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EDGE EDGE-Expert Exam Syllabus Topics:

SectionWeightObjectives
Water Efficiency & Materials25%- Materials Embodied Energy (EE)
  • 1. Base case definition
  • 2. Materials EE measures
- Water Demand
  • 1. Water sources (mains-supplied, recovered, recycled)
  • 2. Base case water use in each building type
  • 3. Rainwater harvesting, recycling and other conservation techniques
  • 4. Water-saving measures
Energy Efficiency25%- Lighting & Hot Water
  • 1. Energy demand for lighting
  • 2. Energy demand for hot water
- HVAC Systems
  • 1. Technologies for Heating, Ventilation and Air Conditioning
- Energy Consumption
  • 1. Virtual energy for comfort
  • 2. Energy-saving measures
  • 3. Overall energy demand of buildings
Financial & Results Analysis10%- Results and outputs of EDGE
  • 1. Baseline, utility savings, GHGs reduced
  • 2. Financial outputs in results bar
EDGE System Overview15%- EDGE Certification Process
  • 1. Required Documentation
  • 2. GBCI Certification Services
  • 3. Certification Steps
- Understanding the EDGE Standard
  • 1. EDGE Certification Program
  • 2. EDGE Categories (Energy, Water, Materials)
  • 3. Benefits of Green Buildings
- Building Types & Applicability
  • 1. Residential
  • 2. Commercial (Retail, Office, Hospital)
  • 3. Hospitality & Educational Buildings
Software & Methodology25%- Baseline & Proposed Building Models
  • 1. Proposed Design Inputs
  • 2. Basecase Definition
- EDGE Software Interface
  • 1. Data Entry Requirements
  • 2. User Interface Navigation
- Climate Zones & Weather Data
  • 1. Impact of Climate on Building Design

>> EDGE-Expert学習教材 <<

EDGE-Expert日本語版復習資料、EDGE-Expert全真模擬試験

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EDGE Excellence in Design for Greater Efficiencies (EDGE Expert) Exam 認定 EDGE-Expert 試験問題 (Q14-Q19):

質問 # 14
Water consumption savings, resulting from greywater recovery, are based on which of the following?

正解:A

解説:
Greywater recovery in EDGE is a water efficiency measure, and the software calculates savings by comparing water consumption before and after implementing the measure. The EDGE Methodology Report explains the calculation method: "Water consumption savings from greywater recovery are calculated as the difference between the Base Case water consumption and the Improved Case water consumption after applying the measure. The Base Case represents the typical water use without any efficiency measures, serving as the benchmark for all savings calculations" (EDGE Methodology Report Version 2.0, Section 4.2: Water Savings Calculations). Option A, Base Case water consumption, is the correct reference point for determining savings, as it establishes the baseline against which the greywater recovery measure is evaluated. Option B (Improved Case water consumption) is the result after applying the measure, not the basis for savings. Option C (cost of water consumption at local tariff) and Option D (incremental cost of installation and cost of water consumption at local tariff) relate to financial outputs, not the direct calculation of water savings, as clarified:
"Water savings in EDGE are quantified in volume (liters or cubic meters), not cost, though cost savings are derived later using local tariffs" (EDGE User Guide, Section 5.2: Water Efficiency Measures). Thus, greywater recovery savings are based on Base Case water consumption (Option A).
Reference:EDGE Methodology Report Version 2.0, Section 4.2: Water Savings Calculations; EDGE User Guide Version 2.1, Section 5.2: Water Efficiency Measures.


質問 # 15
How often should the EDGE Advanced certification be renewed?

正解:B

解説:
According to the CBCI EDGE certification framework, EDGE Advanced certification, like EDGE Certified, does not require periodic renewal once it has been awarded. EDGE is a design and construction stage certification system that verifies compliance with energy, water, and materials efficiency targets at the time of certification. After successful design and site audits confirm that the committed measures have been implemented, the certificate is issued without an expiration date requiring routine renewal.
The system differs from operational performance rating tools that require re-certification based on ongoing performance data. EDGE focuses on the verified as-built performance compared to the baseline case at the time of project completion. Once the project achieves the required minimum 40 percent energy savings for EDGE Advanced, along with the standard 20 percent savings in water and materials, the certification remains valid without mandatory future audits.
Options suggesting renewal every two years or periodic cycles are not aligned with the EDGE framework.
Therefore, renewal is not required for EDGE Advanced certification, making option B the correct answer.


質問 # 16
In the EDGE software, which of the following methodologies is used for energy calculations?

正解:D

解説:
The EDGE software uses a quasi-steady-state calculation methodology for estimating building energy performance. This approach simplifies energy modeling by calculating heat gains and losses based on steady- state assumptions over defined time intervals, rather than performing detailed hour-by-hour simulations. The quasi-steady-state method allows EDGE to provide rapid and consistent energy performance assessments while maintaining sufficient technical accuracy for early design decision-making.
Unlike dynamic simulation models, which require complex input data, specialized software, and detailed operational schedules, the EDGE methodology is designed to be accessible and user-friendly for architects, engineers, and developers in emerging markets. It evaluates energy performance by comparing a baseline case, derived from local climate data and standard building practices, with an improved case reflecting selected energy efficiency measures.
Actual field survey energy data is not used because EDGE is primarily a design-stage predictive tool rather than a post-occupancy measurement system. Similarly, the calculations are not based solely on simplified look-up tables or rules of thumb. The quasi-steady-state model strikes a balance between technical rigor and usability, which is a core principle emphasized in the CBCI EDGE curriculum.


質問 # 17
Increasing the glazing area of an office building will NOT impact which of the following?

正解:B

解説:
Increasing the glazing area in an office building affects various aspects of energy consumption due to changes in heat gain, heat loss, and natural light availability, but it does not influence all buildingsystems. The EDGE User Guide explains the impacts of glazing: "Increasing the glazing area (window-to-wall ratio, WWR) in an office building typically increases cooling demand due to higher solar heat gain, increases heating demand in colder climates due to greater heat loss through windows, and reduces lighting energy by allowing more natural daylight, assuming proper daylighting design" (EDGE User Guide, Section 3.5: Passive Design Strategies). Option A (cooling demand) is affected, as more glazing increases solar heat gain: "Higher WWR leads to greater cooling loads in hot climates due to increased solar radiation entering the building" (EDGE Methodology Report Version 2.0, Section 5.2: Energy Calculation Methods). Option B (heating demand) is also impacted, particularly in cooler climates: "Larger glazing areas increase heat loss in cold climates, raising heating demand due to the lower thermal resistance of windows compared to walls" (EDGE User Guide, Section 4.1: Insulation Measures). Option C (lighting energy) is affected, as more glazing can reduce the need for artificial lighting: "Increased glazing can lower lighting energy by enhancing daylight penetration, provided glare is controlled" (EDGE User Guide, Section 4.4: Lighting Efficiency Measures). However, Option D (hot water demand) is not impacted by glazing area, as hot water use is tied to occupant activities (e.
g., showers, cleaning) rather than building envelope design: "Hot water demand in EDGE is determined by occupant use patterns, such as the number of showers or laundry cycles, and is not influenced by glazing area or WWR" (EDGE Methodology Report Version 2.0, Section 4.2: Water Savings Calculations). The EDGE User Guide further confirms: "Glazing area impacts energy-related metrics like cooling, heating, and lighting, but has no direct effect on hot water demand, which is calculated separately based on usage assumptions" (EDGE User Guide, Section 5.2: Water Efficiency Measures). Therefore, increasing glazing area does not impact hot water demand (Option D).
Reference:EDGE User Guide Version 2.1, Section 3.5: Passive Design Strategies, Section 4.1: Insulation Measures, Section 4.4: Lighting Efficiency Measures, Section 5.2: Water Efficiency Measures; EDGE Methodology Report Version 2.0, Section 5.2: Energy Calculation Methods, Section 4.2: Water Savings Calculations.


質問 # 18
Which of the following may NOT lead to a higher adoption of green building practices?

正解:C

解説:
Adoption of green building practices in EDGE is influenced by factors that incentivize or mandate resource efficiency. The EDGE User Guide discusses drivers for green building adoption: "Factors that lead to higher adoption of green building practices include green building regulations, which mandate compliance with efficiency standards; public awareness and capacity building, which educate stakeholders on the benefits of green design; and clear visibility of estimated savings and costs, which provide financial justification for green measures" (EDGE User Guide, Section 1.1: Introduction to EDGE). Option A (green building regulations) directly encourages adoption by enforcing standards: "Regulations requiring energy or water efficiency standards push developers to adopt green practices to meet legal requirements" (EDGE Certification Protocol, Section 1.2: Scope of EDGE Standard). Option C (public awareness and capacity building) increases adoption by educating stakeholders: "Awareness campaigns and training programs increase demand for greenbuildings by informing developers, owners, and tenants of their benefits" (EDGE User Guide, Section 1.1: Introduction to EDGE). Option D (clear visibility of estimated savings and costs) incentivizes adoption by demonstrating financial benefits: "EDGE's display of savings and payback periods motivates adoption by showing the return on investment for green measures" (EDGE User Guide, Section 2.4:
Interpreting EDGE Results). However, Option B (lower electricity supply costs) may not lead to higher adoption, as it reduces the financial incentive to save energy: "Lower electricity supply costs decrease the cost savings from energy efficiency measures, potentially discouraging investment in green practices, as the payback period for measures like insulation or efficient lighting becomes longer" (EDGE Methodology Report Version 2.0, Section 4.4: Cost Savings Calculations). The EDGE User Guide further elaborates: "High utility costs often drive green building adoption by making energy and water savings more financially attractive, whereas lower costs can reduce the urgency to implement efficiency measures" (EDGE User Guide, Section 1.2: Scope of EDGE Certification). In this context, lower electricity supply costs (Option B) may not encourage green building practices, as the economic motivation for energy savings diminishes.
Reference:EDGE User Guide Version 2.1, Section 1.1: Introduction to EDGE, Section 1.2: Scope of EDGE Certification, Section 2.4: Interpreting EDGE Results; EDGE Certification Protocol, Section 1.2: Scope of EDGE Standard; EDGE Methodology Report Version 2.0, Section 4.4: Cost Savings Calculations.


質問 # 19
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