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September 18, 20250 citationsOpen Access

Inquiry on the Possibilities of a Reverse Greenhouse Effect Through a Reverse Solar Wall for Indoor Overheating Avoidance

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GBGian Luca Brunetti

Key Points

  • The reverse greenhouse effect can significantly reduce indoor temperatures during passive solar gain periods.
  • Implementing a Trombe wall allows heat to be expelled outdoors, rather than trapped inside spaces.
  • Adequate thermal mass in the wall is crucial for determining the necessity of ventilation in this system.
  • Prototype models and simulations validate the effectiveness of this innovative design in real-world applications.

Abstract

This paper investigates the potential of a reverse greenhouse effect for reducing indoor temperature in spaces exposed to passive solar gains. The aim is implemented by installing a Trombe wall - a glazed massive wall transmitting heat by conduction and convection - on the indoor side of a sun-exposed façade, so that heat gained in the glazed cavity is transferred from the interior to the exterior, rather than into the room as in conventional Trombe walls. This configuration lowers indoor air temperature under conditions of passive solar gains on the wall, making it possible to achieve higher daylight levels with reduced risk of overheating. The fact that ventilation is essential or not depends on the availability of a sufficient thermal mass in the wall. The concept has been validated through monitoring of prototype models and calibrated simulations and applied in a real case study exemplifying the possibility of the system.

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Cite This Study

Gian Luca Brunetti (2025) studied this question.

synapsesocial.com/papers/68d463db31b076d99fa62ba0https://doi.org/10.20944/preprints202508.2007.v2
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