Installation engineer jobs in Finland
Installation engineers oversee and manage the installing of structures, which take often many years to design and construct. They ensure safety, avoid risks and they aim to the optimalisation of costs. Installation engineers also create constructive designs of systems and perform installation system testing. They determine the material needed for the construction of these systems and the costs, and use CAD software to design these systems.
Installation engineer - Which skills are essential?
Identify and assess factors that may jeopardise the success of a project or threaten the organisation's functioning. Implement procedures to avoid or minimise their impact.
Make sure that the construction project is carried out in compliance with the building permit, the execution plans, the performance and design specifications, and the relevant regulations.
The engineering elements like functionality, replicability, and costs in relation to the design and how they are applied in the completion of engineering projects.
Different elements and phases of project management.
Record data which has been identified specifically during preceding tests in order to verify that outputs of the test produce specific results or to review the reaction of the subject under exceptional or unusual input.
Identify operating problems, decide what to do about it and report accordingly.
Work as part of a team in a construction project. Communicate efficiently, sharing information with team members and reporting to supervisors. Follow instructions and adapt to changes in a flexible manner.
Gain, correct or improve knowledge about phenomena by using scientific methods and techniques, based on empirical or measurable observations.
Regulations on construction products quality standards applied throughout the European Union.
Plan, schedule and monitor the building processes in order to ensure completion of the project by the set deadline.
Understand project management and the activities which comprise this area. Know the variables implied in project management such as time, resources, requirements, deadlines, and responding to unexpected events.
The systematic approach to the development and maintenance of engineering systems.
The process of planning, monitoring and adjusting the expenses and revenues of a business in order to achieve cost efficiency and capability.
Apply the relevant health and safety procedures in construction in order to prevent accidents, pollution and other risks.
The national and international requirements, specifications and guidelines to ensure that products, services and processes are of good quality and fit for purpose.
The various techniques and methods for erecting buildings and other constructions.
Manage and plan various resources, such as human resources, budget, deadline, results, and quality necessary for a specific project, and monitor the project's progress in order to achieve a specific goal within a set time and budget.
The products, brands and suppliers active in the construction field.
Installation engineer - Which skills are useful but not essential?
Underlying ideas of quality management systems. Implementation process of lean manufacturing, Kanban, Kaizen, Total Quality Management (TQM) and other continuous improvement systems.
Utilise computer equipment or digital devices to facilitate quality control, data management, and communication. Follow instructions given by a computer programme, create computer files or documents.
Exchanging and conveying information, ideas, concepts, thoughts, and feelings through the use of a shared system of words, signs, and semiotic rules via a medium.
Plan, monitor and report on the budget.
Identify the workflow and resource requirements for a particular process, using a variety of tools such as process simulation software, flowcharting and scale models.
Oversee all personnel and processes to comply with health, safety and hygiene standards. Communicate and support alignment of these requirements with the company's health and safety programmes.
The types of mechanical ventilation systems that permits the exchange and circulation of air.
Create technical designs and technical drawings using specialised software.
Report test results with a focus on findings and recommendations, differentiating results by levels of severity. Include relevant information from the test plan and outline the test methodologies, using metrics, tables, and visual methods to clarify where needed.
Drawing software and the various symbols, perspectives, units of measurement, notation systems, visual styles and page layouts used in technical drawings.
The modern and traditional heating systems alimented by gas, wood, oil, biomass, solar power and other renewable energy sources and their energy saving principles.
Oversee the selection, training, performance and motivation of staff.
The computer-aided design (CAD) software for creating, modifying, analysing or optimising a design.
The different parts constituing heating, air conditioning and refrigeration systems such as the different valves, fans, compressors, condensers, filters and other components.
Know the different components that constitute air conditioning systems such as condensers, compressors, evaporators and sensors. Identify and repair/replace malfunctioning components.
Test ideas and purposes of the program against available financial and human resources to work out if the idea is realistic. Take an active role in creating the work situations you step into. Ensure that your available skills match with the needs of the end user/participant. The design of the programme must clearly define the role you will provide and the support you expect in return from stakeholders.
Use computer-aided design (CAD) systems to assist in the creation, modification, analysis, or optimisation of a design.
Conduct experimental, environmental and operational tests on models, prototypes or on the systems and equipment itself in order to test their strength and capabilities under normal and extreme conditions.
Monitor the situation around you and anticipate. Be ready to take quick and appropriate action in case of unexpected events.
Heating systems fuelled by gas, wood, oil, biomass, solar power, and other reneable energy sources and their energy saving principles, applicable specifically to industrial buildings and facilities.
Use elements of protective clothing such as steel-tipped shoes, and gear such as protective goggles, in order to minimise risk of accidents in construction and to mitigate any injury if an accident does occur.
Identify root causes of problems and submit proposals for effective and long-term solutions.