ASHRAE ST-16-017 Performance Analysis of a Ground-Source Heat Pump System Using Mine Water as Heat Sink and Source
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- Техэксперт: Машиностроительный комплекс
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- BSI BS EN 16016-4 Non destructive testing - Radiation methods - Computed tomography Part 4: Qualification
- BSI BS EN 16016-2 Non destructive testing - Radiation methods - Computed tomography Part 2: Principle, equipment and samples
- BSI BS EN 16016-3 Non destructive testing - Radiation methods - Computed Tomography Part 3: Operation and interpretation - CORR: February 29, 2012
- ISO 15708-1 Non-Destructive Testing - Radiation Methods - Computed Tomography - Part 1: Principles - First Edition
- VDI VDI/VDE 2630 BLATT 1.2 Computed tomography in dimensional measurement - Influencing variables on measurement results and recommendations for computed tomography dimensional measurements
- DIN EN 12544-2 Non-destructive testing - Measurement and evaluation of the X-ray tube voltage - Part 2: Constancy check by the thick filter method; English version of DIN EN 12544-2
- VDI VDI/VDE 2630 BLATT 1.2 Computed tomography in dimensional measurement - Influencing variables on measurement results and recommendations for computed tomography dimensional measurements
- ISO 15708-1 Non-Destructive Testing - Radiation Methods - Computed Tomography - Part 1: Principles - First Edition
- BSI BS EN 16016-3 Non destructive testing - Radiation methods - Computed Tomography Part 3: Operation and interpretation - CORR: February 29, 2012
- BSI BS EN 16016-2 Non destructive testing - Radiation methods - Computed tomography Part 2: Principle, equipment and samples
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- BSI BS EN 16016-4 Non destructive testing - Radiation methods - Computed tomography Part 4: Qualification
- BSI BS EN 16016-2 Non destructive testing - Radiation methods - Computed tomography Part 2: Principle, equipment and samples
- BSI BS EN 16016-3 Non destructive testing - Radiation methods - Computed Tomography Part 3: Operation and interpretation - CORR: February 29, 2012
- ISO 15708-1 Non-Destructive Testing - Radiation Methods - Computed Tomography - Part 1: Principles - First Edition
- VDI VDI/VDE 2630 BLATT 1.2 Computed tomography in dimensional measurement - Influencing variables on measurement results and recommendations for computed tomography dimensional measurements
- DIN EN 12544-2 Non-destructive testing - Measurement and evaluation of the X-ray tube voltage - Part 2: Constancy check by the thick filter method; English version of DIN EN 12544-2
- VDI VDI/VDE 2630 BLATT 1.2 Computed tomography in dimensional measurement - Influencing variables on measurement results and recommendations for computed tomography dimensional measurements
- ISO 15708-1 Non-Destructive Testing - Radiation Methods - Computed Tomography - Part 1: Principles - First Edition
- BSI BS EN 16016-3 Non destructive testing - Radiation methods - Computed Tomography Part 3: Operation and interpretation - CORR: February 29, 2012
- BSI BS EN 16016-2 Non destructive testing - Radiation methods - Computed tomography Part 2: Principle, equipment and samples
- 19.100
- BSI BS EN 16016-4 Non destructive testing - Radiation methods - Computed tomography Part 4: Qualification
- BSI BS EN 16016-2 Non destructive testing - Radiation methods - Computed tomography Part 2: Principle, equipment and samples
- BSI BS EN 16016-3 Non destructive testing - Radiation methods - Computed Tomography Part 3: Operation and interpretation - CORR: February 29, 2012
- ISO 15708-1 Non-Destructive Testing - Radiation Methods - Computed Tomography - Part 1: Principles - First Edition
- VDI VDI/VDE 2630 BLATT 1.2 Computed tomography in dimensional measurement - Influencing variables on measurement results and recommendations for computed tomography dimensional measurements
- DIN EN 12544-2 Non-destructive testing - Measurement and evaluation of the X-ray tube voltage - Part 2: Constancy check by the thick filter method; English version of DIN EN 12544-2
- VDI VDI/VDE 2630 BLATT 1.2 Computed tomography in dimensional measurement - Influencing variables on measurement results and recommendations for computed tomography dimensional measurements
- ISO 15708-1 Non-Destructive Testing - Radiation Methods - Computed Tomography - Part 1: Principles - First Edition
- BSI BS EN 16016-3 Non destructive testing - Radiation methods - Computed Tomography Part 3: Operation and interpretation - CORR: February 29, 2012
- BSI BS EN 16016-2 Non destructive testing - Radiation methods - Computed tomography Part 2: Principle, equipment and samples
- BSI BS EN 16016-4 Non destructive testing - Radiation methods - Computed tomography Part 4: Qualification
- BSI BS EN 16016-4 Non destructive testing - Radiation methods - Computed tomography Part 4: Qualification
- BSI BS EN 16016-2 Non destructive testing - Radiation methods - Computed tomography Part 2: Principle, equipment and samples
- BSI BS EN 16016-3 Non destructive testing - Radiation methods - Computed Tomography Part 3: Operation and interpretation - CORR: February 29, 2012
- ISO 15708-1 Non-Destructive Testing - Radiation Methods - Computed Tomography - Part 1: Principles - First Edition
- VDI VDI/VDE 2630 BLATT 1.2 Computed tomography in dimensional measurement - Influencing variables on measurement results and recommendations for computed tomography dimensional measurements
- DIN EN 12544-2 Non-destructive testing - Measurement and evaluation of the X-ray tube voltage - Part 2: Constancy check by the thick filter method; English version of DIN EN 12544-2
- VDI VDI/VDE 2630 BLATT 1.2 Computed tomography in dimensional measurement - Influencing variables on measurement results and recommendations for computed tomography dimensional measurements
- ISO 15708-1 Non-Destructive Testing - Radiation Methods - Computed Tomography - Part 1: Principles - First Edition
- BSI BS EN 16016-3 Non destructive testing - Radiation methods - Computed Tomography Part 3: Operation and interpretation - CORR: February 29, 2012
- BSI BS EN 16016-3 Non destructive testing - Radiation methods - Computed Tomography Part 3: Operation and interpretation - CORR: February 29, 2012
- ISO 15708-1 Non-Destructive Testing - Radiation Methods - Computed Tomography - Part 1: Principles - First Edition
- VDI VDI/VDE 2630 BLATT 1.2 Computed tomography in dimensional measurement - Influencing variables on measurement results and recommendations for computed tomography dimensional measurements
- DIN EN 12544-2 Non-destructive testing - Measurement and evaluation of the X-ray tube voltage - Part 2: Constancy check by the thick filter method; English version of DIN EN 12544-2
- VDI VDI/VDE 2630 BLATT 1.2 Computed tomography in dimensional measurement - Influencing variables on measurement results and recommendations for computed tomography dimensional measurements
- ISO 15708-1 Non-Destructive Testing - Radiation Methods - Computed Tomography - Part 1: Principles - First Edition
- ISO 15708-1 Non-Destructive Testing - Radiation Methods - Computed Tomography - Part 1: Principles - First Edition
- VDI VDI/VDE 2630 BLATT 1.2 Computed tomography in dimensional measurement - Influencing variables on measurement results and recommendations for computed tomography dimensional measurements
- DIN EN 12544-2 Non-destructive testing - Measurement and evaluation of the X-ray tube voltage - Part 2: Constancy check by the thick filter method; English version of DIN EN 12544-2
- VDI VDI/VDE 2630 BLATT 1.2 Computed tomography in dimensional measurement - Influencing variables on measurement results and recommendations for computed tomography dimensional measurements
- VDI VDI/VDE 2630 BLATT 1.2 Computed tomography in dimensional measurement - Influencing variables on measurement results and recommendations for computed tomography dimensional measurements
- DIN EN 12544-2 Non-destructive testing - Measurement and evaluation of the X-ray tube voltage - Part 2: Constancy check by the thick filter method; English version of DIN EN 12544-2
- DIN EN 12544-2 Non-destructive testing - Measurement and evaluation of the X-ray tube voltage - Part 2: Constancy check by the thick filter method; English version of DIN EN 12544-2
- VDI VDI/VDE 2630 BLATT 1.4 Computed tomography in dimensional metrology - Measurement procedure and comparability
- DIN EN 12543-2 Non-destructive testing - Characteristics of focal spots in industrial X-ray systems for use in non-destructive testing - Part 2: Pinhole camera radiographic method
- DIN EN 16407-1 Non-destructive testing - Radiographic inspection of corrosion and deposits in pipes by X- and gamma rays - Part 1: Tangential radiographic inspection
- ASTM E1000 Standard Guide for Radioscopy
- BSI BS EN 16016-4 Non destructive testing - Radiation methods - Computed tomography Part 4: Qualification
- Картотека зарубежных и международных стандартов
American Society of Heating, Refrigerating and Air-Conditioning Engineers, Inc.
Performance Analysis of a Ground-Source Heat Pump System Using Mine Water as Heat Sink and Source
N ST-16-017
Annotation
This paper summarizes a case study of an innovative ground-source heat pump (GSHP) system that uses flooded mines as a heat source and heat sink. This GSHP system provides space conditioning to an existing 56,000 ft2 (5203m2) research facility, in conjunction with existing space heating and space cooling systems. Heat transfer performance and overall efficiency of the GSHP system were analyzed using the available measured data from January through July 2014. The performance analysis identified some issues with using mine water for cooling and the integration of the GSHP system with the existing steam heating system. Recommendations were made to improve the control and operation of the GSHP system. These recommendations, in conjunction with the available measured data, were used to predict the annual energy use of the system. Finally, the energy and cost savings and CO2 emission reduction potential of the GSHP system were estimated by comparing them with a baseline scenario. This case study provides insights into the performance of and potential issues with the mine-water-source heat pump system, which is relatively underexplored compared to other GSHP system designs and configurations.
Автоматический перевод:
Анализ эффективности системы теплового насоса наземного источника Используя рудничную воду как теплоотвод и источник
Эта бумага суммирует тематическое исследование инновационной системы теплового насоса наземного источника (GSHP), использующей затопленные шахты в качестве источника тепла и теплоотвода. Эта система GSHP предоставляет создание условий пространства существующим 56,000 ft2 (5203m2) экспериментальная установка, в сочетании с существующим обогревом и космическими системами охлаждения. Производительность теплопередачи и полная эффективность системы GSHP были проанализированы с помощью доступных результатов измерений с января до июля 2014. Анализ эффективности идентифицировал некоторые проблемы с использованием рудничной воды для охлаждения и интеграции системы GSHP с существующей паровой системой отопления. Рекомендации были предоставлены для улучшения контроля и работы системы GSHP. Эти рекомендации, в сочетании с доступными результатами измерений, использовались для предсказания ежегодного использования энергии системы. Наконец, энергосбережения и сокращение затрат и потенциал сокращения выбросов CO2 системы GSHP были оценены путем сравнения их со сценарием основания. Это тематическое исследование обеспечивает понимание исполнения и потенциальных проблем с системой теплового насоса источника рудничной воды, которая является относительно underexplored по сравнению с другими проектированиями системы GSHP и конфигурациями.



