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Analysis and optimization of thermal comfort in residential buildings by means of a weather-controlled air-to-water heat pump

机译:借助天气控制的气水热泵分析和优化住宅建筑的热舒适性

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In the described research an investigation was performed into how thermal comfort in residential buildings could be improved by means of the smart control and optimization of weather-controlled air-to-water heat pumps, taking into account the new-generation heat pumps which can be adapted to different environmental conditions. A novel approach to the off-line optimization of weather-dependent heating curves is proposed. Outdoor temperature controlled heating is extended into the field of linearly parametrized generalized heating curves, considering additional influencing factors such as solar radiation, temperature gradients, and other near-future effects. Off-line optimization is performed in order to maximize indoor thermal comfort for each different parametrization case. The study is based on a TRNSYS simulation of a residential building which included a heat pump model, and a predicted mean vote (PMV) thermal comfort model. A simulation framework for the global optimization of generalized heating curves is developed. The results of the study showed that a considerable improvement in thermal comfort can be achieved by including (in addition to the outdoor temperature) some other factors which can affect the operation of the heat pump, solar radiation being the factor with the strongest effect.
机译:在所描述的研究中,进行了一项调查,研究如何通过智能控制和优化天气控制的气水热泵来改善住宅建筑物的热舒适性,同时考虑到了新一代的热泵。适应不同的环境条件。提出了一种基于天气的加热曲线离线优化的新方法。考虑到其他影响因素,例如太阳辐射,温度梯度和其他近期影响,室外温度控制的加热扩展到线性参数化的广义加热曲线的领域。为了使每种不同参数化情况的室内热舒适度最大化,执行了离线优化。该研究基于住宅建筑的TRNSYS仿真,其中包括热泵模型和预测平均投票(PMV)热舒适模型。开发了用于总体优化加热曲线的仿真框架。研究结果表明,除其他因素外(包括室外温度在内),其他一些会影响热泵运行的因素也可以显着提高热舒适度,其中太阳辐射是影响最大的因素。

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