27.160;97.100.99 标准查询与下载



共找到 19 条与 相关的标准,共 2

This British Standard gives recommendations and guidance for the installation of common indirect solar domestic hot water (SDHW) systems for all types of building in the UK. It includes recommendations and guidance for design,handling, installation,commissioning,handover,maintenance,decommissioning and fault-finding.

Solar heating systems for domestic hot water. Code of practice for design and installation

ICS
27.160;97.100.99
CCS
F12
发布
2015-01-31
实施
2015-01-31

Solar heating — Domestic water heating systems — Part 4: System performance characterization by means of component tests and computer simulation

ICS
27.160;97.100.99
CCS
F12
发布
2014-12-31
实施
2014/12/31

KS B ISO 9459 시리즈 중 이 표준은 주택용 태양열 온수 급탕(SDHW: solar domestic hot-water)을 대상으로 하는 실험실적 실외 시험방법을 규정한다. 해당 시험방법은 현장 시험, 그리고 실내 측정에필요한 배수 계획 및 일사량 조건을 지정할 경우 실내 시험에도 적용할 수 있다. 시스템 성능 특성은 ‘암상자’ 방법(black-box approach)을 이용한 전체 시스템 시험(whole-system test)으로 평가한다.즉, 시스템 구성품 또는 시스템 내부에 대한 측정은 전혀 필요하지 않다. 구체적인 시험방법은 측정절차, 측정 자료의 처리 및 분석, 시험 보고서 제출 관련 절에 제시한다.순간 운전 중 주택용 태양열 온수 급탕(SDHW)의 특성을 평가할 경우 참고문헌 [1]에 기술된 이론적모형을 사용한다. 이론적 모형에 수반되는 매개 변수는 매개 변수-규명 소프트웨어 프로그램(parameter-identification software program)(부속서 A 참조)으로 규명한다. 프로그램 시행 결과로 일련의 매개 변수를 얻을 수 있으며 이를 통해 이론 모형과 실제 측정 자료 사이에서 최적합을 구할 수 있다.시스템 매개 변수를 정확하게 규명하려면 광범위한 운전 조건을 분석해야 한다. 측정된 자료는 시스템 매개 변수 규명에 사용하기에 앞서 전처리

Solar heating — Domestic water heating systems — Part 5: System performance characterization by means of whole-system tests and computer simulation

ICS
27.160;97.100.99
CCS
F12
发布
2013-12-18
实施
2013/12/18

Solar heating. Domestic water heating systems. System performance characterization by means of component tests and computer simulation

ICS
27.160;97.100.99
CCS
F12
发布
2013-02-28
实施
2013-02-28

Solar heating - Domestic water heating systems - Part 4: System performance characterization by means of component tests and computer simulation

ICS
27.160;97.100.99
CCS
F12
发布
2013-02
实施

This International Standard specifies a means of assessing elastomeric materials for use in the manufacture of absorbers, connecting piping and frttings for use in solar water heaters.

Solar water heaters - Elastomeric materials for absorbers, connecting pipes and fittings - Method of assessment

ICS
27.160;97.100.99
CCS
发布
2012-09-08
实施
2012-09-08

This European Standard specifies requirements on durability, reliability and safety of small and large custom built solar heating and cooling systems with liquid heat transfer medium in the collector loop for residential buildings and similar applications.This document also contains requirements on the design process of large custom built systems.

Thermal solar systems and components - Custom built systems - Part 1: General requirements for solar water heaters and combisystems

ICS
27.160;97.100.99
CCS
发布
2012-04-01
实施

This European Standard applies to small and large custom built solar heating systems with liquid heat transfer medium for residential buildings and similar applications, and gives test methods for verification of the requirements specified in EN 12977-1. This document also includes a method for thermal performance characterization and system performance prediction of small custom built systems by means of component testing and system simulation. Furthermore, this document contains methods for thermal performance characterization and system performance prediction of large custom built systems. This document applies to the following types of small custom built solar heating systems: systems for domestic hot water preparation only; systems for space heating only; systems for domestic hot water preparation and space heating; others (e. g. including cooling). This document applies to large custom built solar heating systems, primarily to solar preheat systems, with one or more storage vessels, heat exchangers, piping and automatic controls and with collector array(s) with forced circulation of fluid in the collector loop. This document does not apply to systems with a store medium other than water (e. g. phase- change materials), thermosiphon systems, integral collector-storage (ICS) systems.

Thermal solar systems and components - Custom built systems - Part 2: Test methods for solar water heaters and combisystems

ICS
27.160;97.100.99
CCS
发布
2012-04-01
实施

This European Standard specifies test methods for the performance characterization of stores which are intended for use in small custom built systems as specified in EN 12977-1. Stores tested according to this document are commonly used in solar combisystems. However, the thermal performance of all other thermal stores with water as a storage medium (e. g. for heat pump systems) can be also assessed according to the test methods specified in this document. This document applies to combistores with a nominal volume up to 3000 l and without integrated burner. NOTE This document is extensively based on references to EN 12977-3:2012.

Thermal solar systems and components - Custom built systems - Part 4: Performance test methods for solar combistores

ICS
27.160;97.100.99
CCS
发布
2012-04-01
实施

This European Standard specifies performance test methods for control equipment. Furthermore, this document contains requirements on accuracy, durability and reliability of control equipment. The tests described in this document are limited to electrically activated components delivered with or for the system by the final supplier. For the purposes of this document controller and control equipment for solar heating systems and auxiliary heaters, if part of the system, are restricted to the following: a) Controllers as: 1) system clocks, timers and counters; 2) differential thermostats; 3) multi-function controllers. b) Sensors as: 1) temperature sensors; 2) irradiance sensors (for short wave radiation); 3) pressure sensors; 4) level sensors; 5) flow meters; 6) heat meters. c) Actuators as: 1) pumps; 2) solenoid and motor valves; 3) relays. d) Combinations of controllers, sensors and actuators listed above. An additional objective of the procedures described in this document is to verify control algorithms and, together with the accuracy of sensors, to determine control parameters. In addition to verifying the functioning of a controller, its equipment and actuators, the determined parameters may be used for numerical system simulations. Typically, electrical anodes are not part of the control equipment and are not controlled by the control equipment. However, because they are electrical appliances, electrical anodes are included in this document. This document is valid for control equipment of solar heating systems for the purpose of hot water preparation and/or space heating. If the solar system is connected to or part of a conventional heating system, the validity is extended to the entire system. In combination with the standards EN 12976-1, EN 12976-2 as well as EN 12977-1, EN 12977-2, EN 12977-3 and EN 12977-4, this document is valid for e) factory made solar heating systems, f) small custom built solar heating systems, g) large custom built solar heating systems, h) auxiliary heater equipment used in connection with e), f) and g).

Thermal solar systems and components - Custom built systems - Part 5: Performance test methods for control equipment

ICS
27.160;97.100.99
CCS
发布
2012-04-01
实施

This Technical Specification specifies test methods for the performance characterization of stores which are intended for use in small custom built systems as specified in CEN/TS 12977-1. Stores tested according to this document are commonly used in solar combisystems. However, also the thermal performance of all other thermal stores with water as storage medium (e.g. for heat pump systems) can be assessed according to the test methods specified in this document. This document applies to combisstores with a nominal volume up to 3 000 l and without integrated burner.

Thermal solar systems and components - Custom built systems - Performance test methods for solar combistores

ICS
27.160;97.100.99
CCS
F12
发布
2010-05-31
实施
2010-05-31

This Technical Specification specifies performance test methods for control equipment. Furthermore this document contains requirements on accuracy, durability and reliability of control equipment. The tests described in this document are limited to components delivered with or for the system by the final supplier. For the purposes of this document controller and control equipment for solar heating systems and auxiliary heaters, if part of the system, are restricted to: a) controllers as: 1) system clocks, timers and counters; 2) differential thermostats; 3) multi-function controllers; b) sensors as: 1) temperature sensors; 2) irradiance sensors (for short wave radiation); 3) pressure sensors; 4) level sensors; 5) flow meters; or 6) heat meters; c) actuators as: 1) pumps; 2) solenoid and motor valves; or 3) relays. Furthermore combinations of controllers, sensors and actuators listed above. An additional objective of the procedures described in this document is to verify control algorithms and, together with the accuracy of sensors, to determine control parameters. In addition to verifying the functioning of a controller, its equipment and actuators, the determined parameters may be used for numerical system simulations. Typically electrical anodes are not part of the control equipment and are not controlled by the control equipment. However, because they are electrical appliances, electrical anodes are included in this document. This document is valid for control equipment of solar heating systems for the purpose of hot water preparation and/or space heating. If the solar system is connected to or part of a conventional heating system, the validity is extended to the entire system. In combination with the standards EN 12976-1, EN 12976-2 as well as CEN/TS 12977-1, CEN/TS 12977-2, EN 12977-3 and CEN/TS 12977-4 this document is valid for: d) factory made solar heating systems; e) small custom built solar heating systems; f) large custom built solar heating systems; and g) auxiliary heater equipment used in connection with d), e) and f).

Thermal solar systems and components - Custom built systems - Performance test methods for control equipment

ICS
27.160;97.100.99
CCS
F12
发布
2010-04-30
实施
2010-04-30

This Technical Specification specifies requirements on durability, reliability and safety of small and large custom built solar heating and cooling systems with liquid heat transfer medium in the collector loop for residential buildings and similar applications. This document contains also requirements on the design process of large custom built systems.

Thermal solar systems and components - Custom built systems - General requirements for solar water heaters and combisystems

ICS
27.160;97.100.99
CCS
F12
发布
2010-04-30
实施
2010-04-30

This Technical Specification applies to small and large custom built solar heating systems with liquid heat transfer medium for residential buildings and similar applications, and gives test methods for verification of the requirements specified in CEN/TS 12977-1. This document also includes a method for thermal performance characterization and system performance prediction of small custom built systems by means of component testing and system simulation. Furthermore, this document contains methods for thermal performance characterization and system performance prediction of large custom built systems. This document applies to the following types of small custom built solar heating systems: ? systems for domestic hot water preparation only; ? systems for space heating only; ? systems for domestic hot water preparation and space heating; ? others (e.g. including cooling). This document applies to large custom built solar heating systems, primarily to solar preheat systems, with one or more storage vessels, heat exchangers, piping and automatic controls and with collector array(s) with forced circulation of fluid in the collector loop. This document does not apply to: ? systems with a store medium other than water (e.g. phase-change materials); ? thermosiphon systems; ? integral collector-storage (ICS) systems.

Thermal solar systems and components - Custom built systems - Test methods for solar water heaters and combisystems

ICS
27.160;97.100.99
CCS
F12
发布
2010-04-30
实施
2010-04-30

This part of ISO 9459 specifies a method for outdoor laboratory testing of solar domestic hot-water (SDHW) systems. The method may also be applied for in-situ tests, and also for indoor tests by specifying appropriate draw-off profiles and irradiance profiles for indoor measurements. The system performance is characterized by means of whole-system tests using a 'black-box' approach, i.e. no measurements on the system components or inside the system are necessary. Detailed instructions are given on the measurement procedure, on processing and analysis of the measurement data, and on presentation of the test report. The theoretical model described in reference [1] is used to characterize SDHW system performance under transient operation. The identification of the parameters in the theoretical model is carried out by a parameteridentification software program (see Annex A). The program finds the set of parameters that gives the best fit between the theoretical model and the measured data. A wide range of operating conditions shall be covered to ensure accurate determination of the system parameters. Measured data shall be pre-processed before being used for identification of system parameters. The identified parameters are used for the prediction of the long-term system performance for the climatic and load conditions of the desired location, using the same model as for parameter identification. The system prediction part of the theoretical model requires hourly values of meteorological data (e.g. test reference years) and specific load data, as described in Annex C. This part of ISO 9459 can be applied to the following SDHW systems including: a) systems with forced circulation of fluid in the collector loop; b) thermosiphon systems; c) integral collector storage (ICS) systems;. provided that for b) and c) the validation requirements described in Clause B.2 of Annex B are satisfied. Systems are limited to the following dimensions1). - The collector aperture area of the SDHW system is between 1 and 10 m2. - The storage capacity of the SDHW system is between 50 and 1 000 litres. - The specific storage-tank volume is between 10 and 200 litres per square metre of collector aperture area.

Solar heating. Domestic water heating systems. System performance characterization by means of whole-system tests and computer simulation

ICS
27.160;97.100.99
CCS
F12
发布
2007-09-28
实施
2007-09-28

This part of ISO 9459 specifies a method for outdoor laboratory testing of solar domestic hot-water (SDHW) systems. The method may also be applied for in-situ tests, and also for indoor tests by specifying appropriate draw-off profiles and irradiance profiles for indoor measurements. The system performance is characterized by means of whole-system tests using a 'black-box' approach, i.e. no measurements on the system components or inside the system are necessary. Detailed instructions are given on the measurement procedure, on processing and analysis of the measurement data, and on presentation of the test report. The theoretical model described in reference [1] is used to characterize SDHW system performance under transient operation. The identification of the parameters in the theoretical model is carried out by a parameteridentification software program (see Annex A). The program finds the set of parameters that gives the best fit between the theoretical model and the measured data. A wide range of operating conditions shall be covered to ensure accurate determination of the system parameters. Measured data shall be pre-processed before being used for identification of system parameters. The identified parameters are used for the prediction of the long-term system performance for the climatic and load conditions of the desired location, using the same model as for parameter identification. The system prediction part of the theoretical model requires hourly values of meteorological data (e.g. test reference years) and specific load data, as described in Annex C. This part of ISO 9459 can be applied to the following SDHW systems including: a) systems with forced circulation of fluid in the collector loop; b) thermosiphon systems; c) integral collector storage (ICS) systems;. provided that for b) and c) the validation requirements described in Clause B.2 of Annex B are satisfied. Systems are limited to the following dimensions1). - The collector aperture area of the SDHW system is between 1 and 10 m2. - The storage capacity of the SDHW system is between 50 and 1 000 litres. - The specific storage-tank volume is between 10 and 200 litres per square metre of collector aperture area.

Solar heating - Domestic water heating systems - Part 5: System performance characterization by means of whole-system tests and computer simulation

ICS
27.160;97.100.99
CCS
F12;Q83
发布
2007-05
实施

Настоящий стандарт распространяется на плоские солнечные коллекторы с металлической поглощающей панелью и жидкостным теплоносителем, п

Nontraditional power engineering. Solar power engineering. Solar collectors. General specifications

ICS
27.160;97.100.99
CCS
发布
2000
实施
2001-01-01

Настоящий стандарт распространяется на плоские солнечные коллекторы (не совмещенные с аккумуляторами тепла) с металлической поглощающей

Nontraditional power engineering. Solar power engineering. Solar collectors. Method of testing

ICS
27.160;97.100.99
CCS
发布
2000
实施
2001-01-01

Recommendations for the design, construction, installation and commissioning of components and systems for domestic hot water preheating for single family dwellings. To be read in conjunction with BS 6757:1986

Code of practice for solar heating systems for domestic hot water

ICS
27.160;97.100.99
CCS
F12
发布
1989-02-28
实施
1989-02-28



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