American Society of Heating, Refrigerating and Air-Conditioning Engineers
With more than 50,000 members from over 132 nations, ASHRAE is a diverse organization dedicated to advancing the arts and sciences of heating, ventilation, air conditioning and refrigeration to serve humanity and promote a sustainable world.
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Birds, bird droppings, and nesting materials can detract from buildings' architectural features; more importantly, they can negatively impact the environment by creating health and safety risks. Eliminating a bird problem requires a strategic combination of preventive measures and proven bird control products. This course explores the characteristics of common birds, bird problem assessment, and the solutions designed to deter the roosting and nesting of pest birds.
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https://redirect.aecdaily.com/s7816/www.aecdaily.com/course/802273
Interlocking concrete pavers (ICP) have the ability to spread applied loads via the interlock between each unit. This means that the surface does not respond structurally as single pavers but as a composite paved surface. This structural characteristic of ICP allows the design method for these pavements to be based on flexible pavement design. In this course, we examine the ASCE and ICPI structural design methods for ICP and review examples using different soil strengths/stiffnesses and traffic uses. Finally, we survey the design and construction support material and software available from the Interlocking Concrete Pavement Institute.
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Today’s building professionals and owners share enthusiasm for building envelope performance. Building envelopes separate the building interior from the exterior environment. As such, they are exposed to a variety of environmental loads, including wind pressure, solar radiation, and rain. This course provides an overview of the major thermodynamic considerations for the proper construction of the building envelope with a focus on insulated metal panels (IMPs) that provide all four control layers (air, water, vapor, and thermal) in a single-component system.
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Automated-shading systems are designed to maximize natural daylight, increase building energy efficiency, and ensure occupants have a comfortable environment with views to the outside. This course will explain how an automated shading system predicts, monitors, and responds to the daily microclimate surrounding a building to effectively manage daylight, solar-heat gain, occupant comfort levels, and energy use demands.
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Thermally controlled environments such as cold storage freezers and coolers, and food processing and packaging facilities take many different forms. Their performance and functionality depend on their project-specific requirements and can be affected by the conditions the materials and systems are subjected to. This course discusses how insulated metal panels (IMPs) perform the necessary functions to provide an effective energy-efficient building envelope and why they are suitable for use within temperature-controlled hygienic environments—where performance is critical.
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Insights gained during the COVID-19 pandemic have shown how vulnerable we are to contagion through indoor air, but the pandemic also revealed many new solutions to better ensure indoor air quality. In this course, we examine the role of humidity in indoor air quality and its impact on air pollutants. We also discuss how to control humidity in residential and commercial spaces and review several solutions for humidity control.
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Rapidly changing trends in our society, such as urbanization and a modern lifestyle, have resulted in the isolation of humans from experiences within nature. Research has shown that the psychological effects of biophilic design on noise perception have a significant influence on the well-being and health of humans. In this course, we review the science of sound, identify the potential problems associated with noise, and introduce the range of acoustic solutions formed from polyethylene terephthalate (PET) felt designed to provide sound-dampening benefits for busy commercial, educational, and healthcare facilities.
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Resiliency is a growing necessity. It is important to understand the impacts on the built environment resulting from natural and manmade disasters and disturbances and to design for those impacts now. Presented in this course is an overview of the benefits of using steel doors as part of a resilient design strategy for applications requiring resistance to blasts, tornadoes, and ballistics.
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Net zero energy ready buildings are a popular topic in today's world of climate change. This course explores how energy efficiency has expanded toward exterior wall assemblies, where thermal bridging and thermally broken subframing systems are becoming the new norm.
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Today's architects are faced with a difficult task: how best to design buildings that meet up-to-date energy codes while keeping costs down and clients happy. Developments in filtration technology make it possible to conserve energy, improve indoor air quality (IAQ), and dramatically reduce ongoing utility and operating costs. This course reviews advanced engineered solutions for energy savings and air quality for commercial, institutional, medical, pharmaceutical, and other critical applications.
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The key to an energy-efficient metal building is the implementation of a continuous insulation system that virtually eliminates thermal bridging and prevents condensation. This course discusses how using thermal spacer blocks and metal building insulation in the building envelope increases energy performance, protects against condensation, and meets stringent energy code requirements.
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Data centers, some consuming up to 200X the energy of comparably sized office space, are rapidly evolving in numbers, size, location, and energy demands. These facilities are frequently becoming integrated into other buildings and the purview of the architect. This course reviews the data center impact on building design and then identifies and describes the most effective design approaches and fitments that building designers can employ to control their capital and operating costs, spatial needs, and energy consumption.
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The Environmental Product Declaration (EPD) is not just an idea about how to “grade the greenness” of products; it is a well-developed, globally recognized way to make responsible comparisons and decisions regarding sustainable material design and continuous improvement. This course discusses the concept of the EPD as applied to building materials and how to integrate EPDs into design and product selection decisions. Detailed information from different thermal insulation EPDs is used to demonstrate how thermal insulation provides a unique and significant payback in terms of energy and environmental impacts.
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Insulation can help increase overall energy efficiency, minimize the spread of fire, manage risks associated with moisture and mold, and improve occupant comfort. Choosing the right insulation and putting it in the right location is becoming one of the most important decisions in design, construction, and retrofit. Reviewed in this course are the features, benefits, and design and installation considerations related to mineral wool continuous insulation.
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From fashion to function, the shower space of the bathroom is a focal point, offering a place of quiet respite for rejuvenation. Shower spaces should be built to last, using durable materials combined with sound installation practices in order to reduce life cycle and replacement costs. This course outlines the criteria used in designing water management systems for shower pans and walls and includes discussions on traditional and modern methods of waterproofing shower floors and walls, new methods of construction, and the innovative design options that are available for curbless shower pans.
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https://redirect.aecdaily.com/s904648/www.aecdaily.com/course/924077
This recorded webinar is the third of five sessions presented during the Building Science Master Summit held by DuPont Performance Building Solutions. This course dives into the topic of below-grade thermal performance and how to appropriately design for the long term. It explores heat loss patterns; energy code requirements and how they differ by region and building type; insulating best practices and benefits; and considerations for material selection.
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Water and moisture intrusion can affect everything from a building’s structural durability to its indoor air quality. Understanding the material options, installation, and testing criteria for high-performing weather-resistant barriers (WRBs) can help specifiers manage present and future moisture concerns.
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https://redirect.aecdaily.com/s840811/www.aecdaily.com/course/862566
By design, automatic pedestrian doors provide easier, more convenient access than manual doors for a wide variety of building types, and their popularity in commercial design continues to grow. Reviewed in this course are the available options of automatic door solutions, including sliding, swinging, ICC/CCU, and revolving door systems. Also discussed are the code requirements and considerations relating to automatic doors for proper specification.
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https://redirect.aecdaily.com/s10851/www.aecdaily.com/course/1141237
Often the largest access point in a building, sectional door systems play a significant role in controlling energy costs and supporting sustainable design in residential and commercial buildings. This course explores the specification considerations and the different types of sectional garage doors, as well as their role in enhancing the thermal performance of homes and commercial buildings.
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Exterior shading devices offer a number of advantages that contribute to a more sustainable building, including minimizing cooling costs, reducing peak electricity demand, and controlling glare. These benefits result in greater occupant comfort and improved productivity. This course provides a review of exterior aluminum shading device systems, including the components, finishes, and design and engineering considerations, as well as a discussion of how shading strategies contribute to LEED® certification.
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Energy creation, distribution, and consumption are all in a period of transition. Understanding this transition and its benefits is critical to sustainable transitional energy planning (STEP). This course reviews the nature of the transition, the forces driving it, emerging energy systems and sources, and international and national examples. It details the process required for STEP and provides a comprehensive overview of the many renewable energy options now viable for community energy systems. It concludes with a series of illustrated sample plans and projects.
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The increase in building energy efficiency requirements has led to the use of exterior continuous insulation (CI) to improve the performance of the building envelope. This presentation reviews the benefits of polyiso continuous insulation and then examines in detail the NFPA 285 test standard and fire safety requirements of the 2021 International Building Code for the use of polyisocyanurate insulation in exterior walls of commercial buildings (Construction Types I–IV).
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https://redirect.aecdaily.com/s20166/www.aecdaily.com/course/912597
Research indicates that the quality of light directly affects the quality of life in a space; access to daylight and outdoor views promotes happiness and productivity. Reviewed in this course are the features of polycarbonate sheeting systems and how they contribute to energy-efficient daylighting design, as well as the overall health and well-being of the building occupants.
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https://redirect.aecdaily.com/s1134927/www.aecdaily.com/course/1144645
Locating mechanical and electrical equipment on a roof is often necessary for space and efficiency in a building design. However, it can be challenging to provide a means for safe maintenance access while preserving the roof membrane and structural integrity and not interfering with other rooftop equipment. This course presents the components that comprise rooftop support systems designed to solve these challenges, as well as system design considerations and compliance with the International Building Code® (IBC®) and the International Mechanical Code® (IMC®).
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https://redirect.aecdaily.com/s753467/www.aecdaily.com/course/900996
Leading aluminum extrusion manufacturers have established a variety of methods pertaining to material grade, surface protection, and component solutions to maximize the benefits of aluminum to suit a wide variety of applications. These advancements in technology have led to the development of sustainable wood-patterned aluminum products designed for exterior and interior applications. This course focuses on how these products can be used as a beautiful, high-performance, durable alternative for real wood in a range of applications, including screens, facades, decking, fencing, gates, cladding, and more.