Water and Energy Engineering for Sustainable Buildings Mihouse Project

Water and Energy Engineering for Sustainable Buildings Mihouse Project
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The Mihouse project is the result of an interinstitutional and interdisciplinary work developed by professors and students from the faculties of engineering, economic sciences and social communication of the Universidad Autónoma de Occidente (UAO) and architecture at the Universidad de San Buenaventura (USB) both located in Cali, Colombia. Within the framework of this project, students from the UAO Renewable Energy and lntegrated Water Resource Management research groups participated in this project, both in charge of the UAO professors. As a result of this project, two publications have been developed; the first one focused on sustainable architecture and bioclimatic architecture and the second one focused on water and energy engineering for sustainable buildings.

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Varios autores. Water and Energy Engineering for Sustainable Buildings Mihouse Project

Credits and Acknowledgments

List of the Mihouse Team

Contents

List of Figures

List of Tables

Introduction

Chapter 1. Construction Design

Urban Scale

Prototype Scale

Chapter 2. Water Management System

System Design

Design Criteria

System components

Storage

Rainwater Volume Calculation

Method 1

Method 2

Size and number of downpipes

Groundwater System

Drinking Water Tanks

Storage volume for the Drinking water tank

Plumbing System

Greywater collection system

Water Budget

Chapter 3. Energy Management System

Electrical System Design

Solar Energy Resource

Photovoltaic System Design

Maintenance Plan

Produced Energy

Electrical Load Study

Solar system design and simulation

Electrical Energy Balance Simulation

Annual Production

Condition Set

Electrical estimated consumption

Solar Thermal Design

Energy Efficiency Design Narrative

Energy Consumption

Energy Balance

Chapter 4. Innovation

Innovation in Engineering and Construction

Lightweight Concrete

Thermal Conductivity

Water Use Reduction

Innovation in Energy Efficiency

Innovation Through Energy Efficiency

Use of Natural Light

Use of Led Lighting

Chapter 5. Sustainability

Introduction

Water Strategies

Strategies for Reducing Water Consumption

Water Cycle

Rainwater

Greywater

Solid waste

Materials

Lightweight Concrete with Addition of Stone Coal (PC)

Calculation of Ecological Footprint

Life Cycle Stage Analysis

Solar Facilities

References

Footnotes

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The MIHOUSE team wants to thank the Faculties of Engineering, Economic Sciences and Social Communication at the Universidad Autónoma de Occidente (UAO) and Architecture at the Universidad de San Buenaventura (USB) that supported the development of the project:

The Energetic and Mechanics Department at UAO, which provided the electrical, environmental, and waste and water management solutions.

.....

Lightweight Concrete

Thermal Conductivity

.....

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