专利摘要:
System and method of detecting incident radiation on a solar receiver. The present invention relates to a system and method for detecting radiation incident on a solar receiver with regions subjected to different temperatures, and which is based on: at least one radiation sensor that communicates a first radiation receiving end, located in a previous high temperature region, with a second radiation detection end located in a lower temperature back region; and at least one module for measuring the radiation guided by the radiation sensor, located in the rear region of detection. The proposed invention allows measurements of the light distribution in the receiver, through means configured to guide the light that reaches the tower from any angle of incidence, and with thermal resistance to withstand the high temperatures present in the detector surface of the tower. (Machine-translation by Google Translate, not legally binding)
公开号:ES2579208A1
申请号:ES201530011
申请日:2015-01-05
公开日:2016-08-08
发明作者:Guillermo ESPINOSA RUEDA;Noelia Martinez Sanz;Carlos Heras Vila;Iñigo Salinas Ariz;Rafael Alonso Esteban;David Izquierdo Nuñez;Marta OSTA LOMBARDO;Rafael GELLA MARIN
申请人:Abengoa Solar New Technologies SA;
IPC主号:
专利说明:

image 1
image2
image3
image4
image5
image6
image7
image8
image9
权利要求:
Claims (1)
[1]
image 1
image2
image3
类似技术:
公开号 | 公开日 | 专利标题
SG186724A1|2013-02-28|Calibration of a probe in ptychography
IL228898D0|2013-12-31|A method and apparatus for providing image data for constructing an image of a region of a target object
JP2014516168A5|2015-07-23|
ES2579208A1|2016-08-08|System and method of detection of incident radiation on a solar receiver |
MX2015004816A|2016-08-03|Apparatus and method for determining the target position deviation of two bodies.
SG176579A1|2012-01-30|Devices and methods for dynamic determination of sample position and orientation and dynamic repositioning
WO2016038416A3|2016-05-26|Proximity sensor systems and methods of operating same
WO2012176106A3|2013-03-07|Method and apparatus for inspection of light emitting semiconductor devices using photoluminescence imaging
WO2014072648A9|2015-07-16|System and method for detecting gamma radiation, such as a gamma camera
EP1757914A3|2008-08-06|Imaging detector array with optical readout
WO2014180734A3|2015-01-22|Apparatus and method for the evaluation of gamma radiation events
WO2012173999A3|2013-07-04|Wafer level spectrometer
WO2014110377A3|2014-10-09|Dual energy imaging system
FR2999726B1|2020-10-02|MEASURING DEVICE AND METHOD FOR REFERENCING A LASER TELEMETER
TW201614386A|2016-04-16|Illumination system
BR112017002822A2|2018-01-23|neutron detection apparatus and system, and method for neutron radiation detection.
TW201614201A|2016-04-16|Determining spectral emission characteristics of incident radiation
WO2014076448A3|2014-07-24|Radiation detector
MX338030B|2016-03-31|Device for determining the location of mechanical elements.
WO2014108528A3|2014-10-02|Polarization measuring device, lithography apparatus, measuring arrangement, and method for polarization measurement
WO2015026406A3|2015-05-07|High-resolution methods and systems for optically imaging parts
ES2595637A1|2017-01-02|Method and system for the calibration of a plurality of heliostatos in a solar thermo plant of concentration |
RU2015126765A|2017-01-23|METHOD AND DEVICE OF NON-CONTACT DETERMINATION OF THE TEMPERATURE OF A MOVING OBJECT WITH AN UNKNOWN DEGREE OF RADIATION
JP2015095857A5|2016-12-28|Image processing apparatus and image processing method
GB2503606A|2014-01-01|Radiation detector
同族专利:
公开号 | 公开日
CL2017001752A1|2017-12-15|
WO2016110606A1|2016-07-14|
MA40705A1|2018-05-31|
ZA201705258B|2018-12-19|
ES2579208B1|2017-05-22|
引用文献:
公开号 | 申请日 | 公开日 | 申请人 | 专利标题
ES2738907A1|2018-07-25|2020-01-27|Fund Cener Ciemat|DEVICE, SYSTEM AND PROCEDURE FOR CHARACTERIZATION OF REFLECTIVE ELEMENTS FROM THE BEAMS OF LIGHT REFLECTED IN THE SAME |
WO2022003227A1|2020-07-02|2022-01-06|Universidad De Sevilla|Radiometry device and method for measuring solar irradiance|DE4446303C2|1994-12-23|1997-01-23|Deutsche Forsch Luft Raumfahrt|Device for concentrating solar radiation|
DE10322001B4|2003-05-16|2007-07-19|Deutsches Zentrum für Luft- und Raumfahrt e.V.|Radiation measuring device|
US8001960B2|2007-11-12|2011-08-23|Brightsource Industries Ltd.|Method and control system for operating a solar power tower system|
US8931475B2|2008-07-10|2015-01-13|Brightsource Industries Ltd.|Systems and methods for control of a solar power tower using infrared thermography|
US20100139644A1|2008-10-29|2010-06-10|Brightsource Industries , Ltd.|Heliostat calibration|
CN101871811B|2010-06-09|2011-11-09|华北电力大学|Radiation measuring device of light-gathering heat collection pipe and scanning analysis method thereof|CN113835448B|2021-11-29|2022-03-01|国网山东省电力公司东平县供电公司|Monitoring system and method for solar tower|
法律状态:
2017-05-22| FG2A| Definitive protection|Ref document number: 2579208 Country of ref document: ES Kind code of ref document: B1 Effective date: 20170522 |
2018-11-16| GD2A| Contractual licences|Effective date: 20181116 |
优先权:
申请号 | 申请日 | 专利标题
ES201530011A|ES2579208B1|2015-01-05|2015-01-05|INCIDENT RADIATION DETECTION SYSTEM AND METHOD ON A SOLAR RECEIVER|ES201530011A| ES2579208B1|2015-01-05|2015-01-05|INCIDENT RADIATION DETECTION SYSTEM AND METHOD ON A SOLAR RECEIVER|
MA40705A| MA40705A1|2015-01-05|2016-01-05|System and method for detecting incident radiation on a solar receiver|
PCT/ES2016/070001| WO2016110606A1|2015-01-05|2016-01-05|System and method for detecting incident radiation on a solar receiver|
CL2017001752A| CL2017001752A1|2015-01-05|2017-06-30|System and method of detecting incident radiation on a solar receiver|
ZA2017/05258A| ZA201705258B|2015-01-05|2017-08-03|System and method for detecting incident radiation on a solar receiver|
[返回顶部]