MOST RELIABLE AND TRUSTWORTHY UNIT 39 TRANSPORT SYSTEMS IN BUILDINGS - PEARSON BTEC LEVEL 5 HND IN CONSTRUCTION AND THE BUILT ENVIRONMENT ASSIGNMENT HELP AND ASSESSMENT HELP SERVICES AT YOUR DOORSTEPS!

Qualification - Pearson BTEC Level 5 HND in Construction and The Built Environment

Unit Name - Transport Systems in Buildings

Unit Level - Level 5

Unit Number - Unit 39

Unit Credit - 15

Unit code - T/615/1446

Assignment Title - Transport Systems in Buildings

Learning Outcome 1: Discuss the functional requirements for circulation within a proposed building design
Learning Outcome 2: Determine traffic planning and equipment selection criteria
Learning Outcome 3: Discuss the installation of escalators and moving walkways into a building
Learning Outcome 4: Evaluate the installation of lift systems.

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Introduction
The success of today's modern high-rise buildings is the ability to transport its occupants vertically and horizontally in a safe and efficient manner. This unit will examine such systems in detail and their integration into the overall structural elements of the building that supports them.

The overall aim of this unit is to give project managers, in building services, a working knowledge of lifts, escalators and other forms of access arrangements with a building. The principle person responsible for this is often the building services engineer and it is their responsibility to ensure that such systems operate efficiently and safely for all stakeholders.

On successful completion of this unit students will be in a position to understand the requirements for the installation of a transport system within a building that would be installed by a specialist sub-contractor. In addition, students will have the fundamental knowledge and skills to progress on to a higher level of study in services engineering.

Essential content

LO1 Discuss the functional requirements for circulation within a proposed building design

Clients' requirements:
Private and public access arrangements; goods deliveries; desired circulation; access limits; disability access arrangement requirements; location of transport arrangements; energy use; sustainable design; capacity; circulation elements; future expansion planning; emergency evacuation policies and statutory requirements; major circulation flows; non-discrimination requirements; principles of inclusive design.

Human factors:
Volume and timing of circulation; circulation zones; reaction to evacuation alarms; size of occupancy; weight; body sway; evacuation time requirements; disabled access; speed of access; initial method of access; motor car, train, tram, tube, bicycle, motorbike, parking and access arrangements from garages; speed of pedestrians; age and frailty; religion in terms of separated sexes; safety considerations; slips, trips and falls; even flooring; reading signage; personal comfort zones; personal space; human behaviour; density of occupation of transport systems; distances, social, personal, public and intimate.

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LO2 Determine traffic planning and equipment selection criteria

Factors:
Start times of building occupancy; peak congestion times; traffic patterns, vertical and horizontal; line of sight; definitions; signage to be used throughout building; handling capacity of the lift against size of lift to be accommodated; acceptable waiting times during peak access/egress; quality of service required; maximum height to lift passengers; aesthetics; crowding limits; circulation efficiency; fire and safety considerations; speed of operation; round trip calculations; traffic simulation and analysis data feed into design.

Equipment selection:
Costs, capital and lifetime maintenance; statutory compliance costs; inspection and testing certification; quality, reliability and safety; lift/escalator capacity; inclination requirements; height; horizontal distances to be travelled; speed of lift; lift shaft size; finishes available; type of lifting arrangements; functionality e.g. hospital patients; maintenance call-out service locations; car design; control room and machine room requirements; width of escalators; finishes and fixtures; car ceilings, handrails, bumpers, doors and frames.

LO3 Discuss the installation of escalators and moving walkways into a building

Escalator installation:
Structural support requirements; design and detail of principle components; drive systems; energy requirements; emergency stop procedures; safety devices; signage; fire precaution measures; types of balustrade; inclination distance requirements; stair width; capacity; speed; variable; two-way reversible direction; installation and structural connections; testing and commissioning; pre- engineered off-the-shelf applications; custom designed; lifecycle maintenance requirements; final use, public or private.

Moving walkways:
Structural requirements in terms of installation and support; design details for installation; motor and energy requirements; use; load carrying capacity; width of walkway; maximum travel distances; speed of travel; emergency stop procedures; signage; balustrade details; handrail heights; access/egress transition; distances between walkways; space and maintenance access arrangements; testing and commissioning.

LO4 Evaluate the installation of lift systems

Design of lift installation:
Type: passenger lift; goods and passenger lifts; permanent or construction lifting installation; goods lift only; observation lift in tall structures; service lift; motor vehicle lifts; design details and installation drawings; structural requirements; fire precaution requirements; car design, single, double decker.

Type of power:
Type of drive: hydraulically driven; electric traction; counter weight driven; associated suspension and roping systems; braking systems; speed controllers.

Lift controls:
Controller technology for call systems; DC and AC drive systems; energy saving sustainable considerations; door operation control; single lift control; multiple lift control; group traffic controller; fire and evacuation control by authorities; statutory requirements.

Electrical installation:
Mains cable installation; isolation to lift systems; signage and diagrammatic symbols; emergency lighting; access and maintenance lighting to lift shaft and plant rooms; standby power supplies in event of mains failure; lift car lighting requirements; lift emergency phone installation and connection; lift remote alarms installation; CCTV requirements for clients.

MOST RELIABLE AND TRUSTWORTHY UNIT 39 TRANSPORT SYSTEMS IN BUILDINGS - PEARSON BTEC LEVEL 5 HND IN CONSTRUCTION AND THE BUILT ENVIRONMENT ASSIGNMENT HELP SERVICES AT YOUR DOORSTEPS!

Learning Outcomes and Assessment Criteria

Pass

Merit

Distinction

LO1 Discuss the functional requirements for circulation within a proposed building design

 

 

D1 Evaluate the performance criteria of a transport installation in meeting statutory regulations

P1 Assess stakeholder requirements for movement within a building

P2 Explain the factors that affect the selection of a transportation system

M1 compare stakeholders' needs with statutory requirements

LO2 Determine traffic planning and equipment selection criteria

 

 

D2 Critically evaluate the design of a transportation system in meeting the traffic planning analysis

P3 Assess the factors that affect the level of traffic for a transport system

P4 Examine the criteria that affect the selection of lifting and transportation equipment

M2 Contrast traffic requirements against the performance of selected equipment

LO3 Discuss the installation of escalators and moving walkways into a building

 

 

LO3 LO4

D3 Critically analyse a vertical transportation system with regard to fire-fighting use

P5 Explore the installation of escalator systems

P6 Discuss the installation of moving walkways

M3 Analyse the installation of an escalator or moving walkway system against stakeholders' needs

LO4 Explain the installation of lift systems

P7 Examine the installation of a lift system

P8 Detail the design of the structural elements in support of a lift installation

M4 Evaluate the lift installation in meeting the requirements of the building regulations in terms of fire and fire fighting

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