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