
Energy Industry
HBM - 에너지 산업 파트너
에너지에 대한 수요가 세계적으로 계속 증가함에 따라 최적의 수행을 위해 계속 작동하고 기능할 수 있도록 고안된 기기에 대한 수요도 증가하고 있습니다.
HBM은 신재생 에너지, 원자력, 또는 석유와 가스 등의 모든 에너지 부문에 걸쳐 구조 분석 및 지속적인 성능에 대한 장비의 광범위한 범위를 개발하였습니다. HBM은 육상과 해상 발전에 대한 어떠한 어플리케이션과 모든 응용 프로그램을 위한 에너지 산업에 대해 이상적인 파트너입니다.
HBM의 어플리케이션 개요:
Typical applications include:
Measurement data acquisition in high-voltage areas

- Solutions for impulse tests, high-voltage tests.
Tests in high-voltage areas, such as lightning and switching impulse tests place extraordinary demands on the test equipment used. HBM high-voltage products enable reliable measurement data acquisition thanks to electrical isolation, electromagnetic immunity and many other features. The devices have been tried and tested and are used in thousands of applications worldwide. Typical applications include:
- Testing of switching systems, such as switching devices and fuses
- Lightning impulse tests, for example, for testing transformers, surge protectors, isolators and switching systems
- Determination of current zero-crossing.
High-voltage data acquisition solutions
Durability tests on components

- Tests on a blade of a wind turbine with optical strain gauges from HBM
Many structures in the energy industry are subject to high loads: pipelines, power poles or the foundations and towers of wind turbines. Experimental stress analysis is the ideal method to determine stress in materials.
HBM offers a wide range of strain gages and measuring amplifiers as well as professional catman®AP software for experimental stress analysis.
Especially useful for applications in the energy industry: the many possibilities of optical measurement technology using fiber Bragg sensors—measurement with light. Electromagnetic influences can no longer affect the measurement results.
Torque efficiency tests on generators

- T10FH torque transducer from HBM
The demands on the efficiency of generators in all kinds of power plants are increasing dramatically.
Cost pressure and more stringent environmental regulations require knowledge of specific characteristic values reflecting the performance of your generators. HBM is the global market leader in torque measurement—and provides a range of powerful analog and digital torque transducers.
HBM's precise and robust torque transducers are the better choice—in particular in comparison to the indirect torque measurement methods widely used so far.
Weighing technology applications for the energy industry

- HBM weighing module on a gas tank
Whether in gas tanks, with raw materials or in nuclear power plants: Load cells are used in many applications in the energy industry.
HBM's wide range of load cells and weighing indicators offers the right solution for every application—be it for tank weighing or in dynamic weighing processes.
Even in the demanding field of uranium enrichment with high temperature fluctuations, HBM's RTN load cells provide precise and reliable measurement results.
System design, test automation

- HBM nCode fatigue and durability software
Test strain on your systems and structures already in the design phase!
HBM nCode's professional software solutions enable you to carry out "virtual tests" even before starting the production of prototypes. Save costs and increase your efficiency by performing durability and fatigue analyses already in the development phase. Many users from the energy industry, especially from nuclear and wind energy, rely on HBM nCode solutions.
HBM nCode Software Solutions
Wind energy applications
In Wind energy there are versatile applications such as the monitoring of the wind load in the blades of wind turbines in order to increase reliability and availability of wind turbines. The same system can be used to protect the wind turbine from high winds by stopping the machine and turning the blades into a safe position.
Another example for applications in wind energy is power measurement. The mechanical power e.g. of generators needs to be measured accurately with HBM high precision torque transducers according to the standard IEC 60034.
Wind turbine testing with HBM
Application Reports on Energy Industry
World class power testing in ABB's High Power Laboratory
Tests at ABB's High Power Laboratory in Ludvika (Sweden) involve subjecting products to extreme stresses. Advanced test and measuring equipment is used, such as the HBM Genesis HighSpeed measuring system.
GEN2i data acquisition system ensures higher efficiency in generator sets
By utilizing HBM systems, Cummins can now easily meet ABS and ISO requirements while better understanding of performance criteria for its generators.
중국은 원자력 발전소를 위한 한층 강화된 디젤 엔진 모니터링 시스템을 개발했다.
중국 엔지니어는 대기 중인 디젤이 강화된 원자력 안전 규정을 충족한다는 것을 보장하기 위해 HBM의 GEN2i 데이터 수집 장비를 기반으로 엔진 모니터링 시스템을 개발했다.
Long service life and short standstill times with HBM measurement technology
HBM supports highly promising growth markets such as wind energy with state-of-the-art measurement technology. Complete solutions are required to increase the efficiency of wind power plants with HBM measurement technology from...
우라늄 동이원소 농축 프로세스: RTN 로드 셀은 극한의 조건에서 강한 인상을 남겨 드립니다.
기술적으로 극한이 요구되는 동이원소 농축 과정에서도, RTN 로드 셀은 자신의 강점을 보여 줍니다.
절연은 측정 결과를 향상시킵니다.
여러 요소들이 측정 결과의 품질에 영향을 줍니다. 어떤 어플리케이션에서는 갈바닉 절연이 성능 향상에 큰 역할을 합니다. 다음의 글은 상이한 위상에 대해 유리한 점과 그 한계에 대해 논의하고 있ㅅ브니다.
시험대(test bench) 상의 HBM 측정 기술: 수력 터빈에서의 역학 토크 측정
토크를 더 신뢰성 있고 효과적으로 측정할 수 있을까요? 수력 터빈에 맞는 시험대의 잘 알려진 제작자는 새로운 개념을 신뢰 합니다: 회복력을 통해 간접적으로 토크를 측정하는 힘 트랜스두서를 사용하는 대신에, T12 디지털 트랜스두서를 설치한 것이 보다 나은 현격한 결과를 가져 왔습니다. 그리하여, 컴퓨터로 조정하는 측정 기술은 수력 발전에서 효율성이 지속적으로 증가합니다.
HBM’s nCode Software Selected For Nuclear Reactor Data Analysis
South African based Pebble Bed Modular Reactor (Pty) Ltd (PBMR) has selected HBM’s nCode GlyphWorks and ICE-flow Automation software for the analysis and management of test data.
바이오가스 설비를 위한 측정 체인: 재생 에너지 원료를 위한 RTN 로드셀
에너지 문제에 대해서는 아직까지 아무런 해결방안이 없습니다. 화석연료의 고갈까지 최대 55년의 시간이 있습니다. 이에따라 에너지 생산의 새로운 방식이 요구되어지고 개발되고 있습니다.
Pictures by Jan Ortgies & Gernot Grundey - Photocase
Solutions for wind turbine testing
HBM offers many professional solutions for tests in the wind energy industry—during the development of plants, but also for structural tests of existing wind turbines.



