This document summarizes a training seminar on solving fluid flow problems using CFD software. The seminar was held at the Centre For Fire, Explosive & Environmental Safety (CFEES) under DRDO. The seminar covered an introduction to CFD modeling strategies and objectives to solve (1) hydraulic pipe network problems using Flowmaster software and (2) combustion gas flow through an exhaust duct of a lab-scale facility using Flowmaster and Fluent. The document provides details on modeling steps, input parameters, and results for both objectives.
Photometric
Road Class
MOT / Municipality
Recommendation
New Trends
Closing
The document discusses road lighting in Saudi Arabia and provides information on:
1) Key lighting terminology such as luminous flux, luminous intensity, illuminance, and luminance as well as the relationships between these terms. It also presents some basic lighting formulas.
2) Methods for calculating illuminance and luminance levels on roads using photometric data and factors like pole height, pole spacing, and light loss.
3) Saudi road classification systems from the Ministry of Transportation and municipalities and recommended lighting schemes from Saudi Lighting Company.
4) Trends in new road lighting technologies and references
This document summarizes a street lighting project including:
1) Planning data for a single roadway with details on the luminaire, arrangement, and mounting specifications.
2) A luminaire parts list specifying the model number, luminous flux, and wattage.
3) Renderings showing the false color lighting distribution.
4) Valuation field details for the roadway including isolines, average lux, minimum lux, maximum lux, and uniformity ratios.
This document contains details of Project 1, including a luminaire data sheet, planning data, and illuminance values for Street 1. The planning data lists the street layout and details of the LED STREET LIGHT-1502 luminaire, including its luminous flux, maximum luminous intensities, and arrangement with a single row of poles at 30 meter spacing with a mounting height of 6.8 meters. Illuminance values are provided on a grid for the roadway section, with the average being 12 lux, minimum value of 6.96 lux, and maximum of 23 lux.
LSG-5000 Moving Detector Goniophotometer completely meets LM-79 Clause 9.3.1 and EN13032-1 clause 6.1.1.3 goniophotometer type 4 requirements. The LSG-5000 is an automatic light distribution intensity 3D curve testing system for measuring light. The measuring distance is from 5m to 30m. It can measure all types of lighting sources, LED or HID luminaires such as indoor and outdoor luminaires, roadway luminaires, street lamps, flood lights and other kinds of luminaires.
Lisun Electronics provides lighting test instruments including a moving detector goniospectroradiometer (LSG-5000CCD) for measuring the spatial luminous intensity distribution and other photometric parameters of luminaires. The LSG-5000CCD system rotates a luminaire and detects light with two moving mirrors and a detector to directly measure light from the luminaire. It can test in accordance with various lighting standards and export data for use in lighting design software.
LSG-5000 CCD Moving Detector Goniophotometer is full meet LM-79 Clause 9.3.1 request. The tested lamp will keep burning position and be fixed, near field detector move together with the big mirror in a line, and the far field detector will move with the big mirror synchronously. The detector will always sense the light directly from the luminaries.
This document summarizes a training seminar on solving fluid flow problems using CFD software. The seminar was held at the Centre For Fire, Explosive & Environmental Safety (CFEES) under DRDO. The seminar covered an introduction to CFD modeling strategies and objectives to solve (1) hydraulic pipe network problems using Flowmaster software and (2) combustion gas flow through an exhaust duct of a lab-scale facility using Flowmaster and Fluent. The document provides details on modeling steps, input parameters, and results for both objectives.
Photometric
Road Class
MOT / Municipality
Recommendation
New Trends
Closing
The document discusses road lighting in Saudi Arabia and provides information on:
1) Key lighting terminology such as luminous flux, luminous intensity, illuminance, and luminance as well as the relationships between these terms. It also presents some basic lighting formulas.
2) Methods for calculating illuminance and luminance levels on roads using photometric data and factors like pole height, pole spacing, and light loss.
3) Saudi road classification systems from the Ministry of Transportation and municipalities and recommended lighting schemes from Saudi Lighting Company.
4) Trends in new road lighting technologies and references
This document summarizes a street lighting project including:
1) Planning data for a single roadway with details on the luminaire, arrangement, and mounting specifications.
2) A luminaire parts list specifying the model number, luminous flux, and wattage.
3) Renderings showing the false color lighting distribution.
4) Valuation field details for the roadway including isolines, average lux, minimum lux, maximum lux, and uniformity ratios.
This document contains details of Project 1, including a luminaire data sheet, planning data, and illuminance values for Street 1. The planning data lists the street layout and details of the LED STREET LIGHT-1502 luminaire, including its luminous flux, maximum luminous intensities, and arrangement with a single row of poles at 30 meter spacing with a mounting height of 6.8 meters. Illuminance values are provided on a grid for the roadway section, with the average being 12 lux, minimum value of 6.96 lux, and maximum of 23 lux.
LSG-5000 Moving Detector Goniophotometer completely meets LM-79 Clause 9.3.1 and EN13032-1 clause 6.1.1.3 goniophotometer type 4 requirements. The LSG-5000 is an automatic light distribution intensity 3D curve testing system for measuring light. The measuring distance is from 5m to 30m. It can measure all types of lighting sources, LED or HID luminaires such as indoor and outdoor luminaires, roadway luminaires, street lamps, flood lights and other kinds of luminaires.
Lisun Electronics provides lighting test instruments including a moving detector goniospectroradiometer (LSG-5000CCD) for measuring the spatial luminous intensity distribution and other photometric parameters of luminaires. The LSG-5000CCD system rotates a luminaire and detects light with two moving mirrors and a detector to directly measure light from the luminaire. It can test in accordance with various lighting standards and export data for use in lighting design software.
LSG-5000 CCD Moving Detector Goniophotometer is full meet LM-79 Clause 9.3.1 request. The tested lamp will keep burning position and be fixed, near field detector move together with the big mirror in a line, and the far field detector will move with the big mirror synchronously. The detector will always sense the light directly from the luminaries.
LSG-2000 Goniophotometer with Rotating Mirror also called the Moving Mirror Goniophotometer. The LSG-2000 is an automatic light distribution intensity 3D curve testing system. The measuring distance is from 5m to 30m. It can measure all types of lighting sources, LED or HID luminaires such as indoor and outdoor luminaires, roadway luminaires, street lamps, flood lights and other kinds of luminaires.
LSG-5000 Moving Detector Goniophotometer completely meets LM-79 Clause 9.3.1 and EN13032-1 clause 6.1.1.3 goniophotometer type 4 requirements. The LSG-5000 is an automatic light distribution intensity 3D curve testing system for measuring light. The measuring distance is from 5m to 30m. It can measure all types of lighting sources, LED or HID luminaires such as indoor and outdoor luminaires, roadway luminaires, street lamps, flood lights and other kinds of luminaires.
This document describes the Lisun Electronics Inc. LSG-2000CCD Goniophotometric system for measuring the spatial luminous intensity distribution of luminaires. The system uses a rotating mirror and photometer to measure intensity across angles in both the horizontal and vertical planes. It provides precise measurements that meet international standards for characterizing properties such as luminous flux, beam angle, and color distribution of lighting products.
Test intensity distribution curve in 3D & export IES files for DiaLux. Applicated with Japanese motor, Angle Coder and Constant Temperature Class A Detector to keep high accuracy. Both B-Beta & C-Gamma test for all luminaires up to 1.4m and 40kg
Design of Street Light Revitalitation using Dialux EVOSyamsirAbduh2
The development of road infrastructure and the
increasing density on the highway, especially in big cities like
the capital city of Jakarta, require adequate road equipment to
provide security and comfort for public road riders, especially
at night. One of the instruments supporting highway equipment
as a support for road user safety is the Public Street Lighting
(LPJU) lights. Currently the Kemayoran ExAirport area which
is managed by the Kemayoran Complex Management Center
still has a road width of 25 meters and uses high-powered street
lighting instruments but the illumination level is not optimal
with an average value of 11 lux for fast lanes with the SON-T
lamp type 400 watts. The purpose of this study is to optimize
the function of public street lighting in the Kemayoran Region
by planning revitalization / rejuvenation of street lighting (PJU)
using low power lighting with high lumens with Light Emitting
Diode (LED) Lighting technology. The method used in this
research is quantitative observations and calculations using
international standards and SNI with lighting simulations using
DIALux Evo software. The results of this study note that:
Public street lighting system Jl. The most suitable Benyamien
Sueb is to add a new PJU pole placement pattern in the middle
median with 235 Watt lamp power in the fast lane and the
existing pole with 140 Watt lamp power in the slow lane. This is
evidenced by the results of the Dialux Evo simulation which
shows the average value of lighting using LEDs reaching 48.7
lux (Fast Track) and 36.4 lux (Slow Track). This value has
fulfilled the SNI 7391: 2008 standard for public street lighting
with the classification of arterial-free roads.
The document provides information about the Lisun Electronics Inc. Moving Detector Goniophotometer (LSG-5000), including:
1. The LSG-5000 can precisely measure the spatial light distribution of luminaires and provides photometric test results.
2. It has components like a rotating console, moving mirror, and photometer that allow testing of luminaires from 0-360 degrees.
3. Test results include luminous intensity, efficiency, and distribution that meet various international standards.
Lisun Electronics provides a brochure describing their LSG-5000 Moving Detector Goniophotometer system for measuring the photometric properties of luminaires. The system includes a goniometric rotating console, photometer, software and various accessories. It is capable of measuring properties such as luminous intensity distribution, beam angles, efficiency and more in accordance with various international standards. The document provides details on system components, measurement principles, specifications, laboratory requirements and applications.
LSG-5000 Moving Detector Goniophotometer is full meet LM-79 Clause 9.3.1 request. The tested lamp will keep burning position and be fixed, near field detector move together with the big mirror in a line, and the far field detector will move with the big mirror synchronously. The detector will always sense the light directly from the luminaries.
LSG-2000 Goniophotometer with Rotating Mirror is also called the Moving Mirror Goniophotometer. It is an automatic light distribution intensity 3D curve testing system.
Lisun Goniospectroradiometer with Moving Mirror can test luminaries rotating in the presscribed burning position and around the vertical axle and a reflecting mirror rotates around the horizontal axle, meanwhile, a synchronous axle will rotate toward the opposite direction synchronously.
Lisun Electronics provides a brochure describing their LSG-2000CCD Goniospectroradiometer with Moving Mirror system. The system measures the spatial luminous intensity distribution of luminaires and includes a goniometric rotating console, high reflective moving mirror, photometer, and software. It meets various international standards for goniophotometric testing of luminaires.
This document contains a lighting design proposal for the Leicester Riders Main Hall arena. It includes specifications for 96 LED luminaires to light the main playing courts as well as additional designs for emergency lighting and supplemental lighting options. Photometric results, 3D renderings, and component lists are provided for each lighting scenario.
This document provides information about Lisun Electronics Inc., a manufacturer of lighting and electrical test instruments. It includes contact information for Lisun's global offices in Hong Kong, Shanghai, and Los Angeles. The document then describes Lisun's LSG-2000 Goniophotometer with Moving Mirror system for measuring the light distribution of luminaires. Key features and specifications of the system are listed, along with laboratory requirements and typical customers. Measurement principles, functions, and an example test report are also summarized.
LSG-3000 CCD Moving Detector Goniophotometer is full meet LM-79 Clause 9.3.1 request. The tested lamp will keep burning position and be fixed, near field detector move together with the big mirror in a line, and the far field detector will move with the big mirror synchronously. The detector will always sense the light directly from the luminaries.
The document is a brochure for Lisun Electronics Inc. that provides information about their LSG-3000CCD Moving Detector Goniospectroradiometer system. It includes specifications for the system such as measurement capabilities, accuracy standards, and laboratory requirements. It also lists contact information for Lisun Electronics' global offices and describes features of the system like measurement principles and data output formats.
This document provides information on the Lisun Electronics Inc. LSG-3000CCD Moving Detector Goniospectroradiometer. It includes details on the system configuration, measurement principles, functions, specifications, laboratory requirements, services provided, design standards, typical customers, and application software. The system is designed to measure the spatial luminous intensity distribution and other photometric parameters of luminaires according to various industry standards.
B.tech Major Project: In this project I have simulated the illuminance distribution, optical power distribution on received optical plane for Line of Sight(LOS) condition as well as Diffuse link, SNR distribution and graph showing the variation of RMS Delay Spread for different sample receiver positions using MATLAB.
LPCE-2 is an Integrating Sphere Spectroradiometer LED Testing System for identifying the performance of single LEDs and LED lamps. LED’s quality should be tested by checking its photometric, colorimetric and electrical parameters. According to CIE127-1997, IES LM-79-08 and IES LM-80-08, it recommends to using an array spectroradiometer with integrating sphere to test SSL products. The LPCE-2 system is applied with a CCD Spectroradiometer (LMS-9000B or LMS-9000A) and worked with A molding integrating sphere with testing holder base function which will be more circle and the test results will be more accurate than the traditional integrating sphere.
DRAW WIRE ENCODER CATALOGUE 2014 LIKA ELECTRONICLika Electronic
Wire actuated encoders fully integrate in a single package both the cable pull assembly and an incremental / absolute encoder. This results in very small, compact and robust devices ideally suited for a variety of industrial applications and especially for installation where space is limited. The working principle in fact allows the wire to provide safe linear position feedback even in constricted or inaccessible environments, while the sensing circuitry can be kept protected from external influences and contaminants. Specific models allow the wire mechanism (up to 6800 mm / 267.7” measuring length) to be paired with whatever encoder is best suited to your needs: incremental (NPN, PNP, Push-Pull, Line Driver, Universal, 1Vpp), absolute (SSI, BiSS), fieldbus interface (CANopen, Profibus, DeviceNet, EtherCAT, Modbus), programmable (SSI, bit parallel, analogue current/voltage), ATEX (CANopen, Profibus). Cable pulling encoder are suitable for installation in a variety of industrial applications for both linear position and speed measurements. They find typical use for short travel distances in telescopic systems and hydraulic pistons (for instance in mobile equipment such as outriggers, stabilizing slides, telescopic cranes, booms ...), forklifts, man-lifts, scissor lifts and loading platforms, printing and measuring machines, store and convey systems, medical technology applications such as examination tables, X-ray machines, dentist's chairs and laboratory testing devices, and many others. Find out more in the new catalogue from Lika Electronic!
Landscape light, pole light,garden light catalog(EU Style).pdfLuminhome Lighting
The document discusses the benefits of exercise for mental health. Regular physical activity can help reduce anxiety and depression and improve mood and cognitive function. Exercise causes chemical changes in the brain that may help protect against mental illness and improve symptoms.
The document discusses the benefits of exercise for mental health. It states that regular physical activity can help reduce anxiety and depression and improve mood and cognitive function. Exercise causes chemical changes in the brain that may help alleviate symptoms of mental illness.
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Similar to 250 w 8m pole street light light effect from Luminhome lighting
LSG-2000 Goniophotometer with Rotating Mirror also called the Moving Mirror Goniophotometer. The LSG-2000 is an automatic light distribution intensity 3D curve testing system. The measuring distance is from 5m to 30m. It can measure all types of lighting sources, LED or HID luminaires such as indoor and outdoor luminaires, roadway luminaires, street lamps, flood lights and other kinds of luminaires.
LSG-5000 Moving Detector Goniophotometer completely meets LM-79 Clause 9.3.1 and EN13032-1 clause 6.1.1.3 goniophotometer type 4 requirements. The LSG-5000 is an automatic light distribution intensity 3D curve testing system for measuring light. The measuring distance is from 5m to 30m. It can measure all types of lighting sources, LED or HID luminaires such as indoor and outdoor luminaires, roadway luminaires, street lamps, flood lights and other kinds of luminaires.
This document describes the Lisun Electronics Inc. LSG-2000CCD Goniophotometric system for measuring the spatial luminous intensity distribution of luminaires. The system uses a rotating mirror and photometer to measure intensity across angles in both the horizontal and vertical planes. It provides precise measurements that meet international standards for characterizing properties such as luminous flux, beam angle, and color distribution of lighting products.
Test intensity distribution curve in 3D & export IES files for DiaLux. Applicated with Japanese motor, Angle Coder and Constant Temperature Class A Detector to keep high accuracy. Both B-Beta & C-Gamma test for all luminaires up to 1.4m and 40kg
Design of Street Light Revitalitation using Dialux EVOSyamsirAbduh2
The development of road infrastructure and the
increasing density on the highway, especially in big cities like
the capital city of Jakarta, require adequate road equipment to
provide security and comfort for public road riders, especially
at night. One of the instruments supporting highway equipment
as a support for road user safety is the Public Street Lighting
(LPJU) lights. Currently the Kemayoran ExAirport area which
is managed by the Kemayoran Complex Management Center
still has a road width of 25 meters and uses high-powered street
lighting instruments but the illumination level is not optimal
with an average value of 11 lux for fast lanes with the SON-T
lamp type 400 watts. The purpose of this study is to optimize
the function of public street lighting in the Kemayoran Region
by planning revitalization / rejuvenation of street lighting (PJU)
using low power lighting with high lumens with Light Emitting
Diode (LED) Lighting technology. The method used in this
research is quantitative observations and calculations using
international standards and SNI with lighting simulations using
DIALux Evo software. The results of this study note that:
Public street lighting system Jl. The most suitable Benyamien
Sueb is to add a new PJU pole placement pattern in the middle
median with 235 Watt lamp power in the fast lane and the
existing pole with 140 Watt lamp power in the slow lane. This is
evidenced by the results of the Dialux Evo simulation which
shows the average value of lighting using LEDs reaching 48.7
lux (Fast Track) and 36.4 lux (Slow Track). This value has
fulfilled the SNI 7391: 2008 standard for public street lighting
with the classification of arterial-free roads.
The document provides information about the Lisun Electronics Inc. Moving Detector Goniophotometer (LSG-5000), including:
1. The LSG-5000 can precisely measure the spatial light distribution of luminaires and provides photometric test results.
2. It has components like a rotating console, moving mirror, and photometer that allow testing of luminaires from 0-360 degrees.
3. Test results include luminous intensity, efficiency, and distribution that meet various international standards.
Lisun Electronics provides a brochure describing their LSG-5000 Moving Detector Goniophotometer system for measuring the photometric properties of luminaires. The system includes a goniometric rotating console, photometer, software and various accessories. It is capable of measuring properties such as luminous intensity distribution, beam angles, efficiency and more in accordance with various international standards. The document provides details on system components, measurement principles, specifications, laboratory requirements and applications.
LSG-5000 Moving Detector Goniophotometer is full meet LM-79 Clause 9.3.1 request. The tested lamp will keep burning position and be fixed, near field detector move together with the big mirror in a line, and the far field detector will move with the big mirror synchronously. The detector will always sense the light directly from the luminaries.
LSG-2000 Goniophotometer with Rotating Mirror is also called the Moving Mirror Goniophotometer. It is an automatic light distribution intensity 3D curve testing system.
Lisun Goniospectroradiometer with Moving Mirror can test luminaries rotating in the presscribed burning position and around the vertical axle and a reflecting mirror rotates around the horizontal axle, meanwhile, a synchronous axle will rotate toward the opposite direction synchronously.
Lisun Electronics provides a brochure describing their LSG-2000CCD Goniospectroradiometer with Moving Mirror system. The system measures the spatial luminous intensity distribution of luminaires and includes a goniometric rotating console, high reflective moving mirror, photometer, and software. It meets various international standards for goniophotometric testing of luminaires.
This document contains a lighting design proposal for the Leicester Riders Main Hall arena. It includes specifications for 96 LED luminaires to light the main playing courts as well as additional designs for emergency lighting and supplemental lighting options. Photometric results, 3D renderings, and component lists are provided for each lighting scenario.
This document provides information about Lisun Electronics Inc., a manufacturer of lighting and electrical test instruments. It includes contact information for Lisun's global offices in Hong Kong, Shanghai, and Los Angeles. The document then describes Lisun's LSG-2000 Goniophotometer with Moving Mirror system for measuring the light distribution of luminaires. Key features and specifications of the system are listed, along with laboratory requirements and typical customers. Measurement principles, functions, and an example test report are also summarized.
LSG-3000 CCD Moving Detector Goniophotometer is full meet LM-79 Clause 9.3.1 request. The tested lamp will keep burning position and be fixed, near field detector move together with the big mirror in a line, and the far field detector will move with the big mirror synchronously. The detector will always sense the light directly from the luminaries.
The document is a brochure for Lisun Electronics Inc. that provides information about their LSG-3000CCD Moving Detector Goniospectroradiometer system. It includes specifications for the system such as measurement capabilities, accuracy standards, and laboratory requirements. It also lists contact information for Lisun Electronics' global offices and describes features of the system like measurement principles and data output formats.
This document provides information on the Lisun Electronics Inc. LSG-3000CCD Moving Detector Goniospectroradiometer. It includes details on the system configuration, measurement principles, functions, specifications, laboratory requirements, services provided, design standards, typical customers, and application software. The system is designed to measure the spatial luminous intensity distribution and other photometric parameters of luminaires according to various industry standards.
B.tech Major Project: In this project I have simulated the illuminance distribution, optical power distribution on received optical plane for Line of Sight(LOS) condition as well as Diffuse link, SNR distribution and graph showing the variation of RMS Delay Spread for different sample receiver positions using MATLAB.
LPCE-2 is an Integrating Sphere Spectroradiometer LED Testing System for identifying the performance of single LEDs and LED lamps. LED’s quality should be tested by checking its photometric, colorimetric and electrical parameters. According to CIE127-1997, IES LM-79-08 and IES LM-80-08, it recommends to using an array spectroradiometer with integrating sphere to test SSL products. The LPCE-2 system is applied with a CCD Spectroradiometer (LMS-9000B or LMS-9000A) and worked with A molding integrating sphere with testing holder base function which will be more circle and the test results will be more accurate than the traditional integrating sphere.
DRAW WIRE ENCODER CATALOGUE 2014 LIKA ELECTRONICLika Electronic
Wire actuated encoders fully integrate in a single package both the cable pull assembly and an incremental / absolute encoder. This results in very small, compact and robust devices ideally suited for a variety of industrial applications and especially for installation where space is limited. The working principle in fact allows the wire to provide safe linear position feedback even in constricted or inaccessible environments, while the sensing circuitry can be kept protected from external influences and contaminants. Specific models allow the wire mechanism (up to 6800 mm / 267.7” measuring length) to be paired with whatever encoder is best suited to your needs: incremental (NPN, PNP, Push-Pull, Line Driver, Universal, 1Vpp), absolute (SSI, BiSS), fieldbus interface (CANopen, Profibus, DeviceNet, EtherCAT, Modbus), programmable (SSI, bit parallel, analogue current/voltage), ATEX (CANopen, Profibus). Cable pulling encoder are suitable for installation in a variety of industrial applications for both linear position and speed measurements. They find typical use for short travel distances in telescopic systems and hydraulic pistons (for instance in mobile equipment such as outriggers, stabilizing slides, telescopic cranes, booms ...), forklifts, man-lifts, scissor lifts and loading platforms, printing and measuring machines, store and convey systems, medical technology applications such as examination tables, X-ray machines, dentist's chairs and laboratory testing devices, and many others. Find out more in the new catalogue from Lika Electronic!
Landscape light, pole light,garden light catalog(EU Style).pdfLuminhome Lighting
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250 w 8m pole street light light effect from Luminhome lighting
1. Project 1
22.05.2014
Operator
Telephone
Fax
e-Mail
Table of contents
Project 1
Table of contents 1
LED street lights
Luminaire Data Sheet 2
Street 1
Planning data 3
Luminaire parts list 4
False Color Rendering 5
Valuation Fields
Valuation Field Roadway 2
Results overview 6
Isolines (E) 7
Value Chart (E) 8
Observer
Observer 3
Isolines (L) 9
Observer 4
Isolines (L) 10
Observer 5
Isolines (L) 11
Valuation Field Emergency Lane 1
Isolines (E) 12
Page 1
2. Project 1
22.05.2014
Operator
Telephone
Fax
e-Mail
LED street lights / Luminaire Data Sheet
See our luminaire catalog for an image of the
luminaire.
Luminous emittance 1:
Luminaire classification according to CIE: 99
CIE flux code: 41 77 97 99 100
Due to missing symmetry properties, no UGR table
can be displayed for this luminaire.
Page 2
3. Project 1
22.05.2014
Operator
Telephone
Fax
e-Mail
Street 1 / Planning data
Street Profile
Emergency Lane 2 (Width: 3.000 m)
Roadway 2 (Width: 12.000 m, Number of lanes: 3, tarmac: R3, q0: 0.070)
Median 1 (Width: 1.000 m, Height: 0.800 m)
Roadway 1 (Width: 12.000 m, Number of lanes: 3, tarmac: R3, q0: 0.070)
Emergency Lane 1 (Width: 3.000 m)
Light loss factor: 0.95
Luminaire Arrangements
Luminaire: LED street lights
Luminous flux (Luminaire): 24999 lm Maximum luminous intensities
at 70°: 644 cd/klm
at 80°: 290 cd/klm
at 90°: 7.74 cd/klm
Any direction forming the specified angle from the downward vertical, with
the luminaire installed for use.
Arrangement complies with glare index class D.6.
Luminous flux (Lamps): 25000 lm
Luminaire Wattage: 250.0 W
Arrangement: Double row, opposing
Pole Distance: 40.000 m
Mounting Height (1): 12.000 m
Height: 12.000 m
Overhang (2): -1.000 m
Boom Angle (3): 15.0 °
Boom Length (4): 2.500 m
Page 3
4. Project 1
22.05.2014
Operator
Telephone
Fax
e-Mail
Street 1 / Luminaire parts list
LED street lights (Type 1)
Article No.:
Luminous flux (Luminaire): 24999 lm
Luminous flux (Lamps): 25000 lm
Luminaire Wattage: 250.0 W
Luminaire classification according to CIE: 99
CIE flux code: 41 77 97 99 100
Fitting: 1 x User defined (Correction Factor
1.000).
See our luminaire
catalog for an image of
the luminaire.
Page 4
5. Project 1
22.05.2014
Operator
Telephone
Fax
e-Mail
Street 1 / False Color Rendering
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6. Project 1
22.05.2014
Operator
Telephone
Fax
e-Mail
Street 1 / Valuation Field Roadway 2 / Results overview
Light loss factor: 0.95 Scale 1:329
Grid: 14 x 9 Points
Accompanying Street Elements: Roadway 2.
tarmac: R3, q0: 0.070
Selected Lighting Class: ME1 (Not all lighting performance requirements are met.)
Lav [cd/m²] U0 Ul TI [%] SR
Calculated values: 2.09 0.62 0.80 11 0.87
Required values according to class: ≥ 2.00 ≥ 0.40 ≥ 0.70 ≤ 10 ≥ 0.50
Fulfilled/Not fulfilled:
Assigned observer (3 Pieces):
No. Observer Position [m] Lav [cd/m²] U0 Ul TI [%]
1 Observer 3 (-60.000, 15.000, 1.500) 2.40 0.62 0.80 8
2 Observer 4 (-60.000, 19.000, 1.500) 2.26 0.66 0.88 10
3 Observer 5 (-60.000, 23.000, 1.500) 2.09 0.74 0.91 11
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