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MODERNIZING 1130 Submitted to:

2nd Term, A.Y. 2017-2018

Ar. Aaron Lecciones Mentor

TROPICAL DESIGN DAR1

TROPDES DAR1

De La Salle - College of Saint Benilde School of Design and Arts

Submitted by: Julian Panlilio Angelique Saliendra Iverson Sim

PANLILIO SALIENDRA SIM | TROPDES DAR1

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TABLE OF CONTENTS Executive Summary…………………………………………………………………………………………………………………………….03 Building Profile …………………………………………………………………………………………………………………………………...04 Thermal Comfort Profile……………………………………………………………………………………………………………………..09 Sustainability Assessment………………………………………………………………………………………………………………….22 Simulated Green Rating……………………………………………………………………………………………………………………...37 Building Smart Automation………………………………………………………………………………………………………………..43

PANLILIO SALIENDRA SIM | TROPDES DAR1

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EXECUTIVE SUMMARY This

project

structure, suitable

involves

with for

selecting

interventions the

tropical

to

a

site

make

it

more

of

the

climate

or

Philippines. This

involves

getting

opportunities,

and

sustainability

of

sustainability

the

strengths,

threats the

strategy

or

SWOT

structure, based

weaknesses, of

the

creating on

a

findings,

pinpointing important areas for intervention, and suggesting technologies that can be used to make the structure more sustainable. We also determined the projected green rating level of the structure.

Executive Summary

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BUILDING PROFILE

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BUILDING PROFILE The

selected

structure

unfinished

(but

three-storey

residential

is

an

habitable) home,

located along Penafrancia Street in

Barangay

827,

Manila

City.

facade

faces

west. are

Building Profile

Its

Paco

The

District,

structure’s

directly

north

and

to

east

the sides

firewalls.

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site

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BUILDING PROFILE EXTERIOR PERSPECTIVE

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BUILDING PROFILE INTERIOR PERSPECTIVE

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THERMAL COMFORT PROFILE

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THERMAL COMFORT PROFILE The structure’s spaces include the living

The structure presently makes use of mostly

room, dining area, kitchen on the first floor;

natural ventilation in its first and second

master bedroom and two bedrooms, each

floors, with the second floor being partially

with their own respective toilet and baths, on

open with only the bedrooms and bathrooms

the

completely enclosed. Its unfinished third floor

second

floor;

and

unfinished

family/entertainment room and maid’s room,

is

completely

open

with

only

the

each with their own respective toilet and

family/entertainment room, maid’s room, and

baths, on the third floor.

bathrooms enclosed. The structure’s enclosed spaces feature large openings.

Thermal Comfort

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THERMAL COMFORT PROFILE The structure, despite its large openings, still has spaces where heat builds up, sometimes up to extreme levels, especially during the summer months.

With this, our group proposes some interventions after

Thermal Comfort

analyzing

the

structure.

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BIOCLIMATIC CHART LEGEND January

July

February

August

March

September

April

October

May

November

June

December

Thermal Comfort

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BIOCLIMATIC CHART TABLE ANALYZATION

Thermal Comfort

MONTH

DBT(°C)

RH(%)

January

26°C

69%

February

27°C

72%

March

28°C

65%

April

29°C

78%

May

30°C

64%

June

28°C

72%

July

28°C

79%

August

28°C

82%

September

27°C

82%

October

28°C

80%

November

27°C

75%

December

26°C

75% PANLILIO SALIENDRA SIM | TROPDES DAR1

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BUILDING AIR

MOVEMENT

GROUND FLOOR FRONT ELEVATION

Thermal Comfort

GROUND FLOOR RIGHT ELEVATION

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BUILDING AIR

MOVEMENT

WIND PATH

Thermal Comfort

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AIR M O V E ME N T + SUN PATTERN

VARIABLE COOL BREEZE

NORTHEAST MONSOON

SUN SET

Thermal Comfort

WIND

SUN PANLILIO SALIENDRA SIM | TROPDES DAR1

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SHADOW STUDY MARCH 20

8:00 AM

12:00 NN

s p r i n g

Thermal Comfort

5:20 PM

e q u i n o x PANLILIO SALIENDRA SIM | TROPDES DAR1

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SHADOW STUDY JUNE 21

8:00 AM

12:00 NN

s u m m e r

Thermal Comfort

5:20 PM

s o l s t i c e PANLILIO SALIENDRA SIM | TROPDES DAR1

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SHADOW STUDY DECEMBER 22

8:00 AM

12:00 NN

w i n t e r

Thermal Comfort

5:20 PM

s o l s t i c e PANLILIO SALIENDRA SIM | TROPDES DAR1

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INTERVENTION

Existing Air Patterns

Air Movement Patterns after Intervention Placing additional windows could improve air quality and air that will go on and through the building

Intervention Thermal Comfort

Air that will pass through the house will lessen the use of electricity and improve energy use PANLILIO SALIENDRA SIM | TROPDES DAR1

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INTERVENTION

Adding Sun Shading Louvers Placing louvers in the part where sun is directly facing. It helps lower the possibility of heat coming inside the area.

Intervention Thermal Comfort

Louvers with Smart Automation

Louvers made with reflected aluminum panels allows heat to be reflected back and not absorbed by.

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SUSTAINABILITY ASSESSMENT + ENERGY AUDIT

Energy Audit + Sustainability Assessment

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SUSTAINABILITY ASSESSMENT + ENERGY AUDIT

Sustainability + Energy Audit

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ENERGY EFFICIENCY ASSESSMENT Cost Reduction Technologies

Solar Panels reduces energy used by the structure from the grid

LED Lights reduces energy used by lighting in the structure.

Green Insulation reduces energy used by cooling systems by keeping warm air out of the structure

Stormwater Management recycles storm water gathered, for use in plumbing systems

Energy Efficiency

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ENERGY EFFICIENCY ASSESSMENT Cost Reduction Technologies

Water Harvesting Systems recycles waste water gathered, for use in plumbing systems

Cool Roofs reduces heat absorbed by the structure, reducing the use of energy by cooling systems

Energy Efficiency

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WASTE MANAGEMENT ASSESSMENT Building Waste Management

-Our design in our renovation interventions can use existing materials standards and dimensions to eliminate the need for on-site fabrication and waste.

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Can the new construction in your structure use "disaster waste" or other materials considered waste on site or in the vicinity? Can the renovation requirements meet sustainability targets of your structure by using recycled construction waste? NO

Waste Management

-Identify what resources are being used in your buildings including all establishments within. Can you implement policies in the use of resources by establishments inside your building in order to reduce operation waste? > Water - the entire household is taught to not let the water continuously flow from the outlets if it is not used. > Electricity - the household is advised to unplug all appliances that are not in used because even if the appliances are in standby mode, they are still consuming electricity.

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WASTE MANAGEMENT ASSESSMENT Building Waste Management

Are there establishments in your structure that produce waste? How can these wastes be recycled or reused on-site to prevent disposal off-site? Can waste be used as input to another process inside the building be it as part of maintenance or as part of an establishment in the building?

Waste Management

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WASTE MANAGEMENT ASSESSMENT Building Waste Management

Nothing in the structure produces waste that can be recycled and reused on-site.

Waste Management

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WASTE MANAGEMENT ASSESSMENT Construction Waste Management

How to reduce construction waste?

Waste Management

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WASTE MANAGEMENT ASSESSMENT Construction Waste Management

PLANNING A major key in managing construction waste is determining the cost or planning the whole construction. Our team made sure to layout the plan first before anything else so that the construction will be smooth as desired.

Waste Management

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WASTE MANAGEMENT ASSESSMENT Construction Waste Management

SPECIFY Specify waste reduction targets, goals and documentation procedures that is needed. We take note of this so that we are sure of what is and will be going on in the process of construction.

Waste Management

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WASTE MANAGEMENT ASSESSMENT Construction Waste Management RECOGNIZE Identify what materials can be used, how can it be recycled and what can be transported for such purposes.

Waste Management

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WASTE MANAGEMENT ASSESSMENT Construction Waste Management

Below are the materials we used that can be recycled:

Wood Metal Window glass Gravel and other aggregates

Waste Management

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WASTE MANAGEMENT ASSESSMENT Operations Waste Management

RESOURCE EFFICIENCY Below are the materials that are being used in our building:

Wood Metal Window glass Drywall Concrete Waste Management

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WASTE MANAGEMENT ASSESSMENT Operations Waste Management

RESOURCE RECYCLING In terms of Managing waste during construction we take note of what can be done on the job site.

DEVELOP ESTIMATE SORT RECYCLE SAVE Waste Management

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SIMULATED G R E E N R A T I N G

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SIMULATED GREEN RATING

Using EDGE App (Excellence In Design For Greater Efficiencies

Energy Savings Water Savings Embodies Energy Savings

How much does the structure save after the installation of various technology?

Green Rating

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ENERGY SAVINGS 17.21%

Green Rating

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WATER SAVINGS 14.47%

Green Rating

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MATERIAL SAVINGS 14.09%

Green Rating

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RESULT Final Energy Use: kWh/Month/Unit Final Water Use:

771.75 19.21 kL/Month/Unit

Operational CO2 Savings: Embodied Energy Savings:

1.67 tCO2/Year 32179.14 MJ/Unit

Base Utility Cost: Utility Cost Reduction:

1988.73 ZAR/Month/... 327.36 ZAR/Month/...

Incremental Cost: Payback in Years (ROI):

1542.87 ZAR/... 0.39 Yrs

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BUILDING SMART AUTOMATION

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Building Smart Automation

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Building Smart Automation

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MODERNIZING 1130 TROPICAL DESIGN  

1130 is located in Peñafrancia Street in Paco, Manila. Our group is seeking to improve the quality of the building and the people living ins...

MODERNIZING 1130 TROPICAL DESIGN  

1130 is located in Peñafrancia Street in Paco, Manila. Our group is seeking to improve the quality of the building and the people living ins...

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