This document discusses concepts and approaches for achieving energy efficiency in green building design in Indonesia. It provides definitions and regulations related to green buildings, examines energy conditions and challenges in Indonesia, and outlines a high performance building approach focusing on passive design strategies like building orientation and envelope optimization, as well as active design strategies such as high efficiency mechanical systems, lighting, and air distribution.
Building services (Passive Cooling Techniques) for Architectural studentsChad Minott
Passive cooling has several methods of cooling a structure specifically the Caribbean region. This essay will help students gain a greater understanding of ways to approach in cooling a building within the Caribbean.
The primary objective of this report is to provide a convenient, consistent and accurate method of calculating heating and cooling loads and to enable the designer to select systems that meet the requirement for efficient utilization and are also responsive to environmental needs. The ability to estimate loads more accurately due to changes in the calculation procedure provides a lessened margin of error. Therefore, it becomes increasingly important to survey and check more carefully the load sources, each item in the load and the effect of the system type on the load. Junaid Hussain | Syed Abdul Gaffar "Heat Load Calculation" Published in International Journal of Trend in Scientific Research and Development (ijtsrd), ISSN: 2456-6470, Volume-3 | Issue-5 , August 2019, URL: https://www.ijtsrd.com/papers/ijtsrd26571.pdfPaper URL: https://www.ijtsrd.com/engineering/mechanical-engineering/26571/heat-load-calculation/junaid-hussain
The presentation will include the following topics:
- Fundamentals of energy modeling
- Overview of the eQUEST energy modeling program
- Recommendations for integrating energy modeling into the design process
- Brief description of baseline energy modeling using ASHRAE Appendix G
- Recommended strategies for reducing energy use
- How to review energy modeling results
-Common problems and how to avoid them
Building Energy Management Systems (BEMS) control the functions of the building, allowing a smooth operation and efficient functioning of the building.
Theory and fundamentals of Active Chilled Beams presented at the Illinois Chapter of ASHRAE, February 8, 2011. Presented by Matt Green of Thermosystems.
Building services (Passive Cooling Techniques) for Architectural studentsChad Minott
Passive cooling has several methods of cooling a structure specifically the Caribbean region. This essay will help students gain a greater understanding of ways to approach in cooling a building within the Caribbean.
The primary objective of this report is to provide a convenient, consistent and accurate method of calculating heating and cooling loads and to enable the designer to select systems that meet the requirement for efficient utilization and are also responsive to environmental needs. The ability to estimate loads more accurately due to changes in the calculation procedure provides a lessened margin of error. Therefore, it becomes increasingly important to survey and check more carefully the load sources, each item in the load and the effect of the system type on the load. Junaid Hussain | Syed Abdul Gaffar "Heat Load Calculation" Published in International Journal of Trend in Scientific Research and Development (ijtsrd), ISSN: 2456-6470, Volume-3 | Issue-5 , August 2019, URL: https://www.ijtsrd.com/papers/ijtsrd26571.pdfPaper URL: https://www.ijtsrd.com/engineering/mechanical-engineering/26571/heat-load-calculation/junaid-hussain
The presentation will include the following topics:
- Fundamentals of energy modeling
- Overview of the eQUEST energy modeling program
- Recommendations for integrating energy modeling into the design process
- Brief description of baseline energy modeling using ASHRAE Appendix G
- Recommended strategies for reducing energy use
- How to review energy modeling results
-Common problems and how to avoid them
Building Energy Management Systems (BEMS) control the functions of the building, allowing a smooth operation and efficient functioning of the building.
Theory and fundamentals of Active Chilled Beams presented at the Illinois Chapter of ASHRAE, February 8, 2011. Presented by Matt Green of Thermosystems.
Green Building in India with Case StudyAjayashKekan
The presentation comes with definitions, uses, advantages, etc.
Including the case study of Green Building in India &
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The Pembina Institute presents the Reframed Tech Series — webinars on evolving deep retrofit solutions.
Watch our fourth webinar to hear from leaders in integrating solar panels into deep retrofit solutions. Learn about solar costing and projects underway, and ask burning questions about the opportunities and challenges of bundling photovoltaic systems with retrofit packages.
https://pembina.org/ReframedTechSeries
BCI Equinox 2022 - CLB Kien Truc Xanh - Ms PhanThuHang - ENARDOR
Ms. Hang Phan has been the Chair of Vietnam Green Building Council (VGBC) since 2018, responsible for the VGBC Board of Directors to formulate strategic directions of the Council that drive the green building agenda for Vietnam. Ms. Hang has over 20 years’ experience in building science. Her first major is in Architecture before extending the scope to building management and material, and currently is the APAC Sustainable Market Development Director in Saint-Gobain.
She is also a certified Coach & Trainer, especially for Sustainability coaching, helping to make conscious choices for a new lifestyle, in harmony with nature.
---
Về BCI:
Tập đoàn Truyền thông Xây dựng BCI hoạt động báo cáo các dự án xây dựng tương lai trong khu vực châu Á Thái Bình Dương.
BCI là cầu nối thông tin giữa các chuyên gia tư vấn thiết kế đang tìm kiếm sản phẩm để chỉ định cho các dự án và các nhà cung cấp đang tìm cách thông báo cho các nhà thiết kế về những sản phẩm và công nghệ xây dựng mới. Để làm điều đó, BCI tiến hành hơn 250.000 buổi gặp mặt và điện thoại phỏng vấn với kiến trúc sư, chủ đầu tư, kỹ sư và nhà thầu mỗi năm, báo cáo các dự án với tổng giá trị khoảng 400 tỷ đô la Mỹ.
Bên cạnh việc đề cao sự minh bạch và hiệu quả thông qua dịch vụ nghiên cứu, BCI cũng xuất bản tập san FuturArc, Construction+ và các tạp chí kiến trúc khác.
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Về Câu lạc bộ Kiến trúc Xanh TP.HCM (CLB KTX TP.HCM):
Câu lạc bộ Kiến trúc Xanh TP.HCM được thành lập vào tháng 09/2011 là nơi tập hợp các thành viên từ nhiều lĩnh vực, có cùng quan tâm và nhiệt huyết trong việc thúc đẩy sự phát triển các Công trình Xanh tại Việt Nam.
Trải qua gần 11 năm hoạt động, cùng sự hỗ trợ của Trung tâm Tiết kiệm Năng lượng TP.HCM và Hội Kiến trúc sư TP.HCM trong thời gian đầu, CLB KTX TP.HCM ngày càng phát triển với số lượng thành viên chính thức hơn 500 người, tổ chức được nhiều Hội thảo chuyên ngành lớn về kiến trúc, quy hoạch, cảnh quan, nhà ở, vật liệu, trang thiết bị, công nghệ và năng lượng xanh, v.v.
Các hội thảo được CLB tổ chức theo hướng trao đổi kiến thức, chia sẻ giải pháp và ứng dụng thực tiễn, với sự tham gia của các đơn vị đồng hành và đặc biệt là của các chuyên gia cùng lĩnh vực ở cả trong và ngoài nước.
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- News: https://www.futurarc.com/new/bci-equinox-ho-chi-minh-city-focuses-on-net-zero-carbon-and-wellness/
- News: https://www.constructionplusasia.com/vi/bci-equinox-2022-chu-de-net-zero-carbon-wellness/
Highlights of the Kuwait HVAC&R Conference 2017Swati Warang
A brief-overview of the highlights of the 2nd kuwait HVAC&R Conference, a confluence of ideas to improve HVAC system efficiency and implement best practices in construction.
Green Building: Sustainable Architecture
Environmentally responsible and resource efficient building design. Architecture that minimizes the negative environmental impact of buildings by efficiency in the use of materials and energy. Goal: to effectively reduce the overall impact of the built environment on human health and the natural environment and increase comfort and livability. Consistent with AIA sponsored Architecture Challenge 2030.
McNaughton Architectural Inc. | http://mna-p.com
300 E State St Suite 360, Redlands, CA 92373
(909) 583-1806
There is no denying the fact that human habitat is an essential part of a civil society but at the cost of nature.
The natural resources are limited and depleting very fast.
Global CO2 emission is growing at 1.3% per year.
Energy in all forms generated for use by man is continuously getting more expensive and becoming scarce in availability.
Thus we must enforce measures of sustainability and live in harmony with nature.
DOCWEB TECHNOLOGIES LTD., is an independent, international solution partner and project management firm in Abuja, and have worked with organizations across boards, assisting with the successful engineering, consultative, procurement, assessments, construction, and implementation of RENEWABLE ENERGY SOLUTION projects such as wind energy system, solar energy system and energy storage system to provide a 24/7 uninterrupted off-grid power supply, giving value for your money with lots of guarantees.
As a business development company, endowed with independent energy services and an energy consulting company registered in Nigeria, we leverage on our partnerships’ Technologies to build quality solutions, operate on a global trend, specializing in providing energy services to both private and public-sector clients. We promote and provide services on Renewable Energy Solutions.
Our MISSION as a solution partnering company is to promote the reduction of carbon emissions and spur economic growth by creating reliable and affordable clean energy solutions. We further aim to ensure an attractive Return on Investment for our clients and strategic partners.
We specialize in assisting public and private sector clients in designing, installing and retrofitting mechanical and electrical equipment, including renewable technologies, and implementing process improvements that use less energy and improve building comfort while at the same time lowering the facility’s operating and maintenance costs.
Sustainability and environmental protection are our priorities. Creating efficient and sustainable renewable energy projects includes intelligent energy storage, especially in areas with unstable grids or remote territories, this has inspired us constantly on our path towards a clean energy future. Our aim is to enable everyone to benefit from cost effective and environmentally friendly renewable power production as an alternative to fossil fuel energy. Our employees and partners are achievers in environmental, economic and social standards. We assume responsibility today – for a clean and sustainable future!
Regards
Caleb Obiajuru
Marketing Consultant
+234 816 445 7372
caleb.obiajuru@gmail.com
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About
Indigenized remote control interface card suitable for MAFI system CCR equipment. Compatible for IDM8000 CCR. Backplane mounted serial and TCP/Ethernet communication module for CCR remote access. IDM 8000 CCR remote control on serial and TCP protocol.
• Remote control: Parallel or serial interface.
• Compatible with MAFI CCR system.
• Compatible with IDM8000 CCR.
• Compatible with Backplane mount serial communication.
• Compatible with commercial and Defence aviation CCR system.
• Remote control system for accessing CCR and allied system over serial or TCP.
• Indigenized local Support/presence in India.
• Easy in configuration using DIP switches.
Technical Specifications
Indigenized remote control interface card suitable for MAFI system CCR equipment. Compatible for IDM8000 CCR. Backplane mounted serial and TCP/Ethernet communication module for CCR remote access. IDM 8000 CCR remote control on serial and TCP protocol.
Key Features
Indigenized remote control interface card suitable for MAFI system CCR equipment. Compatible for IDM8000 CCR. Backplane mounted serial and TCP/Ethernet communication module for CCR remote access. IDM 8000 CCR remote control on serial and TCP protocol.
• Remote control: Parallel or serial interface
• Compatible with MAFI CCR system
• Copatiable with IDM8000 CCR
• Compatible with Backplane mount serial communication.
• Compatible with commercial and Defence aviation CCR system.
• Remote control system for accessing CCR and allied system over serial or TCP.
• Indigenized local Support/presence in India.
Application
• Remote control: Parallel or serial interface.
• Compatible with MAFI CCR system.
• Compatible with IDM8000 CCR.
• Compatible with Backplane mount serial communication.
• Compatible with commercial and Defence aviation CCR system.
• Remote control system for accessing CCR and allied system over serial or TCP.
• Indigenized local Support/presence in India.
• Easy in configuration using DIP switches.
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Konsep ee green building bea hvac final
1. Memahami dan Menerapkan Konsep
Energy Efficiency Green Building
Green Bu ildin g Cou n cil In don esia
Deddy el Rashid GP
Core Founder GBCI
Jakar ta, 30 September 2017
3. • PERMEN PU 02/PRT/M/2015
TENTANG BANGUNAN GEDUNG
HIJAU
• Bangunan Gedung Hijau adalah
Bangunan yang memenuhi
persyaratan bangunan gedung
dan memiliki kinerja terukur
secara signifikan dalam
penghematan energy, air, dan
sumber daya lainnya melalui
penerapan prinsip bangunan
gedung hijau sesuai dengan
fungsi dan klasifikasi dalam setiap
tahapan penyelengaraanya
PERATURAN PEMERINTAH TTG BANGUNAN HIJAU
PERMEN PU 02/2015 PERGUB 38 2012
• PERGUB 38 TAHUN 2012 TENTANG
BANGUNAN HIJAU
• Bangunan Hijau adalah Bangunan
yang bertanggung jawab terhadap
ligkungan dan sumber daya yang
effisien dari sejak perencanaan,
pelaksanaan konstruksi, pemanfaatan,
pemeliharaan sampai dekontruksi
15. The planet of Earth does not
have manual
We need to make the manual to make it
SUSTAIN for the next generation
16.
17. Tepat Guna Lahan
Efisiensi dan
Konservasi Energi
Konservasi Air
Siklus dan Sumber
Material
Kesehatan dan
Kenyamanan dalam
Ruang
Manajemen Lingkungan
Bangunan
Catagory Green Building
24. Energy
Condition and
Challenges in
Indonesia
Electricity in Indonesia
Energy Consumption Database
Energy Policy
Commercial Building Energy Consumption Survey (CBECS)
• USA: by EIA (Energy Information Agency)
• 30.000 + building
ENERGY EFFICIENCY & CONSERVATION
Mall,retailandservice= 350 - 500 kWh/m2
/y
Hospital= 320-450 kWh/m2
/y
Apartment=300-400 kWh/m2
/y
Hotel=290-400 kWh/m2
/y
Office=210-285 kWh/m2
/y
Education=165-295 k Wh/m2
/y
EEI = 240
kWh/m2.annum
EEI = 208
kWh/m2.annum
EEI = 198
kWh/m2.annum
EEI = 133
kWh/m2.annum
EEI = 98
kWh/m2.annum
Envelope optimization
Lighting optimization
HVAC optimization
Control systems
Source: Energy Efficiency Guidelines for
Building Design in Indonesia, 2013
25. Energy Condition and
Challenges in
Indonesia
Electricity in Indonesia
Energy Consumption Database
Energy Policy
• 95% source from fossil fuel
• Production cost Rp 1960/kWh, selling price Rp 1000/kWh
• Subsidized by Gov. ~ Rp 100T / year
• No incentives for Green Building / Renewable energy
ENERGY EFFICIENCY & CONSERVATION
• Ministry of Energy and Mineral Resources
2012
26. • IFC Study 2011
• JICA Study 2009
ENERGY EFFICIENCY & CONSERVATION
0
50
100
150
200
250
300
Hospital Shopping Mall Hotel Office
175
225
160
140
270
297 293
240
japan
Jakarta
Energy Efficiency Index
(KWH/m2.yr)
Electricity in Indonesia
Energy Consumption Database
Energy Policy
Energy
Condition and
Challenges in
Indonesia
27. Energy Condition and
Challenges in
Indonesia
Electricity in Indonesia
Energy Consumption Database
Energy Policy
ENERGY EFFICIENCY & CONSERVATION
• Ministry of Energy and Mineral Resources 2015
28. Energy Condition and
Challenges in
Indonesia
ENERGY EFFICIENCY & CONSERVATION
Electricity in Indonesia
Energy Consumption Database
Energy Policy
30. High Performance
Building Approach
ENERGY EFFICIENCY & CONSERVATION
Financing
Concept Landscape and
Environmental
Design Concept
Architectural
Design Concept
Human Comfort
Design Concept
Electrical and Lighting
Design Concept
Mechanical Design
Concept
Operations and
Maintenance
Principles
Structural Design
Concept
Integrated Efficient
Design
31. E N E R G Y F O R F U T U R E
High Performance
Building Approach
Passive Design:
• Building form & orientation
• Façade material
• Shading devices
• Natural daylightingroof
lights
equipment
exterior
wall
glass
solar
glass
conduction
infiltration
people
partition
wall
BuildingEnvelope Lighting People FreshAir Others
Heat Gain Components
ENERGY EFFICIENCY & CONSERVATION
32. E N E R G Y F O R F U T U R E
High Performance
Building Approach
Passive Design:
• Building form & orientation
• Façade material
• Shading devices
• Natural daylighting
East & West:
• Receives the largest solar radiation
• Minimize glass material – use solid wall
• Use shading devices
Solar Heat gain
Through
Windows 75%
Cooling Load
through Façade
55%
ENERGY KILLER
FACADE
ENERGY EFFICIENCY & CONSERVATION
33. High Performance
Building Approach
Passive Design:
• Building form & orientation
• Façade material
• Shading devices
• Natural daylighting
ENERGY EFFICIENCY & CONSERVATION
Wall U-Value Window U-Value Window SC
• U-value :
the rate of transfer of heat (in watts) through one square metre of a structure divided by the
difference in temperature across the structure
• Shading Coefficient (SC) :
the ratio of solar gain (due to direct sunlight) passing through a glass unit to the solar
energy which passes through 3mm Clear Float Glass.
34. UnCoated
Reflective
Hard Low-E
Hard Low-E Soft Low-E
Reflective
Low-E
Fritted Glass +
Low-E
Fritted Glass +
Low-E
Fritted Glass +
Low-E
G1 G2 G3 G4 G5 G6 G7 G8
Glazing Layout
All Glass Thickness = 6 mm
Airfilled Cavity = 12 mm
Glass =
Low E Coating =
Selective Interlayer =
Fritted Coating =
U Value SI
2.8 W/m2
k 2.0 W/m2
k 1.9 W/m2
k 1.6 W/m2
k 1.6 W/m2
k 1.6 W/m2
k 1.6 W/m2
k 1.6 W/m2
k
U Value IP
0.49 Btuh/ft2
F 0.35 Btuh/ft2
F 0.33 Btuh/ft2
F 0.28 Btuh/ft2
F 0.28 Btuh/ft2
F 0.28 Btuh/ft2
F 0.28 Btuh/ft2
F 0.28 Btuh/ft2
F
Shading Coefficient 0.81 0.64 0.71 0.45 0.33 0.39 0.33 0.28
TL Visual Light Trasmittance 0.79 0.73 0.73 0.68 0.42 0.59 0.49 0.38
TSoL Solar Transmittance 0.61 0.52 0.52 0.33 0.23 0.27 0.22 0.17
RVis1 Extrenal Visible Light Reflectance 0.14 0.16 0.16 0.1 0.34 0.15 0.2 0.25
RVis2 Internal Visible Light Reflectance 0.14 0.17 0.17 0.11 0.14 0.16 0.22 0.28
STC / OITC (db) 35/30 35/30 35/30 35/30 35/30 35/30 35/30 35/30
1 BTU / hr ft2 °F = 5.678 W / m2 K.
1 W / m2 K = 0.176 BTU / hr ft2 °F.
All Values are calculated as centre of pane values for vertical application.Space bars,frames and edge effects will increase the overall U value of the glazing unit
NB.Performance data [except accoiustic] has been calculated using LBNL Windows 5.2a Software with environmental conditions NFRC 100-2001 Summer
Sample of Achievable Glazing Performance
Double Glazing (Vertical)
35. High Performance
Building Approach
Passive Design:
• Building form & orientation
• Façade material
• Shading devices
• Natural daylighting
Effective in reducing solar radiation through window
ENERGY EFFICIENCY & CONSERVATION
36. High Performance
Building Approach
Passive Design:
• Building form & orientation
• Façade material
• Shading devices
• Natural daylighting
ENERGY EFFICIENCY & CONSERVATION
37. E N E R G Y F O R F U T U R E
High Performance
Building Approach
Active Design:
• High efficiency chiller plant
• High efficiency air distribution
• Energy saving lighting
• Occupancy and lux sensor
• Energy saving elevator and escalator
ENERGY EFFICIENCY & CONSERVATION
COP KW/TR
Split < 65.000 Btuh 2,6 1,353
VRV 3,7 0,951
Split Duct 2,5 1,407
AC Chiller < 150 TR (recip) 2,7 1,303
AC Chiller < 150 TR (screw) 2,7 1,303
AC Chiller > 150 TR (recip) 2,5 1,407
AC Chiller > 150 TR (screw) 2,5 1,407
WC Chiller < 150 TR (recip) 3,8 0,926
WC Chiller < 150 TR (screw) 3,8 0,926
WC Chiller > 150 TR (recip) 4,2 0,837
WC Chiller > 150 TR (recip) 4,2 0,837
WC Chiller > 300 TR (centrifugal) 5,2 0,676
BASE - BASED ON S.N.I.
TIPE AC
Air Cooled
Water Cooled
VRF
45. High Performance
Building Approach
Active Design:
• High efficiency chiller plant
• High efficiency air distribution
• Energy saving lighting
• Occupancy and lux sensor
• Energy saving elevator and escalator
Chiller
ENERGY EFFICIENCY & CONSERVATION
Water Cooled Chiller
Air Distribution
AHU 80 C
130 C
Chilled Water Pump
1. Chilled Water Loop
1 2
2. Refrigerant Loop
3. Condenser Water Loop
Condenser Water Pump
29.50 C
350 C
3
Cooling Tower
Chiller Plant Controller
46. E N E R G Y F O R F U T U R E
High Performance
Building Approach
Active Design:
• High efficiency chiller plant
• High efficiency air distribution
• Energy saving lighting
• Occupancy and lux sensor
• Energy saving elevator and escalator
Component of chiller plant::
• Chiller
• Chilled water pump (CHWP)
• Condenser water pump (CWP)
• Cooling Tower
Energy saving potential:
• VSD
• Chiller Plant Integrated Controller
• Efficient Water Distribution
Energy Consumption of Chiller Plant
ENERGY EFFICIENCY & CONSERVATION
48. High Performance
Building Approach
Active Design:
• High efficiency chiller plant
• High efficiency air distribution
• Energy saving lighting
• Occupancy and lux sensor
• Energy saving elevator and escalator
High Efficiency AHU
+ Variable Air Volume (VAV)
ENERGY EFFICIENCY & CONSERVATION
• AHU: motor, fan, coil, variable speed
• VAV box for varying load
• CAV box for constant load
49. High Performance
Building Approach
Active Design:
• High efficiency chiller plant
• High efficiency air distribution
• Energy saving lighting
• Occupancy and lux sensor
• Energy saving elevator and escalator
Distribusi udara di area
dengan ceiling tinggi
menggunakan sistem
Displacement Ventilation (DV)
setinggi 2,5 m. Udara yang
dikondisikan hanyalah setinggi
2,5 m.
Displacement Ventilation
ENERGY EFFICIENCY & CONSERVATION
50. High Performance
Building Approach
Active Design:
• High efficiency chiller plant
• High efficiency air distribution
• Energy saving lighting
• Occupancy and lux sensor
• Energy saving elevator and escalator
Outdoor Air Handling Unit (Air-Air Heat Exchanger)
• Dibutuhkan introduksi udara luar atau fresh
air (FA)
• Udara luar tanpa ada treatment terlebih
dahulu akan membebani beban pendinginan.
ENERGY EFFICIENCY & CONSERVATION
51. High Performance
Building Approach
Active Design:
• High efficiency chiller plant
• High efficiency air distribution
• Energy saving lighting
• Occupancy and lux sensor
• Energy saving elevator and escalator
100W incandescent bulb, 6 hours/day -> 220 kWh (~ Rp 300.000,-) annually
ENERGY EFFICIENCY & CONSERVATION
52. High Performance
Building Approach
Active Design:
• High efficiency chiller plant
• High efficiency air distribution
• Energy saving lighting
• Occupancy and lux sensor
• Energy saving elevator and escalator
Lamps Ballast / Driver +
Controller
Luminaires
+ +
ENERGY EFFICIENCY & CONSERVATION
53. High Performance
Building Approach Type Feature
Incandescent
• 10-20 lm/watt
• 5% of energy converted to light
• Short life-time (~1,000 hours)
• < $1.00
• Phase out in 2012 (EU)
Compact
Fluorescent Lamp
(CFL)
• 60-70 lm/watt
• ~ 20% of energy converted to light
• Medium life-time (~ 10,000 hours)
• $2 - $8
• Mature technology
LED Bulb
• 90 lm/watt
• ~ 30% of energy converted to light
• Long life-time (~50,000 hours)
• $10 – $30
• New technology
ENERGY EFFICIENCY & CONSERVATION
54. WASTE AFTER 30.000 HRS
LED do not contain mercury
LEDs contain lead, arsenic and a dozen other potentially
dangerous substances
LED contain Neurotoxin 8 times amount of lead and could
exhibit significantly cancer
LED also contain nickel can pose an environmental threat in
river and lakes and poison aquatic life
Furthermore, crews dispatched to clean LEDs are used
extensively for automotive and traffic lighting should wear
protective clothing and handle material as Hazardous
waste.
The University of California (UC)-Irvine’s Department of
Population Health & Disease Prevention.
55. High Performance
Building Approach
ENERGY EFFICIENCY & CONSERVATION
Parameter
Fixtures : Philips RC120B
LED 3700lm 42W
W30 L120
Number of fixtures : 345
Results
Avg illuminance : 521 lux
LPD : 6.54 W/m2
General Lighting Design using
Simulation
Active Design:
• High efficiency chiller plant
• High efficiency air distribution
• Energy saving lighting
• Occupancy and lux sensor
• Energy saving elevator and escalator
56. High Performance
Building Approach
Daylight area
Non-daylight area
Lux Sensor
Active Design:
• High efficiency chiller plant
• High efficiency air distribution
• Energy saving lighting
• Occupancy and lux sensor
• Energy saving elevator and escalator
ENERGY EFFICIENCY & CONSERVATION
57. High Performance
Building Approach
Active Design:
• High efficiency chiller plant
• High efficiency air distribution
• Energy saving lighting
• Occupancy and lux sensor
• Energy saving elevator and escalator
Energy saving features of elevator and escalators ::
• Drives and Motors
• Motor Generator
• Silicon Controlled Rectifier (SCR)
• Pulse Width Modulation (PWM)
• Variable Voltage Variable Frequency
• Regenerative Motors
• Permanent Magnet Motor
• Machinery
• Geared
• Gearless
• Energy saving mode
newer
technology
ENERGY EFFICIENCY & CONSERVATION
58. High Performance
Building Approach
Active Design:
• High efficiency chiller plant
• High efficiency air distribution
• Energy saving lighting
• Occupancy and lux sensor
• Energy saving elevator and escalator
• In the case of power generation, the mechanical energy of the
descending car or counterweight causes the elevator motor to function
as a generator of electricity
• Conventional elevator system dissipates this untapped electricity as
waste heat, routing it through electrical resistors in the elevator shaft or
machine room
Regenerative Drive
ENERGY EFFICIENCY & CONSERVATION
59. High Performance
Building Approach
Active Design:
• High efficiency chiller plant
• High efficiency air distribution
• Energy saving lighting
• Occupancy and lux sensor
• Energy saving elevator and escalator
With intelligent traffic management system::
• Reduce Waiting Time and increase Handling Capacity
• Passengers are transported in the most efficient way
• Able to set non-essential lifts into stand-by mode
Intelligent Traffic Management
ENERGY EFFICIENCY & CONSERVATION
61. Renewable Energy
Challenges:
• ROI >10 years
• High initial investment
• Availability, storage and distribution
• Government support
Solar PV Panels Wind Turbine Geothermal
Building Integrated PV (BIPV)
• Building Integrated PV (BIPV)
• Solar PV Panels
• Wind Turbine
• Geothermal
ENERGY EFFICIENCY & CONSERVATION
62. E N E R G Y F O R F U T U R E
Net Zero
Energy
Buildings
Challenges:
• Establish carbon-neutral buildings by the year 2030
• Design buildings that use substantially less energy,
reduce greenhouse gas emissions and create spaces
that are healthy and comfortable
• Many high-performance buildings exist today that
exceed minimum energy requirements by over 50
percent – yet aggressive research and development
needed to achieve feasible, cost-effect net-zero-
energy buildings
Standard
• ASHRAE 90.1-2010 – goal is 30% improvement over 90.1-2007
• ASHRAE 189.1P – Design of High Performance Green Buildings Except Low-Rise Residential
Buildings
ENERGY EFFICIENCY & CONSERVATION
69. Kandungan Material yang berbahaya
• Kebanyakan polusi udara dalam
ruangan berasal dari material yang
digunakan.;
• Material Bangunan
• Mesin yang digunakan pada
Bangunan
• Senyawa organik yang melekat
pada material bangunan yang
mudah menguap dan bersifat
karsinogen
• Polutant :
• VOC
• Formaldehyde
90. TERIMA KASIH
#betterbuildgreen
F o r F u t u r e G e n e ra t i o n
D e d d y e l R a s h i d
P r e s i d e n t E l e c t 2 0 1 7 - 1 8
C o r e F o u n d e r G B C I
P e n a s i h a t A S A T H I
r a s h i d @ c b n . n e t . i d
0 8 1 1 8 8 1 2 1 1 1
Editor's Notes
Building performance
2030 menjadi zero
Arsitek berperan di sini
Kinerja bangunan.. Kita harus bisa mengukur.
Jelaskan singkat greenshop apa saja.
Sertifikasi kita
Nyamannya apa. Jelaskan.
Seneng ada di ruang terbuka
Bio technologi / bio engineering
Nyamannya krn hemat dsb
Belilah rechargeable battery… krn baterry ada lead. Atau pakai LED shg umur panjang (consume daya kecil)
Kalo nyaman dan lestari.
Sebisa mungkin tidak pakai rice coocker. Utk kesehatan/nutrisi
Nyamannya krn air bersih.
Tidak mengandung patogen, metal dll.
Melestarikan bagaimana.. Shg lebih nyaman berikutnya.
Cuma 2% air. ganti2x piring. Setiap cuci 3-4 liter air. air besar di dapur. Mandi.
High-tech is not only about the cost. It can also means a greater efficiency. One case in San Fransisco International Airport, by changing their water fixtures to high-tec and low-flow sensor-operated water fixtures, they can save up to 30% more water.
Tanaman sedikit air. wild plant
Gunakan sensor
Natural disaster dan ecological imbalance.
Tidak pakai material yg tidak bisa renewable.
.
Polutan kimia berupa emisi voc termasuk formaldehid yang mencemari IAQ, biasa berasal dari material dalam ruang seperti: cat, coating, kayu, dll. Berdasarkan penlitian, emisi tsb pada konsentrasi tinggi berdampak thp kesehatan hingga penyakit kronis dan akut. Pada tingkat rendah sampai moderat, dapat menghasilkan reaksi akut.
The industry release certain product with certain measure and size to the market. The architect should be aware to these issue, so they can design the building considerably. By doing this, they already reduce the waste that occur from manufacturing custom material size.
Dan pakai ukuran di pasaran
It’s getting more important to know where our materials coming from, especially wood. Indonesia now, is facing a severe illegal logging that consume the lungs of our earth, the tropical forrest. Always make sure that the woods you use are certified.
Carbon footprint from material transportation, not only comes from the distance of transportation, but also from the energy used to transport it. The lighter the material, means less energy used for transportation.
Kalo udara ga sehat maka nggak nyaman
65% udara perkantoran terkontaminsai TBC
80-90% ada di dalam ruangan.. Jadi produk interior harus non toxic. Cat, wall paper – masih solvent, timbal dll
2020 sehat
Anti micro biologi
Fibre
Bakteri makin kuat krn tidak ada predator
Jangan yg menghasilkan sampah terlalu besar.
Pergi ke supermarket sampah kecil… tapi kalo di pasar sampahnya sampah lebih banyak, jadi butuh kepedulian kita utk mengelola sampah tsb.
Lampu, freon, battery
30 juta impair Indonesia
28 juta difable WHO
Put in many places inside airport, waste separable trash bin. It can help airport management to manage waste better.