Universal Design as design paradigm Hubert Froyen argues that the following question should be asked at the beginning of any design task:
“How can a product, a graphical message, a building, a public space, etc. be both esthetical and of optimal use for an as large as possible group of persons?
According to Froyen, there is no scientific ground that may justify the segregation between physically and/or mentally handicapped persons and the non-handicapped”
(Froyen, 2001, from UDEP.be report)
This is a PowerPoint Presentation I created in 2008 to help people better understand proper etiquette when dealing with people with disabilities. I have givne this training to colleagues within the Department of Veterans Affairs as well as people in other organizations. This training is given from personal experience as I have been visually impaired since birth.
Universal Design as design paradigm Hubert Froyen argues that the following question should be asked at the beginning of any design task:
“How can a product, a graphical message, a building, a public space, etc. be both esthetical and of optimal use for an as large as possible group of persons?
According to Froyen, there is no scientific ground that may justify the segregation between physically and/or mentally handicapped persons and the non-handicapped”
(Froyen, 2001, from UDEP.be report)
This is a PowerPoint Presentation I created in 2008 to help people better understand proper etiquette when dealing with people with disabilities. I have givne this training to colleagues within the Department of Veterans Affairs as well as people in other organizations. This training is given from personal experience as I have been visually impaired since birth.
Assistive technology and instructional practices for teaching students with disabilities (specifically ADHD, learning disabilities, and auditory disabilities)
All hospitals should be disability friendly, to ensure easy movement of disable patients. The presentation arrives at a solution to the all above disability issues to serve as a guide line.
The technologies and people we are designing experiences for are constantly changing, in most cases they are changing at a rate that is difficult keep up with. When we think about how our teams are structured and the design processes we use in light of this challenge, a new design problem (or problem space) emerges, one that requires us to focus inward. How do we structure our teams and processes to be resilient? What would happen if we looked at our teams and design process as IA’s, Designers, Researchers? What strategies would we put in place to help them be successful? This talk will look at challenges we face leading, supporting, or simply being a part of design teams creating experiences for user groups with changing technological needs.
Stefano Del Furia - Inclusive Design - Codemotion Rome 2019Codemotion
An inclusive type of approach creates better solutions, because it aims to benefit all users, therefore also those who must cope with disabilities. Thinking in terms of accessibility throughout the entire process, enables the creation of solutions for mobile applications and websites that are actually evolved and not merely alternative. When designing for human diversity, we make possible a global kind of partecipation, with a higher impact on positivity exchange and emotional benefits than we would have when addressing just the disabilities.
Disability may involve physical impairment, sensory impairment, cognitive or intellectual impairment, mental disorder, or various types of chronic disease.
Universal design
is an approach to the design of products, services and environments to be usable by as many people as possible regardless of age, ability or situation.
It links directly to the political concept of an inclusive society and its importance has been recognized by governments, business and industry.
Urban space should have certain qualities if it is to be responsive to human feelings and sensibilities
Assistive technology and instructional practices for teaching students with disabilities (specifically ADHD, learning disabilities, and auditory disabilities)
All hospitals should be disability friendly, to ensure easy movement of disable patients. The presentation arrives at a solution to the all above disability issues to serve as a guide line.
The technologies and people we are designing experiences for are constantly changing, in most cases they are changing at a rate that is difficult keep up with. When we think about how our teams are structured and the design processes we use in light of this challenge, a new design problem (or problem space) emerges, one that requires us to focus inward. How do we structure our teams and processes to be resilient? What would happen if we looked at our teams and design process as IA’s, Designers, Researchers? What strategies would we put in place to help them be successful? This talk will look at challenges we face leading, supporting, or simply being a part of design teams creating experiences for user groups with changing technological needs.
Stefano Del Furia - Inclusive Design - Codemotion Rome 2019Codemotion
An inclusive type of approach creates better solutions, because it aims to benefit all users, therefore also those who must cope with disabilities. Thinking in terms of accessibility throughout the entire process, enables the creation of solutions for mobile applications and websites that are actually evolved and not merely alternative. When designing for human diversity, we make possible a global kind of partecipation, with a higher impact on positivity exchange and emotional benefits than we would have when addressing just the disabilities.
Disability may involve physical impairment, sensory impairment, cognitive or intellectual impairment, mental disorder, or various types of chronic disease.
Universal design
is an approach to the design of products, services and environments to be usable by as many people as possible regardless of age, ability or situation.
It links directly to the political concept of an inclusive society and its importance has been recognized by governments, business and industry.
Urban space should have certain qualities if it is to be responsive to human feelings and sensibilities
Accessibility of Visually Impaired Passengers at Urban Railway Stations in th...drboon
Ensuring access to the built environment and public transportation is a crucial element in reducing the mobility constraints of people with disabilities. This study intends to investigate the accessibility of visual impaired passengers regards to interior design of Kelana Jaya Line LRT station. The access audit was evaluated at core area, transition area and peripheral area of selected LRT stations by using site observation and interview research method. A standard checklist was taken in accordance to the Malaysia Standards Code of Practice for Access of Disabled People to Public Buildings (MS1184:2002).The result shows that, although most of the stations accommodate access for disabled people however the design of facilities provided was not fully incorporate with standard requirement and user-friendly. These lead barriers to independent living for persons with disability. As a conclusion, aside from providing a complete of public access facilities, comprehension of social sensitivity and capability to plan for continuity and uniformity should be taken into consideration to eliminate the architectural barriers in the built environment in the future.
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Topic covered in this presentation,
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for computing the loads and its combination and analysing the structure and designing the structure based on the
analysis.
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HI 84a - How to Build an Accessible Environment in Developing Countries : Manual #3 – Free Movement (English)
1. HOW TO BUILD AN
ACCESSIBLE ENVIRONMENT
IN DEVELOPING COUNTRIES
Based on the Cambodia
Program's experience
Manual #3 - Free
movement
Handicap International
2.
3. HOW TO BUILD AN ACCESSIBLE
ENVIRONMENT IN DEVELOPING COUNTRIES
Manual #3 – Free movement
5. Table of contents
Introduction 6
Access ramps 8
Various ramp layouts 9
Access ramps in concrete and brickwork 12
Access ramp in brickwork only 15
Access ramp in laterite 18
Access ramp in wood 22
Circulation ramps 24
Circulation ramp in reinforced concrete 24
Circulation ramp in laterite 28
Circulation ramp in bricks 30
Accessible layouts for ramps 33
Handrails 33
Tactile warning markings 37
Guide stripes 40
Signalization 42
6. Handicap International – French section
Introduction
Introduction
T his booklet is part of the set called “How to build an
accessible environment in developing countries” and
represents the last technical manual on how to build
accessible infrastructures in concrete terms. Because of its
very technical content, this manual aims mainly to be used
by technicians (engineers, architects, building companies,
NGOs with technical background...), but people with no
technical knowledge should also take some interest in it for
the pictures and 3D drawings, in order to understand what
means to conceive and build accessible facilities.
All around the world, and especially in developing
countries, people with disabilities face physical barriers in
both urban and rural. These barriers prevent them to
participate in the society on an equal footing with other
citizens, and preventing them from enjoying their civil,
political and human rights. One of these barriers is the
numerous obstacles faced when you want to go from one
place to another. The right of movement is fundamental, and
people with disabilities should have the opportunity to go
where they want to go, and not feel restricted by the non-
accessibility of the environment.
We will focus in this manual on how to make this built
environment more accessible, by mainly considering different
construction techniques for circulation and access ramps. It is
important to stress upon the fact that an accessible
environment cannot be summed up to the building an access
ramp, as many people are thinking. The ramp (access or
circulation) is only a part the global process.
As for the access to water and sanitation facilities, personal
mobility is a right recognized by the UN Convention,
underlined is article 20:
“State Parties should take effective measures to ensure
personal mobility with the greatest possible independence for
persons with disabilities, including by facilitating the personal
mobility of persons with disabilities in the manner and at the
time of their choice, and at affordable cost.”
6
7. How to build an accessible environment – Free movement
Introduction
Nota Bene:
For each technical solution, you will find a clue about its
difficulty:
▪ “High difficulty” means that it requires special skills that
H uig h lt y must have been learnt, such as brickwork, or making
f ic
d if reinforced concrete. The whole construction process must
be supervised by a technician.
▪ “Medium difficulty” means that a part of the construction
d iu m t y process will require the intervention of a technician (most
M e ic u l
f
d if probably brickwork and/or concrete), but the remaining
can be realized by beneficiaries themselves.
▪ “Easy” means that everyone (sometimes even children)
E as
y can implement the design proposed. It does not require
any particular skills.
7
8. Handicap International – French section
Access ramps
Access ramps
A n access ramp is an infrastructure that provides a smooth
transition between two different ground levels (at the
entrance of a raised building for example). Access ramps are
the most inclusive way to make a raised place accessible,
because it can be used by the largest range of people:
wheelchair users, elders, people with a visual impairment,
pregnant women, people carrying heavy loads.
However, the main drawback of building access ramps is
that it takes space, and at times even a lot of space. Indeed,
the ideal slope for a ramp is less than 5%, but up to 12% is
acceptable if it is for short distances. In this document, we
will generally consider a slope of 8%. To take a concrete
example: Imagine that you want to make a building 50 cm
higher than the ground level accessible. Using a slope of 8%
the ramp would reach 6 meters.
In addition, resting areas should be provided every 6
meters in order to allow the users to catch their breath. They
will also allow them to maneuver better and slow down when
rolling or walking down.
NB: Each acces ramp should be equipped with handrails
respecting the accessibility standards, we will develop this
subject at page 33.
8
9. How to build an accessible environment – Free movement
Access ramps
Various ramp layouts
As mentioned before, access ramps can take a lot of
space. Therefore, we recommend you to think carefully about
their design in order to come up with the best way also of
adapting them to specific context they are meant to be for.
You will find here various examples of ramp designs, offering
you different solutions to design and build an access to a
building.
Parallel design
This design offers the advantage of being quite compact
compared to the design in line (see after). The disadvantage
is it forces people to make multiple turns, which can be quite
tiring for some wheelchair users.
9
11. How to build an accessible environment – Free movement
Access ramps
Angle design
11
12. Handicap International – French section
Access ramps
Access ramps in concrete and brickwork M
d if f e d iu m
ic u
Because of the materials and the building lt y
techniques used, this kind of ramps offers
the best lifespan but at the expense of a
much higher cost. For that matter they are well
adapted to administration buildings and other frequented
public buildings.
Technical drawings
Side view
Top view
12
13. How to build an accessible environment – Free movement
Access ramps
he
o ti c e t
You can n C tu b e
o f a PV a m p .
p re s e n c e er
o u g h th
g o i ng th r i s to a l y
lo w
I ts p u rp o s e o w f re e l
t h e wa te r to f l he
e of t
o ne si d ,
f ro m a no th e r
s t ru c t u re t o e
i ng th
th u s mi n i mi z
i pi n g .
ri s k o f p
Construction steps
1. Earthwork: excavation of the ground on a depth of 10
cm and with length and width 20 cm bigger than the
dimensions of the ramp.
2. Creation of a compacted granular fill (pebbles 4x6) on
the bottom of the cleared area where the side walls are
supposed to be built.
3. Building in brickwork the side walls of the access ramp,
coated with mortar on one face.
4. Filling the walls by random fill, watery and highly
compacted.
5. On this fill, placing of a compacted granular fill (pebbles
4x6) covered by a layer of sand for cleanliness.
6. Then, reinforcing and concreting above this compacted
granular fill (you should groove the surface to make the
surface less slippery).
NB: if necessary, you must add a PVC tube to allow the
water to run off through the structure.
13
14. Handicap International – French section
Access ramps
Iron mesh,
work in
progress
Bricks 4 holes,
jointed and
coated
Compacted
sand for
cleanliness
rg e t !
D o n ' t f o s e a b a m-
u
You can re i n -
bo o me sh to
e te .
e c o nc r
f o rc e t h p e r a n d
h ea
I t i s c s a me j o b
e
do e s th
h e re .
Compacted random
fill, work in progress
14
15. How to build an accessible environment – Free movement
Access ramps
Cost estimation
:
e ra mp
C o n c re t
lo n g
ta g es: -
A d v a n re d u c e d ma i n
,
l i f e s pa n
e
te na nc
v e,
e x pe n s i
D ra w ba c ks: e c h ni -
y of a t
ne c e ssi t
cian
M
Access ramp in brickwork only d if f e d iu m
ic u
lt y
Unlike the previous construction
technique, no reinforced concrete will be
used to make the hard surface ramp here, but
bricks (either bricks 4 holes 100x100x200 mm or full bricks
100x50x200 mm). The remaining of the construction process
is however the same. In order to have a adequate ramp
surface, bricks will be disposed with sand in the joints. It is
the same way you pave a street (see technical drawings for
bricks disposition).
15
16. Handicap International – French section
Access ramps
Technical drawings
Side view
Top view
Front view
16
17. How to build an accessible environment – Free movement
Access ramps
Construction steps
1. Earthwork: excavation of the ground on a depth of 10
cm and with length and width 20 cm bigger than the
dimensions of the ramp.
2. Creation of a compacted granular fill (pebbles 4x6) on
the bottom of the cleared area where the side walls are
supposed to be built.
3. Building in brickwork the side walls of the access ramp,
coated with mortar on one face.
4. Filling the walls by random fill, watery and highly
compacted.
5. On this fill, placing of a layer of compacted sand for
cleanliness.
6. Then, paving with the bricks following the motif seen
on the technical drawings.
NB: if necessary, you must add a PVC tube to allow the
water to run off through the structure.
Pavement in Compacted sand
PVC pipe for
brickwork
water run-off
Side walls in
coated
brickwork Compacted random fill
Compacted granular
fill under the side walls
17
18. Handicap International – French section
Access ramps
Cost estimation
i n b ri c k wo r k
Acce s s ra mp
c ti o n
e: c o n s t ru c e d
ta g nf o r
A d v a n a n f o r a re i
th
ea si er
e ra mp
c o n c re t
e na nc e
ma i n t
a c k:
D r a wb i e r
av
a ls o h e
M
Access ramp in laterite d if f e d iu m
ic u
lt y
Compared to the two first technical
solutions, this one is also very similar.
The only difference is that the surface is
no more made of concrete or bricks but of
compacted laterite. Though cheaper, this solution has a
limited lifespan. Without proper maintenance, it will not last
more than 2 years, even less if the climatic conditions are
tough.
18
19. How to build an accessible environment – Free movement
Access ramps
Technical drawings
Side view
Top view
C
No te a PV
a g a i n a t th e
H e re
pl a c e d th e
pi pe i s of r
c e n t e r e f o r wa t e
ur
s t ru c t
f Front view
ru n - o f
19
20. Handicap International – French section
Access ramps
Construction steps
1. Earthwork: excavation of the ground on a depth of 10
cm and with length and width 20 cm bigger than the
dimensions of the ramp.
2. Creation of a compacted granular fill (pebbles 4x6) on
the bottom of the cleared area where the side walls are
supposed to be built.
3. Building in brickwork the side walls of the access ramp,
coated with mortar on one face.
4. Filling the walls by random fill, watery and highly
compacted.
5. On this fill, creation of a compacted granular fill
(pebbles 4x6) to hold the compacted laterite.
6. Then, realization of the layer of compacted laterite
(thickness 10 cm).
NB: in many cases, you must add a PVC tube to allow the
water to run off through the structure.
Side walls
in coated
Compacted random fill
brickwork
Compacted Pavement in
granular fill compacted
laterite
Compacted granular
20 fill under the side walls
21. How to build an accessible environment – Free movement
Access ramps
Cost estimation
t e ri t e
mp i n l a
A c c e s s ra
le
a f f o rd a b
A dv a n ta g e s:
t o b u i ld
a nd e a sy
re d u c e d
D ra w ba c ks: h ea v y
a nd
li f e s pa n
a nc e
ma i n t e n
Variation: access ramp in laterite and pebbles
A variation of the technique to build an access ramp in
laterite is to mix this laterite with some gravels (size between
1 mm and 64 mm). This increases the hardness of the ramp
surface. But be careful, there must be enough laterite to
constitute an efficient binder between the gravels. Otherwise
you will notice the apparition of a tracking phenomenon,
especially when wheelchair users use the ramp.
21
22. Handicap International – French section
Access ramps
Access ramp in wood M
d if f e d iu m
ic u
Although generally quite cheap, the lt y
solution of building an access ramp in
wood can be problematic, particularly in
Cambodia. Indeed there is a difficulty to
find wood of quality at an affordable price. In addition, in a
tropical climate wood structures rot rapidly. However, this
kind of construction can be very useful in isolated areas
where it is very difficult to bring other building materials, yet
wood is easily available.
Technical drawings Side view
Top view
22
23. How to build an accessible environment – Free movement
Access ramps
mp i n wo o d
A c c e s s ra in
h ea p
ta g e s: c f f i c i e nt
A d v a n wi t h su
a re a s c ti o n
a pi d c o n s t ru
wo o d , r d
re d u c e
a c ks : to
D r a wb t i b le
n ( su sc ep s k i lls
l i f e s pa e c h n i c a l
t
ro t ) ,
ry
ne c e ssa
Cost estimation
23
24. Handicap International – French section
Circulation ramps
Circulation ramps
Circulation ramps are quite similar to access ramps
regarding the building process. They only differ in their aim:
whereas access ramps are built to make the transition at a
change of ground level, circulation ramps are built on an
even ground to allow people to move without facing any
obstacles or difficulties.
In any case, the surface must be smooth, even, firm and
non slippery even when it rains. To be comfortable and safe,
pathways should not be banked with a gradient higher than
2%. The slope of an accessible path should not exceed 5 %.
Not all the possible solutions are presented here. You can
for example think of asphalt pathways. However, these kinds
of construction are usually expensive. We have not taken
them into account in this booklet which is meant for the
context of developing countries.
M
Circulation ramp in reinforced concrete d if f e d iu m
ic u
lt y
This is the most classic design in order to
build an accessible circulation ramp. Although
expensive, this is the solution which has the
longest lifespan and which will resist the best to climatic
hazards.
Technical drawings me s h
B a mb o o
for
b e f o re ,
ti o ne d ,
A s me n o f c o n s t ru c t i o n
pe b a mb o o
th i s ty u se a
n n
y o u c a e a d o f a n i ro
me s h i nst e m o re
h o u ld b
o ne , wh i c h s
le .
24
a f f o rd a b
25. How to build an accessible environment – Free movement
Circulation ramps
Section view
Top view
Front view
25
26. Handicap International – French section
Circulation ramps
Side walls in
brickwork
Compacted
random fill
Compacted
granular fill
Reinforced
concrete slab
26
27. How to build an accessible environment – Free movement
Circulation ramps
Construction shape
1. Earthwork: excavation of the ground on a depth of 10
cm and with length and width 20 cm bigger than the
dimensions of the ramp.
2. Filling of the cleared space by a compacted random fill.
3. Creation of a compacted granular fill (pebbles 4x6)
over the compacted random fill.
4. Building in brickwork of the side borders of the
circulation ramp, coated with mortar on one face.
5. Putting in place of the iron mesh on chocks.
6. Pouring of the smooth concrete, being careful not to
forget dilatation areas.
NB: be careful, it may be necessary to add a PVC tube to
allow the water to run off through the structure.
Cost estimation
:
e ra mp
C o n c re t
lo n g
ta g e s: -
A d v a n re d u c e d ma i n
,
l i f e s pa n
e
te na nc
,
pe n s i v e
a c k s: e x c h ni -
D r a wb a te
n ec e ss i ty o f
cian 27
28. Handicap International – French section
Circulation ramps
Variation: non reinforced concrete
In case of a very stable ground layer, it is not necessary to
reinforce the concrete. The remaining construction process
stays exactly the same.
M
Circulation ramp in laterite d if f e d iu m
ic u
lt y
Thanks to the materials used, this type of
construction is much cheaper than the
previous one in reinforced concrete. The main
drawback is that it has a limited lifespan. Such a structure
will not last more than 2 years without proper maintenance,
mainly because of the rain taking away the laterite. Laterite
is a material easily obtainable in Cambodia and many other
countries.
Technical drawings Front view
28
29. How to build an accessible environment – Free movement
Circulation ramps
Top view
Construction steps
1. Earthwork: excavation of the ground on a depth of 10
cm and with length and width 20 cm bigger than the
dimensions of the ramp.
2. Filling of the cleared space by a compacted random fill.
3. On the sides of the ramp, putting in place of stones 15
x 25 for blocking.
4. Creation of a compacted granular fill (pebbles 4x6)
over the compacted random fill.
5. Creation of the top layer made of watery and highly
compacted laterite (with a mechanical or manual soil
compactor).
NB: be careful and do not forget to place PVC pipes
(diam.4") in order to let the rain water flow through the
structure and avoid the problems of piping.
29
30. Handicap International – French section
Circulation ramps
Cost estimation
Variation: circulation ramp in gravels
In order to increase the surface hardness, you can also
mix some gravels (from 1 to 60 mm) with the laterite. Be
careful to have enough of it in this mix in order to bind all the
materials sufficiently. This mix must of course be watered
and highly compacted. However, keep in mind the longevity:
it will not last more than 2 years without proper
maintenance.
Circulation ramp in bricks
M
d if f e d iu m
ic u
In Cambodia as well as in some other lt y
countries, bricks are a common and
affordable material of good quality. In this
case it is recommendable to build circulation
ramps made of such bricks. However, due to its sensibility to
rainfalls and to the plants than can germinate in the joints, it
will require regular maintenance.
30
31. How to build an accessible environment – Free movement
Circulation ramps
Technical drawings
Section view
Top view
Front view
31
32. Handicap International – French section
Circulation ramps
Construction steps
ricks
Ramp in b
1. Earthwork: excavation of the nd
es: hard a
natural ground. A dv a nta g c e,
ry surfa
2. Placing of the layer of sand. non-slippe o n-
, easy c
3. Construction of the side walls a f f o rd a b l e
delimiting the ramp. struction
4. Construction of the ramp surface re d u c e d
s:
with bricks in staggered rows, using D r a wb a c k
vy main-
sand in the joints and using a rubber life span, hea
hammer in order to tamp down the te na nc e
structure.
Layer of sand
Natural Bricks ordered in
ground a special way
Cost estimation
32
33. How to build an accessible environment – Free movement
Accessible layouts
Accessible layouts for ramps
I n a compound composed by several buildings (in a school
or health center for instance), it is necessary to build an
access ramp for each building and a circulation ramp making
the link between them. Thus, you will create a more
accessible environment for everyone. There are some simple
and affordable layouts that you can add in order to improve
their accessibility, particularly for people with a visual or
intellectual impairment.
M
Handrails d if f e d iu m
ic u
lt y
Handrails are very important features
for ramps (as well as inside the buildings,
but this is not our subject here) because they
will help some people to maintain their balance
and avoid falling. They should:
▪ Be fixed between 800mm and 1000 mm above the
ground.
▪ Be continuous along the ramp/ stairs, and continue past
the end of the ramp or stairway by at least 300mm.
▪ Be made from circular tubing 40 to 50 mm in diameter,
be smooth and without any sharp edges.
▪ Be fixed at least 50mm from the adjacent wall to
prevent hands being caught between rail and wall.
▪ Contrast with its surroundings (painted bright yellow for
instance) to assist partially sighted users.
33
34. Handicap International – French section
Accessible layouts
Technical drawings
Side view
Front view
Top view
34
35. How to build an accessible environment – Free movement
Accessible layouts
Detail A
Detail B
35
36. Handicap International – French section
Accessible layouts
Specific design: handrails fixed on a wall
Adapted end fitting for wall handrails
36
37. How to build an accessible environment – Free movement
Accessible layouts
Cost estimation
o rt a n t
a n i mp a t l y
i l s a re re
H a n d r a t h a t wi l l g o f a
ty
f e a t u re h e a c c e s s i b i l i t a t e
et esi
i mp ro v , s o d o n o t h be
p a t h wa
y Bu t
i ld t h e m. s t ro n g
t o b u h e y mu s t b e n i n
, t ve
c a re f u l o t t o b re a k ( e a n c e
n st
e n o u g h d i t i o n s , f o r i n pl a y
on l
r o u g h c o o l k i d s wi l
c h
in a s
wi t h t h e m)
Tactile warning markings
In order to help people with a visual impairment to find their
way and not to hurt themselves, it is recommended to use
tactile warning areas next to each obstacles. This kind of
area is called tactile because is texture is in relief and can be
felt by the sole of the foot. You should put such tactile
markings at the bottom and at the top of each change in
level (access ramps or stairs), but also at each crossroad that
the user can encounter when circulating.
37
38. Handicap International – French section
Accessible layouts
Example of a tactile marking:
textured concrete d if f H ig h
To make such specific textured ic u
lt y
concrete is technically quite difficult. Yet,
it will provide a sustainable warning signal
for people with a visual impairment.
Side view
Top view
38
39. How to build an accessible environment – Free movement
Accessible layouts
Constructional detail
Front view
Cost estimation
Implementation
example
39
40. Handicap International – French section
Accessible layouts
Guiding stripes
Guiding stripes are special layouts destined to help people
with visual impairments. They are tools allowing the user to
orientate easily and safely when moving. There are two
types:
▪ Either the guiding stripe can be made a straight
continuous line off detectable objects and defined edges
(i.e. building frontages, curbs, grass verges, raised
platforms, low barriers, etc.). This kind of guiding stripe is
well adapted to an urban environment.
▪ Or it can be made by a stripe presenting a different
texture than the surrounding ground, and a good color
contrast. Thus, users will be able to detect the guiding
stripe using the sole of their foot and follow it safely. A
good color contrast allows people to spot obstacles more
easily. This case is adapted to the context of access and
circulation ramps.
A different texture can be also be obtained by tiling the
ground with textured tiles. They are quite easy to find. Look
for tiles with a typical surface that can be felt with the sole of
the foot.
A textured tile
40
41. How to build an accessible environment – Free movement
Accessible layouts
Guiding stripes should be laid in a simple and logical
manner. They should not be located close to manholes or
drains to avoid confusing people. You can also play on a set
of different colors corresponding to different types of
buildings. In a school compound for instance, you can pick
the yellow for classrooms buildings, green for administrative
buildings, blue for watsan infrastructure and purple for the
library. You will create an orientation system that will help
people with a visual and intellectual impairments. It will be
easier for them to find their way, especially if you add a good
signalization system, see next chapter.
A guide stripe made from colored and textured tiles
In the picture above, you can see an example using a color
code in order to help people to find their way. You can also
notice that the guiding stripe is larger at the level of the
crossroad in order to warn people of a choice of direction
ahead.
Be careful, a guiding stripe must be safe to use. The tiles
must be inserted in the circulation and not only laid onto it. If
they are only laid, they can create an obstacle which can
firstly be an barrier for a wheelchair user and secondly be
dangerous for everyone (one may stumble upon it).
41
42. Handicap International – French section
Accessible layouts
Signalization
We will finish this booklet by developing the subject of
signalization. It includes direction signs, indication signs in
and out public buildings, but also all the panels that one can
find within the urban environment (names of the streets, of
the cities, directions, information signs…). A good and
adapted signalization is mandatory, improving the orientation
for everyone. It prevents us from making useless
displacements and moves.
Signs disposed on the pathway used by pedestrians can
create a physical obstacle. Thus, it needs to be spotted
easily. Direction signs should be present whenever you
encounter a change in direction.
Here are some main ideas on how to create an accessible
signing system:
▪ In a closed compound, there should be first a global
orientation map at the entrance, coupled with direction signs
in the compound and door panels so that people can easily
anticipate.
▪ Since the sign is the first thing we see (rather than what
is written on it) the color of signs should be in contrast with
the surrounding. Be careful, the sign surface should be
processed to prevent glare. Signs should not be placed
behind glass because of possible reflection.
▪ The size of letters should be in proportion to the reading
distance (it is recommended to use character which height is
between 100 and 170 mm, visible from 3 m away).
▪ Relief prints are advisable: The letters and signs should
preferably be raised at least 1 mm from the background,
to enable sightless people to read the information using
the tips of their fingers.
▪ Pictograms are also a good practice, the use of
standardized symbols and pictograms can also prove
useful, especially in places where illiteracy rates are high.
42
43. How to build an accessible environment – Free movement
Accessible layouts
Accessible places and facilities should be clearly identified
by the International Accessibility Symbol.
Direction panel with a good color contrast and slightly raised letters
43
44.
45.
46. Handicap International
French Section Head Quarters
14, avenue Berthelot,
69361 Lyon cedex 07, France
Tel: + 33 (0) 4 78 69 79 79
Fax: + 33 (0) 4 78 69 79 94
E-mail: contact@handicap-international.org
Internet: www.handicap-international.fr
Cambodia Program
#6, St. 348, BKK3
Chomkarmon, Phnom Penh
Tel: +855 (0) 23 212 897 / 214 504
E-mail: office@hicambodia.org