Scan this code with your mobile device camera to take this page on-the-go!
https://redirect.aecdaily.com/s1089157/www.aecdaily.com/course/1140546
Since its introduction in the early 20th century, high-strength fiber cement has proven to be an affordable, sturdy construction material. Technological advances in recent years have increased its versatility in terms of color range and usage for ventilated rainscreen facades. This course examines what high-strength fiber cement is and how it can improve the structural sustainability of buildings and enhance creative freedom in design.
Scan this code with your mobile device camera to take this page on-the-go!
https://redirect.aecdaily.com/s12209/www.aecdaily.com/course/892901
In the wake of the green movement, combined with rising energy costs, building sustainability has become an important topic. This course examines how foil-faced polyisocyanurate (polyiso) continuous insulation can function as a multiple control layer, providing a building with an air and water-resistive barrier and a thermal control layer. Additionally, this course reviews building codes and standards for meeting the continuous insulation requirements in steel stud building envelope designs, the benefits of using polyiso insulation in wall assemblies, and how polyiso insulation meets NFPA 285 requirements.
Scan this code with your mobile device camera to take this page on-the-go!
https://redirect.aecdaily.com/s19104/www.aecdaily.com/course/1056062
Good building envelope design provides a weathertight and insulated structure. However, additional attachments are often required for safety, aesthetic, or functional reasons. This course discusses the design and installation of snow retention systems and mounting systems for solar panels that maintain roof integrity, contribute to a long-lasting building envelope system, and support solar energy and safety.
Scan this code with your mobile device camera to take this page on-the-go!
https://redirect.aecdaily.com/s522670/www.aecdaily.com/course/992394
Building systems can be enhanced by incorporating reflective insulation or radiant barriers into the building envelope. With effective insulation, heat transfer is reduced, resulting in less summer heat gain, and less winter heat loss. This course explains common and effective uses for reflective insulation and radiant barriers in a wide range of construction and building applications and demonstrates how these systems reduce energy usage, increase the lifespan of the mechanical equipment for heating and cooling, and reduce maintenance requirements and frequency of replacement.
Scan this code with your mobile device camera to take this page on-the-go!
https://redirect.aecdaily.com/s987165/www.aecdaily.com/course/1035082
Precast concrete pavers and roof deck systems enable designers to deliver on aesthetics and design objectives while achieving safety and durability requirements. Patented roof deck systems allow for the creation of safe and stable roof deck patios and green roofs that maintain sustainability requirements. This course examines the raw materials used in these systems, reviews the different finishes available, and discusses different paver applications and their methods of installation.
Scan this code with your mobile device camera to take this page on-the-go!
https://redirect.aecdaily.com/s1042490/www.aecdaily.com/course/1060032
Vinyl has long been a material of choice for construction products for interiors and exteriors because of its durability, cleanability, affordability, and suitability for a vast range of applications. This course furthers the conversation by discussing vinyl’s recyclability and sustainability and the attributes of laminated rigid PVC exterior and interior wall panels and siding and soffit products.
Scan this code with your mobile device camera to take this page on-the-go!
https://redirect.aecdaily.com/s789181/www.aecdaily.com/course/990198
Concrete is an essential part of modern buildings. As net zero energy buildings become more common, it is crucial to find ways to reduce concrete’s carbon footprint without losing the performance characteristics that make it valuable to the building team. This course explains the sources of concrete’s carbon footprint and explores strategies for reducing embodied carbon and operational carbon in precast sandwich wall panels and insulated architectural cladding.
Scan this code with your mobile device camera to take this page on-the-go!
https://redirect.aecdaily.com/s671/www.aecdaily.com/course/992134
Building science experts acknowledge the need for drainage in both vertical and horizontal applications in order to eliminate moisture issues and extend the life of the building. This course examines foundation wall, green roof, and plaza deck applications and discusses the factors that impact drainage, including soil permeability, saturation, land cover, and loading. Flow rate standards are discussed, and drainage composite mat installation is explained.
Scan this code with your mobile device camera to take this page on-the-go!
https://redirect.aecdaily.com/s473431/www.aecdaily.com/course/873972
Concrete is a very versatile and fundamental building material; however, because it is porous and wicks water through its matrix, concrete has water-related design challenges. This program examines the sustainable benefits of integral concrete waterproofing and analyzes traditional waterproofing methods as compared to integral methods in terms of performance, durability, risk, cost, and construction timeline.
Scan this code with your mobile device camera to take this page on-the-go!
https://redirect.aecdaily.com/s5533/www.aecdaily.com/course/969021
A metal roof combines performance and aesthetics to give commercial and residential buildings strength, longevity, and character. This course examines the features and benefits of standing seam metal roofing and explains the factors to consider when selecting a project-specific metal roofing system.
Scan this code with your mobile device camera to take this page on-the-go!
https://redirect.aecdaily.com/s5147/www.aecdaily.com/course/853451
Roofing technologies have come a long way from labor-intensive BUR systems that achieved watertightness through redundancy. Today’s single-ply membranes are thin, light and reliable, and installation is safe and efficient. This course focuses on thermoplastic single-plies, particularly those that are PVC based, and explores their benefits and limitations as well as the important factors to consider when selecting a roof system, ranging from fastening techniques to warranties to sustainability.
Scan this code with your mobile device camera to take this page on-the-go!
https://redirect.aecdaily.com/s987165/www.aecdaily.com/course/1043405
Wind forces always influence building design and detailing. This course focuses on one particular force, wind uplift, and its influence on roof paving system design and selection. It examines how wind loads and building configuration affect the design of roof paving systems; the codes, regulations, and calculation approaches that inform and control such designs; and the various options designers can use to design safe, appealing outdoor roof paving systems that will withstand even the strongest winds.
Scan this code with your mobile device camera to take this page on-the-go!
https://redirect.aecdaily.com/s877426/www.aecdaily.com/course/904671
The need to evaluate thermal bridging in a building’s design and performance has become more prevalent because of the increasing requirements for more energy-efficient buildings. This course provides an introduction to thermal bridging, energy code requirements, and the use of thermal break solutions designed to improve energy efficiency in the building envelope.
Scan this code with your mobile device camera to take this page on-the-go!
https://redirect.aecdaily.com/s677063/www.aecdaily.com/course/897991
It is an expectation that today’s buildings have to be more than just aesthetically pleasing: they have to provide measurable environmental benefits. This course outlines how insulated concrete forms (ICFs) help meet sustainable design objectives and examines the advantages that ICFs and ICF technology have over conventional construction materials for building envelopes in all building types.
Scan this code with your mobile device camera to take this page on-the-go!
https://redirect.aecdaily.com/s379494/www.aecdaily.com/course/1067199
Cellulose insulation has been used successfully by builders and designers for hundreds of years to provide comfort and warmth. Today, builders and designers also consider sustainability principles, climate change, occupant health and wellness issues, energy conservation, and carbon sequestration. Advanced cellulose insulation addresses all those areas as well. This course explains its environmental benefits, including its carbon capture ability, how it improves occupant health and well-being, and its numerous high-performance thermal, acoustic, and fire-resistant attributes.
Scan this code with your mobile device camera to take this page on-the-go!
https://redirect.aecdaily.com/s904648/www.aecdaily.com/course/1091539
Protected membrane roof (PMR) assemblies have been widely adopted in low-slope commercial buildings since the late 1960s. Also known as inverted or upside-down roofs, PMR assemblies move the waterproofing membrane from the top of the roof assembly to the surface of the structural deck. This course explores how PMR assemblies provide several advantages over conventional roof assemblies, offering superior protection against water penetration and enhanced energy efficiency. The course also shows how PMR assemblies allow for the creation of green roofs or blue roof systems. With a proven record of reliability, PMR assemblies present a compelling solution for architects seeking innovative, sustainable, and efficient roofing options.
Scan this code with your mobile device camera to take this page on-the-go!
https://redirect.aecdaily.com/s2955/www.aecdaily.com/course/894516
Currently, buildings are the single biggest contributor to GHG emissions, accounting for roughly half of all energy consumption in the U.S. and globally. It is crucial to reduce this level of consumption by including high-performance envelope strategies such as shading systems in all new building designs. In this course, we look at shading systems, examine shading and design strategies, and learn tips for successful selection and design.
Scan this code with your mobile device camera to take this page on-the-go!
https://redirect.aecdaily.com/s5023/www.aecdaily.com/course/1067507
This course explains the NFPA 285 test method, its origin, its procedures, when it is required, and design considerations necessary for compliance. Criteria in ASHRAE 90.1 for continuous insulation and air/water-resistive barriers are reviewed and identified as contributors to the rise of NFPA 285 requirements. The course also addresses code compliance in light of recent material changes, code changes, and additional testing.
Scan this code with your mobile device camera to take this page on-the-go!
https://redirect.aecdaily.com/s17339/www.aecdaily.com/course/979125
Incorporating nature into the built environment through biophilic design increases occupant well-being, productivity, and health and is an integral component of an ecologically healthy and sustainable community. Presented here is an overview of biophilic design, its relationship to sustainability, and its positive human, environmental, and economic outcomes. Case studies demonstrate how rooftop deck systems can contribute to biophilic and sustainable design objectives.
Scan this code with your mobile device camera to take this page on-the-go!
https://redirect.aecdaily.com/s616041/www.aecdaily.com/course/1048990
Building owners have come to rely on weatherable coatings to provide long-term protection to their buildings. With an increased focus on sustainability, performance, and durability, PVDF resin-based coatings can help architects and painting contractors exceed their clients’ design goals. This course covers the key components and functions of high-performance weatherable coatings and looks at how these coatings contribute to sustainable design.
Scan this code with your mobile device camera to take this page on-the-go!
https://redirect.aecdaily.com/s936437/www.aecdaily.com/course/948026
Thermal modification is a tried and tested process for increasing the durability of wood while maintaining a warm aesthetic in building design. This course examines all aspects of this sustainable wood product and how it can be incorporated into a variety of projects.
Scan this code with your mobile device camera to take this page on-the-go!
https://redirect.aecdaily.com/s10541/www.aecdaily.com/course/1012800
Masonry wall types have evolved from self-supporting mass walls to cavity walls and veneers that require wall ties or anchors. Over time, anchors can fail and masonry wall systems can become unstable and require repair. This course discusses how to recognize unstable façades, how retrofit anchors can be used to repair these instabilities, the different types of anchors available, and how to determine the proper repair procedure.
Scan this code with your mobile device camera to take this page on-the-go!
https://redirect.aecdaily.com/s13907/www.aecdaily.com/course/975033
Outdoor living space has become an important residential design consideration in the last several years. Decks create welcoming spaces to relax and entertain with family and friends, and a well-built deck can add more living space and value to a home. This course discusses deck surfaces, maintenance, and costs and explores porcelain tile as an alternative to wood and composite deck surfaces that is well suited to exterior environments. Also discussed is how porcelain tile can be used with a new pultruded fiberglass and composite underlayment, called structural ribbed self-supporting boards, and the sustainable features of this technology.
Scan this code with your mobile device camera to take this page on-the-go!
https://redirect.aecdaily.com/s18795/www.aecdaily.com/course/778805
Lightweight, prefinished, and factory-fabricated insulated metal panels (IMPs) offer building owners a durable, cost-efficient, and easy-to-install roofing system that provides an air barrier, vapor barrier, and insulation all in one product. This course discusses the characteristics of IMPs and the installation process and explains why IMPs are ideally suited for pre-engineered and structural steel buildings. The role of IMPs in a building’s hygrothermal control layers and IMP code compliance are reviewed.
Scan this code with your mobile device camera to take this page on-the-go!
https://redirect.aecdaily.com/s480282/www.aecdaily.com/course/979622
Some roof underlayments can trap moisture, degrade insulation performance, and create excessive condensation accumulation. Breathable, self-adhering roof underlayments enhance the drying capacity of the roofing assembly and therefore improve roofing performance. This course investigates current developments in these easy-to-install, vapor-permeable roof underlayments that mitigate water intrusion, reduce long-term exposure to wetted substrates, and extend the life of the overall structure. The course concludes with several sample installations.