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April 23, 2026Buildings0 citationsOpen Access

Evaluating Evaporative Cooling-Assisted Residential HVAC System Using Whole-Building Simulation

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NFNelson FumoXMXavier MartinezAEAbel Euceda

Key Points

  • The study aims to evaluate the performance of evaporative cooling-assisted HVAC systems in residential settings to enhance energy efficiency.
  • Used whole-building energy simulation in OpenStudio.
  • Analyzed a single-family house across multiple climate zones under three different HVAC configurations.
  • Assessed annual energy use, thermal comfort, and economic performance.
  • EC at the heat pump inlet reduced annual energy consumption by up to 5.1%.
  • Outdoor air intake configuration showed negligible energy savings, generally within ±1%.
  • Heat pump inlet configuration yielded favorable performance across 10 of 16 climate zones.

Abstract

This study evaluates the performance of evaporative cooling (EC)-assisted residential HVAC systems within the broader context of improving energy efficiency in U.S. housing. Using whole-building energy simulation in OpenStudio, a representative single-family house was analyzed across multiple climate zones under three configurations: (1) a baseline air-source heat pump, (2) EC applied at the outdoor air intake, and (3) EC applied at the heat pump inlet. Annual energy use, indoor temperature and humidity, thermal comfort (PMV), water consumption, and economic performance were assessed. Results indicate that system configuration exerts a stronger influence on performance than climate variability. Specifically, the EC at the heat pump inlet configuration reduced annual energy consumption by up to 5.1%, whereas the EC at the outdoor air intake configuration yielded negligible or inconsistent savings (generally within ±1%). The heat pump inlet EC configuration consistently reduced annual energy consumption and showed favorable economic performance in 10 of 16 climate zones, whereas outdoor air intake configuration yielded limited energy savings and was not economically viable. Indoor temperature control remained stable across all cases, while relative humidity increased with EC operation but remained within acceptable limits under appropriate control strategies. The findings indicate that EC integration can improve residential HVAC performance when properly configured, with system placement and humidity control being critical determinants of effectiveness.

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Cite This Study

Fumo et al. (2026) studied this question.

synapsesocial.com/papers/69e9bb2285696592c86ed078https://doi.org/10.3390/buildings16081630
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