Daniel Kraemer Email and Phone Number
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I recently graduated with a Ph.D. in Mechanical Engineering from MIT. My research experience spans from system design and optimization to developing and testing of novel materials and devices for solar applications. I acquired extensive experience in experimental design through the development of numerous measurement and testing methods for thermoelectrics materials and devices, solar absorbers and polymer thin film samples. My research interests are fundamental energy transport, radiative heat transfer, solar power conversion, renewable energy technologies, solid-state power conversion based on thermoelectric, photovoltaic, and thermionic effects and the manipulation of thermal transport properties of materials such as polymers and composites.
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Senior Thermal Mechanical EngineerModern Hydrogen Nov 2022 - PresentBothell, Washington, United States -
Thermal And Mechanical EngineerModern Electron Jul 2016 - Present -
Graduate Research AssistantMassachusetts Institute Of Technology (Mit) Sep 2007 - Feb 2016Cambridge, Ma, UsaMy research was mostly focused on fundamental energy transport, radiative heat transfer, solar power conversion, solid-state power conversion based on thermoelectric, photovoltaic, and thermionic effects and the manipulation of thermal transport properties of polymers. Some Research Highlights:• Developed and tested solar thermoelectric generators (STEGs) with record-high efficiencies--> Vacuum tube STEG design with large thermal concentration for rooftop co-generation application achieved 4.6% peak efficiency at 1 sun (7 times improvement over previous work) and 5.2% at 1.5 suns--> Concentrating STEG (CSTEG) design with segmented thermoelectric legs and high-temperature spectrally-selective solar absorber for concentrating solar power applications achieved temperature differences of up to 575 °C and peak efficiencies of 9.6% at 211 suns and 7.6% at 38 suns (~3 times improvement over previous work)--> CSTEG with high-temperature black paint solar absorber and a specularly reflective optical receiver cavity achieved similar peak efficiency • Demonstrated a record-high thermoelectric conversion efficiency of 8.5% at relatively low temperature difference of 225 °C for a novel MgAgSb-based material with hot-pressed silver contacts• Developed a novel steady-state method to measure the thermal conductivity of bulk samples; method is significantly simpler while maintaining high accuracy (error <5%) compared to existing steady-state methods • Developed a calorimetric method to measure the total-hemispherical emittance and solar absorptance of surfaces at temperatures from 100 to 600 °C with an error <5%• Involved in the design of high-temperature (600 °C) spectrally-selective solar absorbers with solar absorptance of ~0.91 and record-low emittance of ~0.15 measured at 500 °C.• Demonstrated record-high in-plane thermal conductivity for pure ultra-high-molecular-weight polyethylene -
Research AssistantMassachusetts Institute Of Technology (Mit) Jul 2007 - Aug 2007Cambridge, Ma, UsaContinued the work on experimental demonstration of solar thermoelectric generators
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Visiting Graduate Research AssistantMassachusetts Institute Of Technology (Mit) Nov 2006 - May 2007Cambridge, Ma 02139, UsaStudied solar thermoelectric power conversion and design, built and performed proof of concept experiments of solar thermoelectric generators in the NanoEngineeing Group at MIT under the supervision of Prof. Dimos Poulikakos (ETH) and Prof. Gang Chen (MIT) -
Graduate Research AssistantEth Zurich Feb 2006 - May 2006Zürich Area, SwitzerlandConducted a theoretical study on the aerodynamics of a deformable blimp with fish-like propulsion mechanism at the Laboratory of Thermodynamics in Emerging Technologies (LTNT) in collaboration with the Institute of Fluid Dynamics (IFD) and the Swiss Federal Laboratories for Materials Science and Technology (EMPA) under the supervision of Prof. D. Poulikakos (LTNT), Prof. L. Kleiser (IFD) and Dr. S. Michel (EMPA) -
Undergraduate Research AssistantEth Zurich Feb 2005 - May 2006Zürich Area, SwitzerlandPerformed a thermogravimetric analysis of and modeled the gas-solid carbonation reaction for a carbon dioxide capturing process at the Institute of Energy Technology (Advisor: Prof. Aldo Steinfeld) -
Summer Process Engineering InternBasf Jun 2005 - Oct 2005Geismar, La, UsaAs process engineer intern I analyzed onsite chemical production processes to find and evaluate energy and cost saving potentials in different chemical plants under the supervision of Scott van Wagener -
Undergraduate Research AssistantBasf Feb 2003 - Jun 2003Ludwigshafen, GermanyPerformed my dissertation research for my Dipl. Ing. in process engineering at BASF: Studied the fluid mechanics of fluidized bed reactors using a fiber-optical probe and performed drying experiments on a vacuum paddle dryer. -
Summer Engineering InternEnova Energieanlagen Gmbh Aug 2002 - Oct 2002GermanyPlanning of wind parks ( on- and offshore ) and Energy Management
Daniel Kraemer Skills
Daniel Kraemer Education Details
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Mechanical Engineering -
Mechanical Engineering -
Mechanical Engineering -
Process Engineering
Frequently Asked Questions about Daniel Kraemer
What company does Daniel Kraemer work for?
Daniel Kraemer works for Modern Hydrogen
What is Daniel Kraemer's role at the current company?
Daniel Kraemer's current role is Senior Thermal-Mechanical Design Engineer at Modern Hydrogen.
What is Daniel Kraemer's email address?
Daniel Kraemer's email address is da****@****ron.com
What schools did Daniel Kraemer attend?
Daniel Kraemer attended Massachusetts Institute Of Technology, Eidgenössische Technische Hochschule Zürich, Eidgenössische Technische Hochschule Zürich, Frankfurt University Of Applied Sciences.
What skills is Daniel Kraemer known for?
Daniel Kraemer has skills like Matlab, Experimental Design, Renewable Energy, Solid State Power Conversion, Thermoelectrics, Solar Energy, Ni Labview, Heat Transfer, Radiative Transfer, Solidworks, Characterization, Materials Science.
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Daniel Kraemer
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