Heating, ventilation, air conditioning engineer jobs in Finland
Heating, ventilation, air conditioning engineers design and develop heating, ventilation, air conditioning and possibly refrigeration systems for usage in residences, manufacturing sites, offices, commercial buildings, etc. They strive for solutions that serve the needs of clients and respond to architectural restrictions of sites.
Heating, ventilation, air conditioning engineer - Which skills are essential?
The engineering elements like functionality, replicability, and costs in relation to the design and how they are applied in the completion of engineering projects.
Adjust designs of products or parts of products so that they meet requirements.
Gain, correct or improve knowledge about phenomena by using scientific methods and techniques, based on empirical or measurable observations.
Create technical designs and technical drawings using specialised software.
Drawing software and the various symbols, perspectives, units of measurement, notation systems, visual styles and page layouts used in technical drawings.
The power transmission systems that use the force of flowing liquids to transmit power.
The systematic approach to the development and maintenance of engineering systems.
Discipline that applies principles of physics, engineering and materials science to design, analyse, manufacture and maintain mechanical systems.
The different parts constituing heating, air conditioning and refrigeration systems such as the different valves, fans, compressors, condensers, filters and other components.
Perform the evaluation and assessment of the potential of a project, plan, proposition or new idea. Realise a standardised study which is based on extensive investigation and research to support the process of decision making.
Revise and analyse financial information and requirements of projects such as their budget appraisal, expected turnover, and risk assessment for determining the benefits and costs of the project. Assess if the agreement or project will redeem its investment, and whether the potential profit is worth the financial risk.
Theoretical and practical applications of the science studying the action of displacements and forces on physical bodies to the development of machinery and mechanical devices.
Give consent to the finished engineering design to go over to the actual manufacturing and assembly of the product.
Heating, ventilation, air conditioning engineer - Which skills are useful but not essential?
The characteristics and properties of the different fluids used in heat pump and refrigeration cycles.
Lead, supervise and motivate a group of people, in order to meet the expected results within a given timeline and with the foreseen resources in mind.
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.
Understand electrical engineering, a field of engineering that deals with the study and application of electricity, electronics, and electromagnetism.
Perform tests putting a system, machine, tool or other equipment through a series of actions under actual operating conditions in order to assess its reliability and suitability to realise its tasks, and adjust settings accordingly.
The elements used in design such as unity, scale, proportion, balance, symmetry, space, form, texture, colour, light, shade and congruence and their application into practice.
The types of mechanical ventilation systems that permits the exchange and circulation of air.
Place heating, ventilation, air conditioning and refrigeration boilers, which heats up water and circulates it through a closed radiator system to distribute heat around a structure. Connect the boiler to a source of fuel or electricity and to the circulation system. Connect it to the water supply if it features an automatic filling system. Configure the boiler.
Create detailed technical plans of machinery, equipment, tools and other products.
Install ducts to deliver and remove air. Determine whether the duct should be flexible or not, and select the appropriate material based on projected usage. Waterproof and airproof the duct and insulate it against temperature influence to ensure maximum efficiency and prevent contamination with mould. Make the correct connections between the ducts and endpoints.
Interpret and analyse data collected during testing in order to formulate conclusions, new insights or solutions.
The branch of physics that deals with the relationships between heat and other forms of energy..
The characteristics and properties of fluids, including gases, liquids and plasmas, at rest and in motion, and the forces on them.
Offer help and advice to service technicians in case of machine malfunctions and other repair tasks.
The modern and traditional heating systems alimented by gas, wood, oil, biomass, solar power and other renewable energy sources and their energy saving principles.
List the design specifications such as materials and parts to be used and a cost estimate.
Know the different components that constitute air conditioning systems such as condensers, compressors, evaporators and sensors. Identify and repair/replace malfunctioning components.
Use computer-aided design (CAD) systems to assist in the creation, modification, analysis, or optimisation of a design.
Design prototypes of products or components of products by applying design and engineering principles.
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.
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.
Give advice on design, safety issues, and cost reduction to architects during the pre-application phase.
The use of software to track all information concerning a product such as technical specifications, drawings, design specifications, and production costs.
Draft ventilation network. Prepare and plan the ventilation layout using specialist software. Design heating or cooling systems as required. Improve efficiency of ventilation network to lower energy consumption.
Place a furnace which heats air to be distributed around a structure. Connect the furnace to a source of fuel or electricity and connect any air ducts to guide the heated air. Configure the furnace.