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A stochastic approach to modeling the dynamics of natural ventilation systems

机译:一种自然通风系统动力学建模的随机方法

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摘要

Heating ventilation and air conditioning (HVAC) systems in residential and commercial buildings make up 16% of the United States energy consumption. Utilizing natural ventilation strategies is a low energy solution to reduce the energy used by building environmental control systems. Design of effective natural ventilation strategies is challenging because of inherent stochasticity in interior (machine loads, number of people) and exterior conditions (wind load, outside temperature). However, by exploiting the natural dynamics of building systems, efficient design and control seems possible. We explore this idea by introducing a stochastic approach to analyze the natural dynamics of building systems (under natural ventilation) by explicitly incorporating the effects of stochastic wind speeds and stochastic internal loads. We show that complex dynamics in the form of bi-stable behavior emerges when considering a single zone building with stochastic inputs. We show that neglecting these complex stochastic dynamics leads to inaccurate predictions in the thermal response, especially for natural ventilation. We compute the sensitivity of the system with respect to various system parameters which provide insight into developing robust design guidelines. The techniques presented aid in the design process, and are a step toward adaptive, efficient, robust control of natural ventilation systems.
机译:住宅和商业建筑中的采暖通风和空调(HVAC)系统占美国能耗的16%。利用自然通风策略是一种低能耗的解决方案,可减少建筑环境控制系统使用的能源。由于内部(机器负荷,人数)和外部条件(风负荷,外部温度)的固有随机性,设计有效的自然通风策略具有挑战性。但是,通过利用建筑系统的自然动力,似乎可以进行有效的设计和控制。我们通过引入一种随机方法,通过明确地纳入随机风速和随机内部载荷的影响来分析建筑系统(在自然通风条件下)的自然动力,来探索这一想法。我们表明,当考虑具有随机输入的单区域建筑时,会出现以双稳态行为形式出现的复杂动态。我们表明,忽略这些复杂的随机动力学会导致热响应的预测不准确,尤其是对于自然通风。我们计算系统相对于各种系统参数的敏感性,从而为开发可靠的设计指南提供了见识。提出的技术有助于设计过程,是朝着自然通风系统的自适应,高效,鲁棒性控制迈出的一步。

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