最新版的EDGE-Expert資料,免費下載EDGE-Expert考試指南幫助妳通過EDGE-Expert考試
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EDGE EDGE-Expert學習筆記 - EDGE-Expert熱門證照
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最新的 GBCI EDGE EDGE-Expert 免費考試真題 (Q49-Q54):
問題 #49
Which of the following types of energy consumption results from EDGE?
- A. Renewable energy
- B. Primary energy
- C. Delivered energy
- D. Electrical energy
答案:C
解題說明:
According to the CBCI EDGE curriculum, the EDGE software calculates and reports building energy performance based on delivered energy consumption. Delivered energy refers to the actual energy supplied to the building from external sources such as electricity from the grid, natural gas, district cooling, or other fuels.
The software estimates annual energy use for both the baseline case and the improved case and expresses savings as a percentage reduction in delivered energy.
EDGE does not primarily report results in terms of primary energy, which would include upstream energy losses associated with extraction, generation, and transmission. While primary energy is a common metric in some building assessment systems, EDGE focuses on delivered energy because it is directly measurable, easier to verify, and more applicable across diverse markets globally.
Electrical energy alone is also not the sole output, since buildings may use multiple energy carriers such as gas or district systems. Renewable energy is considered within the improved case when on-site systems such as solar photovoltaics are included, but it is not itself the energy consumption result; rather, it offsets delivered energy demand. Therefore, the correct answer is delivered energy.
問題 #50
Excellence Lawyers wish to obtain an EDGE Advanced certificate for an entire single floor office they own within a high-rise building. What is the way to model this project in EDGE?
- A. The envelope, the wall lengths, materials, and Window-to-Wall Ratio WWR should represent the whole building.
- B. The envelope, the wall lengths, materials, and Window-to-Wall Ratio WWR should represent the offices only.
- C. The project has to model the whole building in the EDGE App.
- D. Partial buildings cannot be certified with EDGE.
答案:B
解題說明:
In the CBCI EDGE curriculum, a project can be certified for a defined scope when the owner is pursuing certification for only the area under their control, such as a tenant space, a single owned floor, or a partial building section. In this case, the "project" for EDGE purposes is the single-floor office area owned by Excellence Lawyers, not the entire high-rise. Therefore, the EDGE model must reflect the geometry and specifications of the certified scope only.
That means the envelope inputs should correspond to the office floor's relevant boundaries: external façade walls (if any), glazing areas, and the resulting Window-to-Wall Ratio for that office scope. Internal partitions that adjoin other conditioned spaces are not treated the same as external envelope elements, because they do not drive the same heat transfer to the outdoors. The same principle applies to wall materials and lengths: they must represent the office area being certified, using the actual constructions that apply to that scope.
Modeling the whole building would incorrectly attribute systems and envelope characteristics outside the owner's control and could distort the calculated savings and audit evidence. Hence, the correct approach is to model the office floor only.
問題 #51
Which of the following properties of glass are used in EDGE?
- A. Solar Heat Loss Coefficient SHLC
- B. Solar Heat Gain Coefficient SHGC
- C. Solar Reflectivity SR
- D. Shading Coefficient SC
答案:B
解題說明:
In the CBCI EDGE curriculum, glazing performance is characterized using properties that directly influence solar heat gains through windows, because this is a major driver of cooling energy demand in many climates.
The EDGE software uses Solar Heat Gain Coefficient, which represents the fraction of incident solar radiation that enters the building as heat through the glazing system. A lower SHGC reduces solar heat entering the indoor space, lowering cooling loads and improving the project's energy savings in the improved case.
Shading Coefficient is an older metric that is sometimes referenced in market literature, but EDGE standardizes the glazing solar performance input using SHGC for consistency across regions and products.
Solar Heat Loss Coefficient is not a standard glazing metric used in EDGE; heat loss through glazing is addressed using thermal transmittance measures such as U-value rather than an SHLC parameter. Solar Reflectivity may be relevant for certain roof or surface materials, but it is not the primary glazing property used in EDGE to quantify solar heat admitted indoors. Therefore, the correct glass property used in EDGE among the options provided is SHGC.
問題 #52
What is a valid use for collected rainwater to qualify for savings under EDGE?
- A. Redirecting to nearest drain
- B. Redirecting to nearest water body
- C. Ground water recharge
- D. Using for air-conditioning in cooling towers
答案:D
解題說明:
In the EDGE water assessment, rainwater harvesting contributes to savings only when the collected rainwater is used to directly reduce the building's demand for potable or municipal water. The curriculum explains that qualifying water savings must come from substituting potable water in recognized end uses such as toilet flushing, irrigation, and cooling tower make-up water where applicable. When rainwater is used as make-up water for cooling towers, it displaces treated potable water that would otherwise be required for heat rejection systems, and this reduction is captured in the EDGE software water calculations.
By contrast, options such as groundwater recharge or simply redirecting rainwater to drains or nearby water bodies do not reduce the building's potable water consumption. These actions may be beneficial for stormwater management, flood control, or environmental protection, but they do not represent a direct offset of the building's indoor or process water demand in the way EDGE quantifies water savings for certification.
Therefore, the valid use that qualifies for EDGE water savings in this question is using collected rainwater for cooling towers.
問題 #53
VRV / VRF System is best used for:
- A. Meeting space
- B. Single zone space
- C. Multizone space
- D. Single zone office space
答案:C
解題說明:
Variable Refrigerant Volume (VRV) or Variable Refrigerant Flow (VRF) systems are evaluated in EDGE for their energy efficiency in HVAC applications. The EDGE User Guide explains their application: "VRV/VRF systems are best suited for multizone spaces, as they can simultaneously heat and cool different zones by varying the refrigerant flow, making them ideal for buildings with diverse thermal loads, such as hotels, offices, or hospitals with multiple rooms" (EDGE User Guide, Section 4.2: Energy Efficiency Measures).
Option C, multizone space, aligns with this description, as VRV/VRF systems excel in managing varied temperature needs across multiple zones. Option A (single zone space) and Option B (single zone office space) are incorrect, as VRV/VRF systems are less efficient for single zones: "For single zone spaces, simpler systems like split units are more appropriate, as VRV/VRF systems are designed for multizone control" (EDGE Methodology Report Version 2.0, Section 5.1: Energy Efficiency Metrics). Option D (meeting space) is too specific and typically a single zone, not leveraging VRV/VRF's multizone capability: "Meeting spaces are often single zones, where VRV/VRF systems may be oversized" (EDGE User Guide, Section 4.2: Energy Efficiency Measures). Thus, VRV/VRF systems are best used for multizone spaces (Option C).
Reference: EDGE User Guide Version 2.1, Section 4.2: Energy Efficiency Measures; EDGE Methodology Report Version 2.0, Section 5.1: Energy Efficiency Metrics.
問題 #54
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