Unclaimed
Starts in
3 days : 10 hours : 25 minutes
🤝 Meetups for This Event

No meetups yet for this event.

Nobody has organized an actual get-together around this one so far. This page is the listing — it may run across a range of dates, and there's no organizer and no set plan behind it.

Someone needs to create a real meetup with a date, time and placeand that could be you. It takes about a minute, and everyone who marked themselves interested in this event can find it once you publish.

Want to Create Your Own Meetup for this Event?

This event is a listing — the concert, festival or activity itself. A meetup is your own smaller plan to go to it with other people: your date, your time, your meeting place. “A few of us are going, come with us.”

You don’t need permission and you don’t take anything over — this event isn’t changed at all. The venue, address and details are copied across, so you only pick when and where to meet.

As its organizer you get real tools to plan the when, where & what:

  • 📅 Member Availability — see which days and times everyone says they're usually free, so you know when to hold it.
  • 🎯 Member Interests & Cities — see everyone's interests and locations, so you know where to meet and what to include.
  • 🗺 Member Map — visually shows where most members are concentrated.
  • 🏷️ Activities & Voting — lists the tags and lets members vote on what they want to do.
  • 💬 Event Chat — everyone can discuss plans, who's bringing what, and last-minute changes.
  • RSVPs — who's coming, how likely, guest counts, and what they're looking forward to.
  • 🔗 Many Ways to Share or Invite — get the word out and grow attendance.

Your meetup starts hidden and set to “Only My Contacts”, with no date, so nothing is announced until you're ready. Nobody is notified when you create it. Once you set a date and switch Go Live? to Yes, it appears for people who marked themselves interested in this event.

ℹ️ About This Event

This event will be held in the GLRC. Refreshments and a social will be held at 3:30 p.m. outside of room GLRC 202, with the lecture to follow at 4 p.m. in GLRC 202.

Dr. Martin Erinin, Assistant Professor, of the University of Michigan will give a talk on Monday, August 31st. The title of the talk is "Breaking waves: the dynamics of droplets and the effects of surfactants"

Abstract: Breaking waves play a key role in controlling the exchange of mass, momentum, and energy between the ocean and the atmosphere. Because wave breaking is a highly non-linear and transient phenomena, a number of physical processes associated with it are poorly understood and modeled. In this talk, I will present two topics related to breaking waves. First, through laboratory experiments in a large-scale wind wave tunnel, and using a custom designed high-speed and high-resolution inline holographic system, I will characterize the dynamics and statistics of droplets with diameters ranging from 30 to 4000 micrometers. I will discuss how the droplet velocity and acceleration statistics can be interpreted as a combination of recently emitted droplets and droplets being transported by the turbulent boundary layer. This transport can be represented by a transient transport model for inertial droplets. These results at relatively high wind speed have implications for the modeling of tropical cyclone intensification. Second, I will discuss the role of surfactants on breaking waves. While surfactants are common on the ocean surface, and their impact is related to biological activity and pollution, our fundamental understanding of their effect on breaking waves and fluxes is limited. We show, through the use of carefully controlled laboratory experiments, which vary surfactant concentration, and through numerical simulations, that the effects of surfactants on a plunging breaking wave is controlled by the surface tension gradients. The surface tension gradients are shown to be caused by surface compression and dilatation during the focusing of the breaker and induce Marangoni stresses along the wave crest, which significantly modify the breaking process. Surprisingly, the ambient surface tension of the undisturbed water surface plays a secondary role.

Bio: Dr. Martin Erinin is an Assistant Professor in Mechanical Engineering at the University of Michigan. Previously, he worked as a postdoctoral researcher in the Department of Mechanical & Aerospace Engineering at Princeton University. He obtained his undergraduate and Ph.D. in Mechanical Engineering from the University of Maryland in 2020. His research focuses on experimental studies of free-surfaces, multiphase flows, and surfactant dominated flows. Additionally, Martin is interested in developing experimental techniques for fluid mechanics research. Martin was recognized as a Rising Star in Mechanical Engineering in 2023.

Who May Attend

VisibilityAny member — anyone on qMEET can find and join
Reposted Event
Please check the link(s) below for details and updates, and contact the actual event organizer if necessary.
events.mtu.edu

Created
Last updated

🙋 Interested? RSVP!
To RSVP, please login.
🧭 Getting There
StartsMon August 31, 2026 @ 3:30 PM
EndsMon August 31, 2026 @ 5 PM
VenueGreat Lakes Research Center (GLRC) Outside of 202 (social) and Room 202 (lecture)
Address1400 Townsend Drive
CityHoughton, MI 49931
💬 Event Chat
👥 Event Members (0)
No members have RSVP'd to this event yet — be the first to let the organizer know you're coming.