USGBC LEED-AP-BD-C受験練習参考書、LEED-AP-BD-C学習指導
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USGBC LEED-AP-BD-C 認定試験の出題範囲:
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>> USGBC LEED-AP-BD-C受験練習参考書 <<
USGBC LEED-AP-BD-C学習指導 & LEED-AP-BD-Cテキスト
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USGBC LEED AP Building Design + Construction (LEED AP BD+C) 認定 LEED-AP-BD-C 試験問題 (Q186-Q191):
質問 # 186
At the time of registering a project in LEED Online, Regional Priority credits are determined based upon the project's
- A. environmental zone
- B. ASHRAE 90.1 - 2010 climate zone
- C. Environmental Protection Agency Phase I Assessment
- D. longitude and latitude
正解:D
解説:
At the time of registering a project in LEED Online, Regional Priority credits are determined based on the project's longitude and latitude. Regional Priority credits are bonus points that reward projects for addressing the environmental, social, and public health issues that are most relevant to their location1. The project team must enter the project's address and confirm the precise location using the Google Maps interface in LEED Online2. The longitude and latitude coordinates are then used to identify the Regional Priority credits that are applicable to the project2. The project can earn up to four Regional Priority points by achieving the base credits that correspond to the Regional Priority credits1. Reference:
Regional priority credit lookup | U.S. Green Building Council
Regional Priority (RP) credits - U.S. Green Building Council
質問 # 187
Every location in the U.S. identifies how many regional credits?
- A. Five
- B. Six
- C. Four
- D. Seven
正解:C
解説:
Every location in the U.S. identifies four regional credits that are of particular importance for that region.
These credits are selected by the USGBC regional councils and chapters based on the environmental, social, and public health issues that are relevant for their areas. A project can earn up to four bonus points by achieving these regional credits.
References:
*LEED v4 BD+C Reference Guide, page 6081
*Regional Priority (RP) credits - U.S. Green Building Council2
質問 # 188
Several Materials and Resources credits give a bonus location valuation factor, which allows products extracted, manufactured and produced within 100 mi. (161 km) of the project to take double valuation in credit calculations. The intent of this bonus is
- A. to avoid spreading products with potentially invasive non-native pests
- B. to promote design with indigenous materials in order to maintain local aesthetic quality
- C. to shorten construction duration by reducing shipping times
- D. to incentivize the purchase of products that support the local economy
正解:D
解説:
The bonus location valuation factor in several Materials and Resources credits under LEED AP BD+C V4 is intended to incentivize the purchase of products that support the local economy. Products extracted, manufactured, and produced within 100 miles (161 km) of the project are valued at 200% of their cost within the calculations1. This adds value to locally produced products and materials2.
質問 # 189
Which of the following strategies will aid in reducing indoor water use?
- A. Design drip irrigation for landscape
- B. Use high-efficiency HVAC systems
- C. Optimize consumption of showerheads
- D. Exclude janitor closets in the building
正解:C
解説:
According to the LEED v4: Building Design + Construction Guide, one of the strategies to reduce indoor water use is to optimize the consumption of showerheads by selecting fixtures that have a flow rate lower than the baseline of 2.0 gallons per minute (gpm) at 80 psi, or a local equivalent for projects outside the U.S. This can help the project achieve the Water Efficiency Prerequisite, Indoor Water Use Reduction, and the Water Efficiency Credit, Indoor Water Use Reduction, by reducing the aggregate water consumption from plumbing fixtures and fittings by at least 20% from the baseline1.
The other choices are not strategies to reduce indoor water use, because:
Designing drip irrigation for landscape is a strategy to reduce outdoor water use, not indoor water use1.
Using high-efficiency HVAC systems is a strategy to reduce energy use, not water use, although it may have some indirect water savings by reducing the cooling tower water use2.
Excluding janitor closets in the building is not a feasible or practical strategy, as janitor closets are necessary for cleaning and maintenance purposes, and may also be required by codes or standards3.
質問 # 190
A rectangular office building is located in an extremely humid climate and is shaded by very large adjacent buildings on all four sides. If the building owner wants to decrease the annual energy cost for operating the building, which of the following would be the best design approach?
- A. Increase outdoor air intake quantities during summer months
- B. Install glazing with a higher solar heat gain factor
- C. Recover waste energy through exhaust air energy recovery systems
- D. Install photovoltaic panels on the sides of the building
正解:C
解説:
The best design approach for the office building is D. Recover waste energy through exhaust air energy recovery systems. This is because:
* Installing glazing with a higher solar heat gain factor would increase the cooling load and energy consumption of the building, especially in an extremely humid climate where heat gain is high1.
* Installing photovoltaic panels on the sides of the building would generate electricity from solar radiation, but it would not reduce the cooling load or energy consumption of the building, unless the electricity is used to power a heat pump or other cooling device2.
* Increasing outdoor air intake quantities during summer months would provide more fresh air to dilute the indoor pollutants and improve the indoor air quality, but it would not reduce the cooling load or energy consumption of the building, unless it is combined with a ventilation system that recovers waste energy from the exhaust air stream34.
An exhaust air energy recovery system (ERV) is a type of mechanical ventilation that uses a heat exchanger to transfer heat between two streams of air: one that enters the building and one that exits. The ERV pre-cools and dehumidifies the incoming ventilation air by sending the rejected heat into the exhaust airstream to cool the condenser coil at a lower temperature. This reduces both the cooling load and energy consumption of the building, as well as improving its indoor humidity levels34. An ERV can also provide some fresh outdoor air to meet ASHRAE Standard 62 ventilation rates5.
Therefore, an ERV is a more efficient and effective design approach than glazing, photovoltaic panels, or increased outdoor air intake quantities for reducing the annual energy cost for operating an office building in an extremely humid climate and shaded by very large adjacent buildings on all four sides.
References: 1: LEED v4: Building Design + Construction Guide - U.S. Green Building Council 2: LEED AP BD+C Exam | U.S. Green Building Council 3: Energy Recovery Systems - Nortek Air Solutions 4: Energy Recovery Ventilators - Greenheck 5: Mechanical Ventilation Types: Exhaust, Supply, Balanced & Energy Recovery
質問 # 191
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