Retrofit Measures for Achieving NZE Single-Family Houses in a Tropical Climate via Multi-Objective Optimization

Author:

Carpino Cristina1ORCID,Chen Austin Miguel234ORCID,Mora Dafni234ORCID,Arcuri Natale1ORCID

Affiliation:

1. Department of Mechanical, Energy and Management Engineering, University of Calabria, Via Pietro Bucci 46C, 87036 Rende, Italy

2. Faculty of Mechanical Engineering, Universidad Tecnológica de Panamá, Panama City 0819-07289, Panama

3. Centro de Estudios Multidisciplinarios en Ciencias, Ingeniería y Tecnología (CEMCIT-AIP), Panama City 0819-07289, Panama

4. Sistema Nacional de Investigación (SNI), Clayton 0816-02852, Panama

Abstract

To achieve sustainable cities and communities, it is necessary to decarbonize existing buildings. Actions need to be taken to reduce the buildings’ energy demand and ensure that the low remaining demand is met by energy produced from renewable sources. This leads to Net Zero Energy Buildings (NZEBs), whose impact on energy consumption is zero or positive, meaning that they are able to produce more energy than they require. The “zero” objective may be difficult to reach in hot and humid climates, where the cooling demand is prevalent. In this case, a combination of active and passive measures, together with appropriate interaction with users, is a viable way to obtain NZEBs. The present study aims to explore technological solutions for renovating existing buildings to NZEBs in a tropical climate. The analysis is developed through a parametric analysis, a sensitivity analysis, and an optimization directed at minimizing the site’s net energy and hours of discomfort. Evaluations are conducted for a case study consisting of a single-family house located in Panama City. The results showed that photovoltaic size, cooling operation schedule, and cooling set-point temperature are the most influential variables for the attainment of NZEBs in a hot climate. Regarding the building envelope, the outcomes suggest the low insulation of dispersing structures and local solar shading of windows as recommended measures.

Funder

Panamanian Institution Secretaría Nacional de Ciencia, Tecnología e Innovación SENACYT

Sistema Nacional de Investigación

Publisher

MDPI AG

Reference67 articles.

1. Towards nearly zero-energy buildings in Mediterranean countries: Fifteen years of implementing the Energy Performance of Buildings Directive in Spain (2006–2020);J. Build. Eng.,2021

2. Review of 50 years of EU energy efficiency policies for buildings;Economidou;Energy Build.,2020

3. European Union (2010). Directive 2010/31/EU of the European Parliament and of the Council of 19 May 2010 on the energy performance of buildings (recast). Off. J. Eur. Union, 53, 13–35.

4. Overview and future challenges of nearly zero-energy building (nZEB) design in Eastern Europe;Attia;Energy Build.,2022

5. Sustainable energy efficiency retrofits as residenial buildings move towards nearly zero energy building (NZEB) standards;Moran;Energy Build.,2020

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