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Decoupling the Design of Variable Air Volume Systems by Tuning the Tolerances of the DPs

机译:通过调整DPS的公差来解耦可变风量系统的设计

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An important discussion on the application of the Axiomatic Design Theory (ADT) is how to address coupled designs. Coupled designs are somewhat usual in engineering and call for solutions in the field of ADT. This paper addresses a class of designs where one or more functional requirements can be fulfilled by design parameters of the type "the higher the better". A good example of this kind of designs is one of the most widespread types of air conditioning systems for office applications: the variable air volume (VAV) system. A VAV system controls the air temperature of multiple rooms by adjusting the flow of cooled air that is supplied by the VAV box that serves each room of the office. The essential functional requirements (FRs) of any modern air conditioning system are: "to control the air temperature", and "to provide indoor air quality (IAQ)" to each served room. The drawback of the VAV systems is that the renewal of the stale air depends on the heat loading of all the rooms, which makes it a coupled design. This paper shows how this coupled design can be decoupled by using a design parameter (the outdoor airflow), which value may be set large enough to fulfil the related functional requirement (the IAQ). The VAV application serves as an example of the application of a new proposed theorem of the ADT that allows decoupling a matrix equation.
机译:关于公理设计理论(ADT)的应用是如何解决耦合设计的重要探讨。耦合设计在工程方面有点常用,并在ADT领域呼吁解决方案。本文解决了一类设计,其中一个或多个功能要求可以通过“越好”的类型“越好”来满足一个或多个功能要求。这种设计的一个很好的例子是办公室应用中最广泛类型的空调系统之一:可变风量(VAV)系统。 VAV系统通过调节由服务于办公室的每个房间提供的VAV盒提供的冷却空气流量来控制多个房间的空气温度。任何现代空调系统的基本功能要求(FRS)是:“控制空气温度”,并“为每个仆人的房间提供室内空气质量(IAQ)”。 VAV系统的缺点是陈旧空气的更新取决于所有房间的热量负荷,这使其成为耦合设计。本文显示了如何通过使用设计参数(室外气流)来解耦该耦合设计,该值可以设置足够大以满足相关的功能要求(IAQ)。 VAV应用程序用作应用ADT的新建议定理的示例,其允许解耦矩阵方程。

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